List of sequenced animal genomes

Last updated

This list of sequenced animal genomes contains animal species for which complete genome sequences have been assembled, annotated and published. Substantially complete draft genomes are included, but not partial genome sequences or organelle-only sequences.

Contents

Porifera

Ctenophora

Placozoa

Cnidaria

Deuterostomia

Hemichordates

Echinoderms

Tunicates

Cephalochordates

Cyclostomes

Cartilaginous fish

Bony fish

Amphibians

Frogs (Anura)

Salamanders (Urodela)

Reptiles

Birds (Aves)

Ratites (Palaeognathae)
Fowl (Galloanserae)
Neoaves

Crocodilia

Turtles (Testudines)

Crytodira (Hidden-Neck Turtles)
Trionychia (Softshell Turtles)
Testudinoidea
Chelonioidea (Sea Turtles)

Rhynchocephalia

Squamata

Mammals

Monotremes

Marsupials

Placentals

Afrotheria
Euarchontoglires
Laurasiatheria

Protostomia

Insects

Crustaceans

Chelicerates

Order Xiphosura:

Order Ixodida:

Order Mesostigmata:

Order Trombidiformes:

Order Scorpiones:

Order Araneae:

Myriapods

Onychophora

Tardigrades

Molluscs

Platyhelminthes

Nematodes

Annelids

Bryozoa

Brachiopoda

Rotifera

See also

Related Research Articles

<span class="mw-page-title-main">Genome</span> All genetic material of an organism

In the fields of molecular biology and genetics, a genome is all the genetic information of an organism. It consists of nucleotide sequences of DNA. The nuclear genome includes protein-coding genes and non-coding genes, other functional regions of the genome such as regulatory sequences, and often a substantial fraction of junk DNA with no evident function. Almost all eukaryotes have mitochondria and a small mitochondrial genome. Algae and plants also contain chloroplasts with a chloroplast genome.

<span class="mw-page-title-main">Human genome</span> Complete set of nucleic acid sequences for humans

The human genome is a complete set of nucleic acid sequences for humans, encoded as the DNA within each of the 24 distinct chromosomes in the cell nucleus. A small DNA molecule is found within individual mitochondria. These are usually treated separately as the nuclear genome and the mitochondrial genome. Human genomes include both protein-coding DNA sequences and various types of DNA that does not encode proteins. The latter is a diverse category that includes DNA coding for non-translated RNA, such as that for ribosomal RNA, transfer RNA, ribozymes, small nuclear RNAs, and several types of regulatory RNAs. It also includes promoters and their associated gene-regulatory elements, DNA playing structural and replicatory roles, such as scaffolding regions, telomeres, centromeres, and origins of replication, plus large numbers of transposable elements, inserted viral DNA, non-functional pseudogenes and simple, highly repetitive sequences. Introns make up a large percentage of non-coding DNA. Some of this non-coding DNA is non-functional junk DNA, such as pseudogenes, but there is no firm consensus on the total amount of junk DNA.

<span class="mw-page-title-main">Genomics</span> Discipline in genetics

Genomics is an interdisciplinary field of molecular biology focusing on the structure, function, evolution, mapping, and editing of genomes. A genome is an organism's complete set of DNA, including all of its genes as well as its hierarchical, three-dimensional structural configuration. In contrast to genetics, which refers to the study of individual genes and their roles in inheritance, genomics aims at the collective characterization and quantification of all of an organism's genes, their interrelations and influence on the organism. Genes may direct the production of proteins with the assistance of enzymes and messenger molecules. In turn, proteins make up body structures such as organs and tissues as well as control chemical reactions and carry signals between cells. Genomics also involves the sequencing and analysis of genomes through uses of high throughput DNA sequencing and bioinformatics to assemble and analyze the function and structure of entire genomes. Advances in genomics have triggered a revolution in discovery-based research and systems biology to facilitate understanding of even the most complex biological systems such as the brain.

<span class="mw-page-title-main">Genome project</span> Scientific endeavours to determine the complete genome sequence of an organism

Genome projects are scientific endeavours that ultimately aim to determine the complete genome sequence of an organism and to annotate protein-coding genes and other important genome-encoded features. The genome sequence of an organism includes the collective DNA sequences of each chromosome in the organism. For a bacterium containing a single chromosome, a genome project will aim to map the sequence of that chromosome. For the human species, whose genome includes 22 pairs of autosomes and 2 sex chromosomes, a complete genome sequence will involve 46 separate chromosome sequences.

<span class="mw-page-title-main">Comparative genomics</span> Field of biological research

Comparative genomics is a branch of biological research that examines genome sequences across a spectrum of species, spanning from humans and mice to a diverse array of organisms from bacteria to chimpanzees. This large-scale holistic approach compares two or more genomes to discover the similarities and differences between the genomes and to study the biology of the individual genomes. Comparison of whole genome sequences provides a highly detailed view of how organisms are related to each other at the gene level. By comparing whole genome sequences, researchers gain insights into genetic relationships between organisms and study evolutionary changes. The major principle of comparative genomics is that common features of two organisms will often be encoded within the DNA that is evolutionarily conserved between them. Therefore, Comparative genomics provides a powerful tool for studying evolutionary changes among organisms, helping to identify genes that are conserved or common among species, as well as genes that give unique characteristics of each organism. Moreover, these studies can be performed at different levels of the genomes to obtain multiple perspectives about the organisms.

<span class="mw-page-title-main">Sequence homology</span> Shared ancestry between DNA, RNA or protein sequences

Sequence homology is the biological homology between DNA, RNA, or protein sequences, defined in terms of shared ancestry in the evolutionary history of life. Two segments of DNA can have shared ancestry because of three phenomena: either a speciation event (orthologs), or a duplication event (paralogs), or else a horizontal gene transfer event (xenologs).

<i>Portunus trituberculatus</i> Species of crab

Portunus trituberculatus, also known as the gazami crab, Asian blue crab or horse crab, is the most widely fished species of crab in the world. It is found off the coasts of East Asia and is closely related to Portunus armatus.

<span class="mw-page-title-main">CDY1</span> Protein-coding gene in humans

Testis-specific chromodomain protein Y 1 is a protein that in humans is encoded by the CDY1 gene.

<span class="mw-page-title-main">Pan-genome</span> All genes of all strains in a clade

In the fields of molecular biology and genetics, a pan-genome is the entire set of genes from all strains within a clade. More generally, it is the union of all the genomes of a clade. The pan-genome can be broken down into a "core pangenome" that contains genes present in all individuals, a "shell pangenome" that contains genes present in two or more strains, and a "cloud pangenome" that contains genes only found in a single strain. Some authors also refer to the cloud genome as "accessory genome" containing 'dispensable' genes present in a subset of the strains and strain-specific genes. Note that the use of the term 'dispensable' has been questioned, at least in plant genomes, as accessory genes play "an important role in genome evolution and in the complex interplay between the genome and the environment". The field of study of pangenomes is called pangenomics.

Complete Genomics is a life sciences company that has developed and commercialized a DNA sequencing platform for human genome sequencing and analysis. The company is a wholly-owned subsidiary of MGI.

SOAP is a suite of bioinformatics software tools from the BGI Bioinformatics department enabling the assembly, alignment, and analysis of next generation DNA sequencing data. It is particularly suited to short read sequencing data.

The 1000 Plant Transcriptomes Initiative (1KP) was an international research effort to establish the most detailed catalogue of genetic variation in plants. It was announced in 2008 and headed by Gane Ka-Shu Wong and Michael Deyholos of the University of Alberta. The project successfully sequenced the transcriptomes of 1,000 different plant species by 2014; its final capstone products were published in 2019.

<span class="mw-page-title-main">Reference genome</span> Digital nucleic acid sequence database

A reference genome is a digital nucleic acid sequence database, assembled by scientists as a representative example of the set of genes in one idealized individual organism of a species. As they are assembled from the sequencing of DNA from a number of individual donors, reference genomes do not accurately represent the set of genes of any single individual organism. Instead, a reference provides a haploid mosaic of different DNA sequences from each donor. For example, one of the most recent human reference genomes, assembly GRCh38/hg38, is derived from >60 genomic clone libraries. There are reference genomes for multiple species of viruses, bacteria, fungus, plants, and animals. Reference genomes are typically used as a guide on which new genomes are built, enabling them to be assembled much more quickly and cheaply than the initial Human Genome Project. Reference genomes can be accessed online at several locations, using dedicated browsers such as Ensembl or UCSC Genome Browser.

<span class="mw-page-title-main">Topologically associating domain</span> Self-interacting genomic region

A topologically associating domain (TAD) is a self-interacting genomic region, meaning that DNA sequences within a TAD physically interact with each other more frequently than with sequences outside the TAD. The average size of a topologically associating domain (TAD) is 1000 kb in humans, 880 kb in mouse cells, and 140 kb in fruit flies. Boundaries at both side of these domains are conserved between different mammalian cell types and even across species and are highly enriched with CCCTC-binding factor (CTCF) and cohesin. In addition, some types of genes appear near TAD boundaries more often than would be expected by chance.

The Earth BioGenome Project (EBP) is an initiative that aims to sequence and catalog the genomes of all of Earth's currently described eukaryotic species over a period of ten years. The initiative would produce an open DNA database of biological information that provides a platform for scientific research and supports environmental and conservation initiatives. A scientific paper presenting the vision for the project was published in PNAS in April 2018, and the project officially launched November 1, 2018.

A plant genome assembly represents the complete genomic sequence of a plant species, which is assembled into chromosomes and other organelles by using DNA fragments that are obtained from different types of sequencing technology.

<i>Diospyros oleifera</i> Species of plant

Diospyros oleifera is a species of flowering plant in the persimmon family Ebenaceae, native to southeastern China. A tree reaching 14 m (46 ft), its genome has been sequenced.

References

  1. Srivastava M, Simakov O, Chapman J, Fahey B, Gauthier ME, Abhisex, et al. (August 2010). "The Amphimedon queenslandica genome and the evolution of animal complexity". Nature. 466 (7307): 720–6. Bibcode:2010Natur.466..720S. doi:10.1038/nature09201. PMC   3130542 . PMID   20686567.
  2. 1 2 Ryu T, Seridi L, Moitinho-Silva L, Oates M, Liew YJ, Mavromatis C, et al. (February 2016). "Hologenome analysis of two marine sponges with different microbiomes". BMC Genomics. 17 (1): 158. doi: 10.1186/s12864-016-2501-0 . PMC   4772301 . PMID   26926518.
  3. Kenny N, Francis, W, et al. (July 2020). "Tracing animal genomic evolution with the chromosomal-level assembly of the freshwater sponge Ephydatia muelleri". Nature Communications. 11 (1): 720–6. Bibcode:2020NatCo..11.3676K. doi:10.1038/s41467-020-17397-w. PMC   7385117 . PMID   32719321.
  4. National Human Genome Research Institute (2012). "NHGRI Mnemiopsis Genome Project" . Retrieved 2013-02-05.
  5. Ryan JF, Pang K, Schnitzler CE, Nguyen AD, Moreland RT, Simmons DK, et al. (December 2013). "The genome of the ctenophore Mnemiopsis leidyi and its implications for cell type evolution". Science. 342 (6164): 1242592. doi:10.1126/science.1242592. PMC   3920664 . PMID   24337300.
  6. Schultz DT, Francis WR, McBroome JD, Christianson LM, Haddock SH, Green RE (October 2021). "A chromosome-scale genome assembly and karyotype of the ctenophore Hormiphora californensis". G3: Genes, Genomes, Genetics. 11 (11). doi:10.1093/g3journal/jkab302. PMC   8527503 . PMID   34545398.
  7. Moroz LL, Kocot KM, Citarella MR, Dosung S, Norekian TP, Povolotskaya IS, et al. (June 2014). "The ctenophore genome and the evolutionary origins of neural systems". Nature. 510 (7503): 109–14. Bibcode:2014Natur.510..109M. doi:10.1038/nature13400. PMC   4337882 . PMID   24847885.
  8. Johnson, Shannon B.; Winnikoff, Jacob R.; Schultz, Darrin T.; Christianson, Lynne M.; Patry, Wyatt L.; Mills, Claudia E.; Haddock, Steven H. D. (2022). "Speciation of pelagic zooplankton: Invisible boundaries can drive isolation of oceanic ctenophores". Frontiers in Genetics. 13: 970314. doi: 10.3389/fgene.2022.970314 . ISSN   1664-8021. PMC   9585324 . PMID   36276958.
  9. Srivastava M, Begovic E, Chapman J, Putnam NH, Hellsten U, Kawashima T, et al. (August 2008). "The Trichoplax genome and the nature of placozoans". Nature. 454 (7207): 955–60. Bibcode:2008Natur.454..955S. doi: 10.1038/nature07191 . PMID   18719581. S2CID   4415492.
  10. Eitel M, Francis WR, Varoqueaux F, Daraspe J, Osigus HJ, Krebs S, et al. (July 2018). "Comparative genomics and the nature of placozoan species". PLOS Biology. 16 (7): e2005359. doi: 10.1371/journal.pbio.2005359 . PMC   6067683 . PMID   30063702.
  11. Chapman JA, Kirkness EF, Simakov O, Hampson SE, Mitros T, Weinmaier T, et al. (March 2010). "The dynamic genome of Hydra". Nature. 464 (7288): 592–6. Bibcode:2010Natur.464..592C. doi:10.1038/nature08830. PMC   4479502 . PMID   20228792.
  12. Putnam NH, Srivastava M, Hellsten U, Dirks B, Chapman J, Salamov A, et al. (July 2007). "Sea anemone genome reveals ancestral eumetazoan gene repertoire and genomic organization". Science. 317 (5834): 86–94. Bibcode:2007Sci...317...86P. doi:10.1126/science.1139158. PMID   17615350. S2CID   9868191.
  13. Baumgarten S, Simakov O, Esherick LY, Liew YJ, Lehnert EM, Michell CT, et al. (September 2015). "The genome of Aiptasia, a sea anemone model for coral symbiosis". Proceedings of the National Academy of Sciences of the United States of America. 112 (38): 11893–8. Bibcode:2015PNAS..11211893B. doi: 10.1073/pnas.1513318112 . PMC   4586855 . PMID   26324906.
  14. Jiang J (2017). "Renilla muelleri genome". reefgenomics.
  15. Jiang JB, Quattrini AM, Francis WR, Ryan JF, Rodríguez E, McFadden CS (April 2019). "A hybrid de novo assembly of the sea pansy (Renilla muelleri) genome". GigaScience. 8 (4). doi:10.1093/gigascience/giz026. PMC   6446218 . PMID   30942866.
  16. Voolstra CR, Li Y, Liew YJ, Baumgarten S, Zoccola D, Flot JF, et al. (December 2017). "Comparative analysis of the genomes of Stylophora pistillata and Acropora digitifera provides evidence for extensive differences between species of corals". Scientific Reports. 7 (1): 17583. Bibcode:2017NatSR...717583V. doi:10.1038/s41598-017-17484-x. PMC   5730576 . PMID   29242500.
  17. Gold DA, Katsuki T, Li Y, Yan X, Regulski M, Ibberson D, et al. (January 2019). "The genome of the jellyfish Aurelia and the evolution of animal complexity" (PDF). Nature Ecology & Evolution. 3 (1): 96–104. doi:10.1038/s41559-018-0719-8. PMID   30510179. S2CID   54437176.
  18. Leclère L, Horin C, Chevalier S, Lapébie P, Dru P, Peron S, et al. (May 2019). "The genome of the jellyfish Clytia hemisphaerica and the evolution of the cnidarian life-cycle". Nature Ecology & Evolution. 3 (5): 801–810. Bibcode:2019NatEE...3..801L. doi: 10.1038/s41559-019-0833-2 . PMID   30858591. S2CID   73728941.
  19. Guo Q, Atkinson SD, Xiao B, Zhai Y, Bartholomew JL, Gu Z (February 2022). "A myxozoan genome reveals mosaic evolution in a parasitic cnidarian". BMC Biology. 20 (1): 51. doi: 10.1186/s12915-022-01249-8 . PMC   8855578 . PMID   35177085.
  20. Kim HM, Weber JA, Lee N, Park SG, Cho YS, Bhak Y, et al. (March 2019). "The genome of the giant Nomura's jellyfish sheds light on the early evolution of active predation". BMC Biology. 17 (1): 28. doi: 10.1186/s12915-019-0643-7 . PMC   6441219 . PMID   30925871.
  21. Li Y, Gao L, Pan Y, Tian M, Li Y, He C, et al. (April 2020). "Chromosome-level reference genome of the jellyfish Rhopilema esculentum". GigaScience. 9 (4). doi:10.1093/gigascience/giaa036. PMC   7172023 . PMID   32315029.
  22. 1 2 3 Ohdera A, Ames CL, Dikow RB, Kayal E, Chiodin M, Busby B, et al. (July 2019). "Box, stalked, and upside-down? Draft genomes from diverse jellyfish (Cnidaria, Acraspeda) lineages: Alatina alata (Cubozoa), Calvadosia cruxmelitensis (Staurozoa), and Cassiopea xamachana (Scyphozoa)". GigaScience. 8 (7). doi:10.1093/gigascience/giz069. PMC   6599738 . PMID   31257419.
  23. Jeon Y, Park SG, Lee N, Weber JA, Kim HS, Hwang SJ, et al. (March 2019). "The Draft Genome of an Octocoral, Dendronephthya gigantea". Genome Biology and Evolution. 11 (3): 949–953. doi:10.1093/gbe/evz043. PMC   6447388 . PMID   30825304.
  24. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Shinzato C, Khalturin K, Inoue J, Zayasu Y, Kanda M, Kawamitsu M, et al. (January 2021). "Eighteen Coral Genomes Reveal the Evolutionary Origin of Acropora Strategies to Accommodate Environmental Changes". Molecular Biology and Evolution. 38 (1): 16–30. doi:10.1093/molbev/msaa216. PMC   7783167 . PMID   32877528.
  25. Shinzato C, Shoguchi E, Kawashima T, Hamada M, Hisata K, Tanaka M, et al. (July 2011). "Using the Acropora digitifera genome to understand coral responses to environmental change". Nature. 476 (7360): 320–3. Bibcode:2011Natur.476..320S. doi: 10.1038/nature10249 . PMID   21785439. S2CID   4364757.
  26. Cooke I, Ying H, Forêt S, Bongaerts P, Strugnell JM, Simakov O, et al. (November 2020). "Genomic signatures in the coral holobiont reveal host adaptations driven by Holocene climate change and reef specific symbionts". Science Advances. 6 (48): eabc6318. Bibcode:2020SciA....6.6318C. doi:10.1126/sciadv.abc6318. PMC   7695477 . PMID   33246955. S2CID   227179581.
  27. Herrera S, Cordes EE (2023-03-16). "Genome assembly of the deep-sea coral Lophelia pertusa". GigaByte. 2023: 1–12. doi:10.46471/gigabyte.78. PMC   10022433 . PMID   36935863.
  28. 1 2 3 4 Stephens TG, Lee J, Jeong Y, Yoon HS, Putnam HM, Majerová E, Bhattacharya D (November 2022). "High-quality genome assembles from key Hawaiian coral species". GigaScience. 11. doi:10.1093/gigascience/giac098. PMC   9646523 . PMID   36352542.
  29. Stephens TG, Lee J, Jeong Y, Yoon HS, Putnam HM, Majerová E, Bhattacharya D (2022). "GigaDB Dataset – DOI 10.5524/102268 – Chromosome-level genome assembly of Montipora capitata". GigaScience. GigaScience Database. doi:10.5524/102268.
  30. Prada C, Hanna B, Budd AF, Woodley CM, Schmutz J, Grimwood J, et al. (2016). "2016 Empty Niches after Extinctions Increase Population Sizes of Modern Corals". Current Biology. 1 (26): 3190–3194. doi: 10.1016/j.cub.2016.09.039 . PMID   27866895. S2CID   188206.
  31. Timothy SG, JunMo L, YuJin J, Hwan YS, Hollie PM, Eva M, Debashish B (2022). "GigaDB Dataset – DOI 10.5524/102269 – Genome assembly of a triploid Pocillopora acuta". GigaDB. GigaScience Database. doi:10.5524/102269.
  32. Cunning R, Bay RA, Gillette P, Baker AC, Traylor-Knowles N (October 2018). "Comparative analysis of the Pocillopora damicornis genome highlights role of immune system in coral evolution". Scientific Reports. 8 (1): 16134. Bibcode:2018NatSR...816134C. doi:10.1038/s41598-018-34459-8. PMC   6208414 . PMID   30382153.
  33. Stephens TG, Lee J, Jeong Y, Yoon HS, Putnam HM, Majerová E, Bhattacharya D (2022). "GigaDB Dataset – DOI 10.5524/102270 – Genome assembly of Pocillopora meandrina". GigaScience. GigaScience Database. doi:10.5524/102270.
  34. Wong KH, Putnam HM (2022-07-29). "The genome of the mustard hill coral, Porites astreoides". GigaByte. 2022: 1–12. doi:10.46471/gigabyte.65. PMC   9693771 . PMID   36824531.
  35. Stephens TG, Lee J, Jeong Y, Yoon HS, Putnam HM, Majerová E, Bhattacharya D (2022). "GigaDB Dataset – DOI 10.5524/102271 – Genome assembly of Porites compressa". GigaScience. GigaScience Database. doi:10.5524/102271.
  36. 1 2 Simakov O, Kawashima T, Marlétaz F, Jenkins J, Koyanagi R, Mitros T, et al. (November 2015). "Hemichordate genomes and deuterostome origins". Nature. 527 (7579): 459–65. Bibcode:2015Natur.527..459S. doi:10.1038/nature16150. PMC   4729200 . PMID   26580012.
  37. Baughman KW, McDougall C, Cummins SF, Hall M, Degnan BM, Satoh N, Shoguchi E (December 2014). "Genomic organization of Hox and ParaHox clusters in the echinoderm, Acanthaster planci". Genesis. 52 (12): 952–8. doi: 10.1002/dvg.22840 . PMID   25394327. S2CID   32809575.
  38. Jo J, Oh J, Lee HG, Hong HH, Lee SG, Cheon S, et al. (January 2017). "Draft genome of the sea cucumber Apostichopus japonicus and genetic polymorphism among color variants". GigaScience. 6 (1): 1–6. doi:10.1093/gigascience/giw006. PMC   5437941 . PMID   28369350.
  39. Lee Y, Kim B, Jung J, Koh B, Jhang SY, Ban C, et al. (July 2022). "Chromosome-level genome assembly of Plazaster borealis sheds light on the morphogenesis of multiarmed starfish and its regenerative capacity". GigaScience. 11. doi:10.1093/gigascience/giac063. PMC   9270726 . PMID   35809048.
  40. Sodergren E, Weinstock GM, Davidson EH, Cameron RA, Gibbs RA, Angerer RC, et al. (November 2006). "The genome of the sea urchin Strongylocentrotus purpuratus". Science. 314 (5801): 941–52. Bibcode:2006Sci...314..941S. doi:10.1126/science.1133609. PMC   3159423 . PMID   17095691.
  41. Dehal P, Satou Y, Campbell RK, Chapman J, Degnan B, De Tomaso A, et al. (December 2002). "The draft genome of Ciona intestinalis: insights into chordate and vertebrate origins". Science. 298 (5601): 2157–67. Bibcode:2002Sci...298.2157D. doi:10.1126/science.1080049. PMID   12481130. S2CID   15987281.
  42. Small KS, Brudno M, Hill MM, Sidow A (2007). "A haplome alignment and reference sequence of the highly polymorphic Ciona savignyi genome". Genome Biology. 8 (3): R41. doi: 10.1186/gb-2007-8-3-r41 . PMC   1868934 . PMID   17374142.
  43. Seo HC, Kube M, Edvardsen RB, Jensen MF, Beck A, Spriet E, et al. (December 2001). "Miniature genome in the marine chordate Oikopleura dioica". Science. 294 (5551): 2506. doi:10.1126/science.294.5551.2506. PMID   11752568.
  44. Putnam NH, Butts T, Ferrier DE, Furlong RF, Hellsten U, Kawashima T, et al. (June 2008). "The amphioxus genome and the evolution of the chordate karyotype". Nature. 453 (7198): 1064–71. Bibcode:2008Natur.453.1064P. doi: 10.1038/nature06967 . PMID   18563158. S2CID   4418548.
  45. Libants S, Carr K, Wu H, Teeter JH, Chung-Davidson YW, Zhang Z, Wilkerson C, Li W (July 2009). "The sea lamprey Petromyzon marinus genome reveals the early origin of several chemosensory receptor families in the vertebrate lineage". BMC Evolutionary Biology. 9 (1): 180. Bibcode:2009BMCEE...9..180L. doi: 10.1186/1471-2148-9-180 . PMC   2728731 . PMID   19646260.
  46. Smith JJ, Kuraku S, Holt C, Sauka-Spengler T, Jiang N, Campbell MS, et al. (April 2013). "Sequencing of the sea lamprey (Petromyzon marinus) genome provides insights into vertebrate evolution". Nature Genetics. 45 (4): 415–21, 421e1-2. doi:10.1038/ng.2568. PMC   3709584 . PMID   23435085.
  47. Venkatesh B, Kirkness EF, Loh YH, Halpern AL, Lee AP, Johnson J, et al. (April 2007). "Survey sequencing and comparative analysis of the elephant shark (Callorhinchus milii) genome". PLOS Biology. 5 (4): e101. doi: 10.1371/journal.pbio.0050101 . PMC   1845163 . PMID   17407382.
  48. Marra NJ, Stanhope MJ, Jue NK, Wang M, Sun Q, Pavinski Bitar P, et al. (February 2019). "White shark genome reveals ancient elasmobranch adaptations associated with wound healing and the maintenance of genome stability". Proceedings of the National Academy of Sciences of the United States of America. 116 (10): 4446–4455. Bibcode:2019PNAS..116.4446M. doi: 10.1073/pnas.1819778116 . PMC   6410855 . PMID   30782839.
  49. Zhang Y, Gao H, Li H, Guo J, Ouyang B, Wang M, et al. (November 2020). "The White-Spotted Bamboo Shark Genome Reveals Chromosome Rearrangements and Fast-Evolving Immune Genes of Cartilaginous Fish". iScience. 23 (11): 101754. Bibcode:2020iSci...23j1754Z. doi:10.1016/j.isci.2020.101754. PMC   7677710 . PMID   33251490.
  50. 1 2 Hara Y, Yamaguchi K, Onimaru K, Kadota M, Koyanagi M, Keeley SD, et al. (November 2018). "Shark genomes provide insights into elasmobranch evolution and the origin of vertebrates". Nature Ecology & Evolution. 2 (11): 1761–1771. Bibcode:2018NatEE...2.1761H. doi: 10.1038/s41559-018-0673-5 . PMID   30297745. S2CID   52944566.
  51. Read TD, Petit RA, Joseph SJ, Alam MT, Weil MR, Ahmad M, et al. (July 2017). "Draft sequencing and assembly of the genome of the world's largest fish, the whale shark: Rhincodon typus Smith 1828". BMC Genomics. 18 (1): 532. doi: 10.1186/s12864-017-3926-9 . PMC   5513125 . PMID   28709399.
  52. Fan G, Chan J, Ma K, Yang B, Zhang H, Yang X, et al. (November 2018). "Chromosome-level reference genome of the Siamese fighting fish Betta splendens, a model species for the study of aggression". GigaScience. 7 (11). doi:10.1093/gigascience/giy087. PMC   6251983 . PMID   30010754.
  53. 1 2 3 4 5 6 7 8 9 10 Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (August 2020). "Initial data release and announcement of the 10,000 Fish Genomes Project (Fish10K)". GigaScience. 9 (8). doi:10.1093/gigascience/giaa080. PMC   7433795 . PMID   32810278.
  54. Guangyi S, Yue S, Liandong Y, Xiaoyun H, Suyu Z, Mengqi Z, Xianwei Y, Yue C, He Z (2020). "Genomic data of the kissing gourami, Helostoma temminkii". GigaScience Database. doi:10.5524/102190 . Retrieved 2020-08-19.
  55. Henkel CV, Burgerhout E, de Wijze DL, Dirks RP, Minegishi Y, Jansen HJ, et al. (2012-02-24). "Primitive duplicate Hox clusters in the European eel's genome". PLOS ONE. 7 (2): e32231. Bibcode:2012PLoSO...732231H. doi: 10.1371/journal.pone.0032231 . PMC   3286462 . PMID   22384188.
  56. Wang H, Wan HT, Wu B, Jian J, Ng AH, Chung CY, et al. (December 2022). "A Chromosome-level assembly of the Japanese eel genome, insights into gene duplication and chromosomal reorganization". GigaScience. 11. doi:10.1093/gigascience/giac120. PMC   9730501 . PMID   36480030.
  57. Kasahara M, Naruse K, Sasaki S, Nakatani Y, Qu W, Ahsan B, et al. (June 2007). "The medaka draft genome and insights into vertebrate genome evolution". Nature. 447 (7145): 714–9. Bibcode:2007Natur.447..714K. doi: 10.1038/nature05846 . PMID   17554307. S2CID   4419559.
  58. Winter S, Prost S, De Raad J, Coimbra R, Wolf M, Nebenfuehr M, et al. (20 October 2020). "Chromosome-level genome assembly of a benthic associated Syngnathiformes species: the common dragonet, Callionymus lyra". Gigabyte. 2020: 1–10. doi:10.46471/gigabyte.6. PMC   9631949 . PMID   36824592. S2CID   228961387.
  59. Pickett BD, Glass JR, Johnson TP, Ridge PG, Kauwe JS (2022). "The genome of a giant (trevally): Caranx ignobilis". GigaByte. 2022: 1–16. doi:10.46471/gigabyte.67. PMC   9694125 . PMID   36824527.
  60. Pickett BD, Glass JR, Ridge PG, Kauwe JS (September 2021). "De novo genome assembly of the marine teleost, bluefin trevally (Caranx melampygus)". G3: Genes, Genomes, Genetics. 11 (10). doi:10.1093/g3journal/jkab229. PMC   8473972 . PMID   34568914.
  61. Catanach A, Ruigrok M, Bowatte D, Davy M, Storey R, Valenza-Troubat N, et al. (November 2021). "The genome of New Zealand trevally (Carangidae: Pseudocaranx georgianus) uncovers a XY sex determination locus". BMC Genomics. 22 (1): 785. doi: 10.1186/s12864-021-08102-2 . PMC   8561880 . PMID   34727894.
  62. Xiao Y, Xiao Z, Ma D, Liu J, Li J (March 2019). "Genome sequence of the barred knifejaw Oplegnathus fasciatus (Temminck & Schlegel, 1844): the first chromosome-level draft genome in the family Oplegnathidae". GigaScience. 8 (3). doi:10.1093/gigascience/giz013. PMC   6423371 . PMID   30715332.
  63. McGaugh SE, Gross JB, Aken B, Blin M, Borowsky R, Chalopin D, et al. (October 2014). "The cavefish genome reveals candidate genes for eye loss". Nature Communications. 5 (1): 5307. Bibcode:2014NatCo...5.5307M. doi:10.1038/ncomms6307. PMC   4218959 . PMID   25329095.
  64. Warren WC, Boggs TE, Borowsky R, et al. (July 2021). "A chromosome-level genome of Astyanax mexicanus surface fish for comparing population-specific genetic differences contributing to trait evolution". Nature Communications. 12 (1447): 1447. Bibcode:2021NatCo..12.1447W. doi:10.1038/s41467-021-21733-z. PMC   7933363 . PMID   33664263.
  65. Hilsdorf AW, Silva MU, Coutinho LL, Montenegro H, Almeida-Val VM, Pinhal D (2021-09-27). "Genome assembly and annotation of the tambaqui (Colossoma macropomum): an emblematic fish of the Amazon River Basin". Gigabyte. 2021: 1–14. doi:10.46471/gigabyte.29. PMC   9650303 . PMID   36824330. S2CID   239207530.
  66. Zu, Ru; Zhao, Zi-Xia; Xu, Peng; Sun, Xiao-Wen (24 Oct 2013). "The complete mitochondrial genome of the silvertip tetra, Hasemania nana (Characiformes: Characidae)". Mitochondrial DNA. 26 (6): 889–890. doi:10.3109/19401736.2013.861445. PMID   24409871. S2CID   207747227.
  67. Li, Chunyan; Sun, Zhijing; Fen, Shouming; Jiang, Jufeng; Wu, Huimen; Zhang, Zhenguo; Cai, Chao; Wang, Yongchen (29 Aug 2015). "The complete mitochondrial genome of Hemigrammus bleheri". Mitochondrial DNA Part A. 27 (6): 4449–4450. doi:10.3109/19401736.2015.1089565. PMID   26544159. S2CID   3831171.
  68. Duílio, M. Z. de A. Silva; Ricardo Utsunomia, Francisco J. Ruiz-Romano; Oliveira, Cláudio; Foresti, Fausto (5 Aug 2016). "The complete mitochondrial genome sequence of Astyanax paranae(Teleostei: characiformes)". Mitochondrial DNA Part B. 1 (1): 586–587. doi: 10.1080/23802359.2016.1222251 . PMC   7800300 . PMID   33490410.
  69. 1 2 Conte MA, Joshi R, Moore EC, Nandamuri SP, Gammerdinger WJ, Roberts RB, et al. (April 2019). "Chromosome-scale assemblies reveal the structural evolution of African cichlid genomes". GigaScience. 8 (4). doi:10.1093/gigascience/giz030. PMC   6447674 . PMID   30942871.
  70. Í Kongsstovu S, Dahl HA, Gislason H, Í Homrum E, Jacobsen JA, Flicek P, Mikalsen SO (April 2020). "Identification of male heterogametic sex determining regions on the Atlantic herring Clupea harengus genome". Journal of Fish Biology. 97 (1): 190–201. Bibcode:2020JFBio..97..190I. doi:10.1111/jfb.14349. PMC   7115899 . PMID   32293027. S2CID   215774454.
  71. Xu G, Bian C, Nie Z, Li J, Wang Y, Xu D, et al. (January 2020). "Genome and population sequencing of a chromosome-level genome assembly of the Chinese tapertail anchovy (Coilia nasus) provides novel insights into migratory adaptation". GigaScience. 9 (1). doi:10.1093/gigascience/giz157. PMC   6939831 . PMID   31895412.
  72. Louro B, De Moro G, Garcia C, Cox CJ, Veríssimo A, Sabatino SJ, et al. (May 2019). "A haplotype-resolved draft genome of the European sardine (Sardina pilchardus)". GigaScience. 8 (5). doi:10.1093/gigascience/giz059. PMC   6528745 . PMID   31112613.
  73. Amemiya CT, Alföldi J, Lee AP, Fan S, Philippe H, Maccallum I, et al. (April 2013). "The African coelacanth genome provides insights into tetrapod evolution". Nature. 496 (7445): 311–6. Bibcode:2013Natur.496..311A. doi:10.1038/nature12027. PMC   3633110 . PMID   23598338.
  74. Jiang W, Qiu Y, Pan X, Zhang Y, Wang X, Lv Y, et al. (2018). "Anabarilius grahami (Regan), and Its Evolutionary and Genetic Applications". Frontiers in Genetics. 9: 614. doi: 10.3389/fgene.2018.00614 . PMC   6288284 . PMID   30564274.
  75. "Ensembl genome browser 59: Danio rerio - Description - Search Ensembl Zebrafish". Ensembl.org. Retrieved 2010-08-27.
  76. Hu S, Niu J, Xie P, Liu C, Karjan A, Wang F, Ma X (2014-01-27). "The complete mitochondrial genome of Leuciscus leuciscus baicalensis (Cypriniformes: Cyprinidae)". Mitochondrial DNA. 26 (5): 751–752. doi:10.3109/19401736.2013.848353. PMID   24460156. S2CID   42320065.
  77. Liu H, Chen C, Gao Z, Min J, Gu Y, Jian J, et al. (July 2017). "The draft genome of blunt snout bream (Megalobrama amblycephala) reveals the development of intermuscular bone and adaptation to herbivorous diet". GigaScience. 6 (7): 1–13. doi:10.1093/gigascience/gix039. PMC   5570040 . PMID   28535200.
  78. Hung-du Lin; Feng-Jiau Lin; Tzen-Yuh Chiang & Teh-Wang Lee (2015). "The complete mitochondrial genome sequence of Metzia formosae (Cypriniformes, Cyprinidae)". Mitochondrial DNA. 26 (2): 257–258. doi:10.3109/19401736.2013.823187. PMID   24021002.
  79. Xiao Jiang Chen; Lin Song; You Wen Cao & Quan Wang (2022). "Phylogenetic relationship and characterization of the complete mitochondrial genome sequence of Opsarius caudiocellatus (Cypriniformes: Danionidae: Chedrinae)". Mitochondrial DNA Part B. 7 (12): 2051–2055. doi:10.1080/23802359.2022.2151324. PMC   9744206 . PMID   36518734.
  80. Liu HP, Xiao SJ, Wu N, Wang D, Liu YC, Zhou CW, et al. (February 2019). "The sequence and de novo assembly of Oxygymnocypris stewartii genome". Scientific Data. 6: 190009. Bibcode:2019NatSD...690009L. doi:10.1038/sdata.2019.9. PMC   6362891 . PMID   30720802.
  81. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of Pseudobrama simoni". GigaScience Database. doi:10.5524/102191.
  82. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the rosy bitterling, Rhodeus ocellatus". GigaScience Database. doi:10.5524/102192.
  83. Yuan D, Chen X, Gu H, Zou M, Zou Y, Fang J, et al. (November 2020). "Chromosomal genome of Triplophysa bleekeri provides insights into its evolution and environmental adaptation". GigaScience. 9 (11). doi:10.1093/gigascience/giaa132. PMC   7684707 . PMID   33231676.
  84. 1 2 3 4 Johnson LK, Sahasrabudhe R, Gill JA, Roach JL, Froenicke L, Brown CT, Whitehead A (June 2020). "Draft genome assemblies using sequencing reads from Oxford Nanopore Technology and Illumina platforms for four species of North American Fundulus killifish". GigaScience. 9 (6). doi:10.1093/gigascience/giaa067. PMC   7301629 . PMID   32556169.
  85. Shao F, Ludwig A, Mao Y, Liu N, Peng Z (August 2020). "Chromosome-level genome assembly of the female western mosquitofish (Gambusia affinis)". GigaScience. 9 (8). doi:10.1093/gigascience/giaa092. PMC   7450667 . PMID   32852039.
  86. van Kruistum H, van den Heuvel J, Travis J, Kraaijeveld K, Zwaan BJ, Groenen MA, Megens HJ, Pollux BJ (July 2019). "The genome of the live-bearing fish Heterandria formosa implicates a role of conserved vertebrate genes in the evolution of placental fish". BMC Evolutionary Biology. 19 (1): 156. Bibcode:2019BMCEE..19..156V. doi: 10.1186/s12862-019-1484-2 . PMC   6660938 . PMID   31349784.
  87. Charlesworth D, Graham C, Trivedi U, Gardner J, Bergero R (July 2021). "PromethION sequencing and assembly of the genome of Micropoecilia picta, a fish with a highly Degenerated Y chromosome". Genome Biology and Evolution. 13 (9). evab171. doi:10.1093/gbe/evab171. PMC   8449826 . PMID   34297069.
  88. Schartl M, Walter RB, Shen Y, Garcia T, Catchen J, Amores A, et al. (May 2013). "The genome of the platyfish, Xiphophorus maculatus, provides insights into evolutionary adaptation and several complex traits". Nature Genetics. 45 (5): 567–72. doi:10.1038/ng.2604. PMC   3677569 . PMID   23542700.
  89. Harel I, Benayoun BA, Machado B, Singh PP, Hu CK, Pech MF, Valenzano DR, Zhang E, Sharp SC, Artandi SE, Brunet A (February 2015). "A platform for rapid exploration of aging and diseases in a naturally short-lived vertebrate". Cell. 160 (5): 1013–1026. doi:10.1016/j.cell.2015.01.038. PMC   4344913 . PMID   25684364.
  90. Reichwald K, Petzold A, Koch P, Downie BR, Hartmann N, Pietsch S, et al. (December 2015). "Insights into Sex Chromosome Evolution and Aging from the Genome of a Short-Lived Fish". Cell. 163 (6): 1527–38. doi: 10.1016/j.cell.2015.10.071 . PMID   26638077. S2CID   16423362.
  91. Valenzano DR, Benayoun BA, Singh PP, Zhang E, Etter PD, Hu CK, Clément-Ziza M, Willemsen D, Cui R, Harel I, Machado BE, Yee MC, Sharp SC, Bustamante CD, Beyer A, Johnson EA, Brunet A (December 2015). "The African Turquoise Killifish Genome Provides Insights into Evolution and Genetic Architecture of Lifespan". Cell. 163 (6): 1539–54. doi:10.1016/j.cell.2015.11.008. PMC   4684691 . PMID   26638078.
  92. Wang K, Wang J, Zhu C, Yang L, Ren Y, Ruan J, et al. (February 2021). "African lungfish genome sheds light on the vertebrate water-to-land transition". Cell. 184 (5): 1362–1376.e18. doi: 10.1016/j.cell.2021.01.047 . PMID   33545087. S2CID   231809825.
  93. Rondeau EB, Minkley DR, Leong JS, Messmer AM, Jantzen JR, von Schalburg KR, et al. (2014). "The genome and linkage map of the northern pike (Esox lucius): conserved synteny revealed between the salmonid sister group and the Neoteleostei". PLOS ONE. 9 (7): e102089. Bibcode:2014PLoSO...9j2089R. doi: 10.1371/journal.pone.0102089 . PMC   4113312 . PMID   25069045.
  94. Ma Y, Lou F, Yin X, Cong B, Liu S, Zhao L, Zheng L (July 2022). "Whole-genome survey and phylogenetic analysis of Gadus macrocephalus". Bioscience Reports. 42 (7). doi:10.1042/bsr20221037. PMC   9289796 . PMID   35788826.
  95. Star B, Nederbragt AJ, Jentoft S, Grimholt U, Malmstrøm M, Gregers TF, et al. (August 2011). "The genome sequence of Atlantic cod reveals a unique immune system". Nature. 477 (7363): 207–210. Bibcode:2011Natur.477..207S. doi:10.1038/nature10342. PMC   3537168 . PMID   21832995.
  96. Jones FC, Grabherr MG, Chan YF, Russell P, Mauceli E, Johnson J, et al. (April 2012). "The genomic basis of adaptive evolution in threespine sticklebacks". Nature. 484 (7392): 55–61. Bibcode:2012Natur.484...55.. doi:10.1038/nature10944. PMC   3322419 . PMID   22481358.
  97. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the marble goby, Oxyeleotris marmorata". GigaScience Database. doi:10.5524/102185 . Retrieved 2020-08-19.
  98. Yang Y, Yoo JY, Baek SH, Song HY, Jo S, Jung SH, Choi JH (January 2022). "Chromosome-level genome assembly of the shuttles hoppfish, Periophthalmus modestus". GigaScience. 11 (1): giab089. doi:10.1093/gigascience/giab089. PMC   8756193 . PMID   35022698.
  99. Gallant JR, Traeger LL, Volkening JD, Moffett H, Chen PH, Novina CD, et al. (June 2014). "Nonhuman genetics. Genomic basis for the convergent evolution of electric organs". Science. 344 (6191): 1522–5. doi:10.1126/science.1254432. PMC   5541775 . PMID   24970089.
  100. Wang X, Qu M, Liu Y, Schneider RF, Song Y, Chen Z, et al. (January 2022). "Genomic basis of evolutionary adaptation in a warm-blooded fish". Innovation. 3 (1): 100185. Bibcode:2022Innov...300185W. doi:10.1016/j.xinn.2021.100185. PMC   8693259 . PMID   34984407.
  101. "Spotted gar". Ensembl. Retrieved 11 September 2014.
  102. Zhong L, Wang M, Li D, Tang S, Zhang T, Bian W, Chen X (September 2016). "Complete mitochondrial genome of Chinese icefish Neosalanx tangkahkeiis (Salmoniformes, Salangidae): comparison reveals Neosalanx taihuensis not a valid name". Mitochondrial DNA Part A. 27 (5): 3303–3305. doi:10.3109/19401736.2015.1015014. PMID   25693716. S2CID   5644729.
  103. Liu K, Xu D, Li J, Bian C, Duan J, Zhou Y, et al. (April 2017). "Whole genome sequencing of Chinese clearhead icefish, Protosalanx hyalocranius". GigaScience. 6 (4): 1–6. doi:10.1093/gigascience/giw012. PMC   5530312 . PMID   28327943.
  104. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genome data of the African bonytongue, Heterotis niloticus". GigaScience Database. doi:10.5524/102184 . Retrieved 2020-08-19.
  105. Gallant JR, Losilla M, Tomlinson C, Warren WC (December 2017). "The Genome and Adult Somatic Transcriptome of the Mormyrid Electric Fish Paramormyrops kingsleyae". Genome Biology and Evolution. 9 (12): 3525–3530. doi:10.1093/gbe/evx265. PMC   5751062 . PMID   29240929.
  106. Bian C, Hu Y, Ravi V, Kuznetsova IS, Shen X, Mu X, et al. (April 2016). "The Asian arowana (Scleropages formosus) genome provides new insights into the evolution of an early lineage of teleosts". Scientific Reports. 6 (1): 24501. Bibcode:2016NatSR...624501B. doi:10.1038/srep24501. PMC   4835728 . PMID   27089831.
  107. Li C, Yang X, Shao L, Zhang R, Liu Q, Zhang M, et al. (2021-11-09). "Bicolor angelfish (Centropyge bicolor) provides the first chromosome-level genome of the Pomacanthidae family". Gigabyte. 2021: 1–13. doi:10.46471/gigabyte.32. PMC   9650296 . PMID   36824335. S2CID   243958461.
  108. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the melon butterflyfish, Chaetodon trifasciatus". GigaScience Database. doi:10.5524/102187.
  109. Xu J, Bian C, Chen K, Liu G, Jiang Y, Luo Q, et al. (April 2017). "Draft genome of the Northern snakehead, Channa argus". GigaScience. 6 (4): 1–5. doi:10.1093/gigascience/gix011. PMC   5530311 . PMID   28327946.
  110. 1 2 Ou M, Huang R, Yang C, Gui B, Luo Q, Zhao J, et al. (October 2021). "Chromosome-level genome assemblies of Channa argusandChanna maculata and comparative analysis of their temperature adaptability". GigaScience. 10 (10). doi:10.1093/gigascience/giab070. PMC   8529964 . PMID   34673930.
  111. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the copperband butterflyfish, Chelmon rostratus". GigaScience Database. doi:10.5524/102189 . Retrieved 2020-08-19.
  112. 1 2 Chen L, Lu Y, Li W, Ren Y, Yu M, Jiang S, et al. (April 2019). "The genomic basis for colonizing the freezing Southern Ocean revealed by Antarctic toothfish and Patagonian robalo genomes". GigaScience. 8 (4). doi:10.1093/gigascience/giz016. PMC   6457430 . PMID   30715292.
  113. Zhou Q, Gao H, Xu H, Lin H, Chen S (February 2021). "Correction to: A Chromosomal-scale Reference Genome of the Kelp Grouper Epinephelus moara". Marine Biotechnology. 23 (1): 17. doi:10.1007/s10126-020-10003-6. ISSN   1436-2228. PMID   33638737. S2CID   222217077.
  114. Wu C, Zhang D, Kan M, Lv Z, Zhu A, Su Y, et al. (November 2014). "The draft genome of the large yellow croaker reveals well-developed innate immunity". Nature Communications. 5: 5227. Bibcode:2014NatCo...5.5227W. doi:10.1038/ncomms6227. PMC   4263168 . PMID   25407894.
  115. Norrell AE, Jones KL, Saillant EA (2020-04-29). "Development and characterization of genomic resources for a non-model marine teleost, the red snapper (Lutjanus campechanus, Lutjanidae): Construction of a high-density linkage map, anchoring of genome contigs and comparative genomic analysis". PLOS ONE. 15 (4): e0232402. Bibcode:2020PLoSO..1532402N. doi: 10.1371/journal.pone.0232402 . PMC   7190162 . PMID   32348345.
  116. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the bignose unicornfish, Naso vlamingii". GigaScience Database. doi:10.5524/102188.
  117. Ahn DH, Shin SC, Kim BM, Kang S, Kim JH, Ahn I, Park J, Park H (August 2017). "Draft genome of the Antarctic dragonfish, Parachaenichthys charcoti". GigaScience. 6 (8): 1–6. doi:10.1093/gigascience/gix060. PMC   5597851 . PMID   28873966.
  118. Sarropoulou E, Sundaram AY, Kaitetzidou E, Kotoulas G, Gilfillan GD, Papandroulakis N, et al. (December 2017). "Full genome survey and dynamics of gene expression in the greater amberjack Seriola dumerili". GigaScience. 6 (12): 1–13. doi:10.1093/gigascience/gix108. PMC   5751066 . PMID   29126158.
  119. Xu S, Xiao S, Zhu S, Zeng X, Luo J, Liu J, et al. (September 2018). "A draft genome assembly of the Chinese sillago (Sillago sinica), the first reference genome for Sillaginidae fishes". GigaScience. 7 (9). doi:10.1093/gigascience/giy108. PMC   6143730 . PMID   30202912.
  120. Lu L, Zhao J, Li C (March 2020). "High-Quality Genome Assembly and Annotation of the Big-Eye Mandarin Fish (Siniperca knerii)". G3: Genes, Genomes, Genetics. 10 (3): 877–880. doi:10.1534/g3.119.400930. PMC   7056987 . PMID   31953307.
  121. Pauletto M, Manousaki T, Ferraresso S, Babbucci M, Tsakogiannis A, Louro B, et al. (2018-08-17). "Sparus aurata reveals the evolutionary dynamics of sex-biased genes in a sequential hermaphrodite fish". Communications Biology. 1 (1): 119. doi:10.1038/s42003-018-0122-7. PMC   6123679 . PMID   30271999.
  122. Lien S, Koop BF, Sandve SR, Miller JR, Kent MP, Nome T, et al. (May 2016). "The Atlantic salmon genome provides insights into rediploidization". Nature. 533 (7602): 200–5. Bibcode:2016Natur.533..200L. doi:10.1038/nature17164. PMC   8127823 . PMID   27088604. S2CID   4398298.
  123. Berthelot C, Brunet F, Chalopin D, Juanchich A, Bernard M, Noël B, et al. (April 2014). "The rainbow trout genome provides novel insights into evolution after whole-genome duplication in vertebrates". Nature Communications. 5: 3657. Bibcode:2014NatCo...5.3657B. doi:10.1038/ncomms4657. PMC   4071752 . PMID   24755649.
  124. Christensen KA, Leong JS, Sakhrani D, Biagi CA, Minkley DR, Withler RE, et al. (2018-04-05). "Chinook salmon (Oncorhynchus tshawytscha) genome and transcriptome". PLOS ONE. 13 (4): e0195461. Bibcode:2018PLoSO..1395461C. doi: 10.1371/journal.pone.0195461 . PMC   5886536 . PMID   29621340.
  125. Narum SR, Di Genova A, Micheletti SJ, Maass A (July 2018). "Genomic variation underlying complex life-history traits revealed by genome sequencing in Chinook salmon". Proceedings. Biological Sciences. 285 (1883): 20180935. doi:10.1098/rspb.2018.0935. PMC   6083255 . PMID   30051839.
  126. Smith SR, Normandeau E, Djambazian H, Nawarathna PM, Berube P, Muir AM, et al. (February 2022). "A chromosome-anchored genome assembly for Lake Trout (Salvelinus namaycush)". Molecular Ecology Resources. 22 (2): 679–694. doi:10.1111/1755-0998.13483. PMC   9291852 . PMID   34351050. S2CID   234859350.
  127. He Y, Chang Y, Bao L, Yu M, Li R, Niu J, et al. (May 2019). "A chromosome-level genome of black rockfish, Sebastes schlegelii, provides insights into the evolution of live birth" (PDF). Molecular Ecology Resources. 19 (5): 1309–1321. doi:10.1111/1755-0998.13034. PMID   31077549. S2CID   149454779.
  128. Li, N, Bao, L, Zhou, T, et al. (2018). "Genome sequence of walking catfish (Clarias batrachus) provides insights into terrestrial adaptation". BMC Genomics. 19 (952): 952. doi: 10.1186/s12864-018-5355-9 . PMC   6302426 . PMID   30572844.
  129. Liu Z, Liu S, Yao J, Bao L, Zhang J, Li Y, et al. (June 2016). "The channel catfish genome sequence provides insights into the evolution of scale formation in teleosts". Nature Communications. 7: 11757. Bibcode:2016NatCo...711757L. doi:10.1038/ncomms11757. PMC   4895719 . PMID   27249958.
  130. Gao Z, You X, Zhang X, Chen J, Xu T, Huang Y, Lin X, Xu J, Bian C, Shi Q (September 2021). "A chromosome-level genome assembly of the striped catfish (Pangasianodon hypophthalmus)". Genomics. 113 (5): 3349–3356. doi: 10.1016/j.ygeno.2021.07.026 . ISSN   0888-7543. PMID   34343676.
  131. Ozerov MY, Flajšhans M, Noreikiene K, Vasemägi A, Gross R (November 2020). "Draft Genome Assembly of the Freshwater Apex Predator Wels Catfish (Silurus glanis) Using Linked-Read Sequencing". G3: Genes, Genomes, Genetics. 10 (11): 3897–3906. doi:10.1534/g3.120.401711. PMC   7642921 . PMID   32917720. S2CID   221636677. Archived from the original on 2020-11-26. Retrieved 2020-11-11.
  132. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genomic data of the Siamese tigerfish, Datnioides pulcher". GigaScience Database. doi:10.5524/102186.
  133. Sun S, Wang Y, Zeng W, Du X, Li L, Hong X, et al. (May 2020). "The genome of Mekong tiger perch (Datnioides undecimradiatus) provides insights into the phylogenetic position of Lobotiformes and biological conservation". Scientific Reports. 10 (1): 8164. Bibcode:2020NatSR..10.8164S. doi:10.1038/s41598-020-64398-2. PMC   7235238 . PMID   32424221. S2CID   218670972.
  134. Small CM, Bassham S, Catchen J, Amores A, Fuiten AM, Brown RS, et al. (December 2016). "The genome of the Gulf pipefish enables understanding of evolutionary innovations". Genome Biology. 17 (1): 258. doi: 10.1186/s13059-016-1126-6 . PMC   5168715 . PMID   27993155.
  135. Ramesh B, Small CM, Healey H, Johnson B, Barker E, Currey M, et al. (2023-02-20). "Improvements to the Gulf pipefish Syngnathus scovelli genome". GigaByte. 2023: 1–11. doi:10.46471/gigabyte.76. PMC   10038202 . PMID   36969711.
  136. Fan G, Song Y, Yang L, Huang X, Zhang S, Zhang M, et al. (2020). "Genome data of the long-spine porcupinefish, Diodon holocanthus". GigaScience Database. doi:10.5524/102183.
  137. Pan H, Yu H, Ravi V, Li C, Lee AP, Lian MM, et al. (September 2016). "The genome of the largest bony fish, ocean sunfish (Mola mola), provides insights into its fast growth rate". GigaScience. 5 (1): 36. doi: 10.1186/s13742-016-0144-3 . PMC   5016917 . PMID   27609345.
  138. "Fourth Genome Assembly". Fugu Genome Project. International Fugu Genome Consortium. Archived from the original on 2010-01-31.
  139. Aparicio S, Chapman J, Stupka E, Putnam N, Chia JM, Dehal P, et al. (August 2002). "Whole-genome shotgun assembly and analysis of the genome of Fugu rubripes". Science. 297 (5585): 1301–10. Bibcode:2002Sci...297.1301A. doi:10.1126/science.1072104. PMID   12142439. S2CID   10310355.
  140. Jaillon O, Aury JM, Brunet F, Petit JL, Stange-Thomann N, Mauceli E, et al. (October 2004). "Genome duplication in the teleost fish Tetraodon nigroviridis reveals the early vertebrate proto-karyotype". Nature. 431 (7011): 946–57. Bibcode:2004Natur.431..946J. doi: 10.1038/nature03025 . PMID   15496914. S2CID   4414316.
  141. Farquharson, Katherine A.; McLennan, Elspeth A.; Belov, Katherine; Hogg, Carolyn J. (2023-07-18). "The genome sequence of the critically endangered Kroombit tinkerfrog (Taudactylus pleione)". F1000Research. 12 (845): 845. doi: 10.12688/f1000research.138571.1 . PMC   10474343 . PMID   37663197.
  142. Li J, Yu H, Wang W, Fu C, Zhang W, Han F, Wu H (December 2019). "Genomic and transcriptomic insights into molecular basis of sexually dimorphic nuptial spines in Leptobrachium leishanense". Nature Communications. 10 (1): 5551. Bibcode:2019NatCo..10.5551L. doi:10.1038/s41467-019-13531-5. PMC   6895153 . PMID   31804492.
  143. Li Q, Guo Q, Zhou Y, Tan H, Bertozzi T, Zhu Y, et al. (2020). "A draft genome assembly of the eastern banjo frog Limnodynastes dumerilii dumerilii (Anura: Limnodynastidae)". Gigabyte. 2020: 1–13. doi:10.46471/gigabyte.2. PMC   9632003 . PMID   36824594. S2CID   229079337.
  144. Sun YB, Xiong ZJ, Xiang XY, Liu SP, Zhou WW, Tu XL, et al. (March 2015). "Whole-genome sequence of the Tibetan frog Nanorana parkeri and the comparative evolution of tetrapod genomes". Proceedings of the National Academy of Sciences of the United States of America. 112 (11): E1257-62. Bibcode:2015PNAS..112E1257S. doi: 10.1073/pnas.1501764112 . PMC   4371989 . PMID   25733869.
  145. Rogers RL, Zhou L, Chu C, Márquez R, Corl A, Linderoth T, et al. (December 2018). "Genomic Takeover by Transposable Elements in the Strawberry Poison Frog". Molecular Biology and Evolution. 35 (12): 2913–2927. doi:10.1093/molbev/msy185. PMC   6278860 . PMID   30517748.
  146. Lamichhaney S, Catullo R, Keogh JS, Clulow S, Edwards SV, Ezaz T (March 2021). "A bird-like genome from a frog: Mechanisms of genome size reduction in the ornate burrowing frog, Platyplectrum ornatum". Proceedings of the National Academy of Sciences of the United States of America. 118 (11): e2011649118. Bibcode:2021PNAS..11811649L. doi: 10.1073/pnas.2011649118 . PMC   7980411 . PMID   33836564.
  147. Denton RD, Kudra RS, Malcom JW, Du Preez L, Malone JH (2018-11-20). "The African Bullfrog (Pyxicephalus adspersus) genome unites the two ancestral ingredients for making vertebrate sex chromosomes". bioRxiv: 329847. doi:10.1101/329847. S2CID   90800869.
  148. Hammond SA, Warren RL, Vandervalk BP, Kucuk E, Khan H, Gibb EA, Pandoh P, Kirk H, Zhao Y, Jones M, Mungall AJ, Coope R, Pleasance S, Moore RA, Holt RA, Round JM, Ohora S, Walle BV, Veldhoen N, Helbing CC, Birol I (November 2017). "The North American bullfrog draft genome provides insight into hormonal regulation of long noncoding RNA". Nature Communications. 8 (1): 1433. Bibcode:2017NatCo...8.1433H. doi:10.1038/s41467-017-01316-7. PMC   5681567 . PMID   29127278.
  149. Chen W, Chen H, Liao J, Tang M, Qin H, Zhao Z, et al. (January 2023). "Chromosome-level genome assembly of a high-altitude-adapted frog (Rana kukunoris) from the Tibetan plateau provides insight into amphibian genome evolution and adaptation". Frontiers in Zoology. 20 (1): 1. doi: 10.1186/s12983-022-00482-9 . PMC   9817415 . PMID   36604706.
  150. Edwards RJ, Tuipulotu DE, Amos TG, O'Meally D, Richardson MF, Russell TL, et al. (August 2018). "Draft genome assembly of the invasive cane toad, Rhinella marina". GigaScience. 7 (9). doi:10.1093/gigascience/giy095. PMC   6145236 . PMID   30101298.
  151. Li Y, Ren Y, Zhang D, Jiang H, Wang Z, Li X, Rao D (September 2019). "Chromosome-level assembly of the mustache toad genome using third-generation DNA sequencing and Hi-C analysis". GigaScience. 8 (9). doi:10.1093/gigascience/giz114. PMC   6755253 . PMID   31544214.
  152. Hellsten U, Harland RM, Gilchrist MJ, Hendrix D, Jurka J, Kapitonov V, et al. (April 2010). "The genome of the Western clawed frog Xenopus tropicalis". Science. 328 (5978): 633–6. Bibcode:2010Sci...328..633H. doi:10.1126/science.1183670. PMC   2994648 . PMID   20431018.
  153. Nowoshilow S, Schloissnig S, Fei JF, Dahl A, Pang AW, Pippel M, et al. (February 2018). "The axolotl genome and the evolution of key tissue formation regulators". Nature. 554 (7690): 50–55. Bibcode:2018Natur.554...50N. doi: 10.1038/nature25458 . hdl: 21.11116/0000-0003-F659-4 . PMID   29364872. S2CID   256770603.
  154. Le Duc D, Renaud G, Krishnan A, Almén MS, Huynen L, Prohaska SJ, et al. (July 2015). "Kiwi genome provides insights into evolution of a nocturnal lifestyle". Genome Biology. 16 (1): 147. doi: 10.1186/s13059-015-0711-4 . PMC   4511969 . PMID   26201466.
  155. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 Jarvis ED, Mirarab S, Aberer AJ, Li B, Houde P, Li C, et al. (December 2014). "Whole-genome analyses resolve early branches in the tree of life of modern birds". Science. 346 (6215): 1320–31. Bibcode:2014Sci...346.1320J. doi:10.1126/science.1253451. PMC   4405904 . PMID   25504713.
  156. Edwards, Scott V.; Cloutier, Alison; Cockburn, Glenn; Driver, Robert; Grayson, Phil; Katoh, Kazutaka; Baldwin, Maude W.; Sackton, Timothy B.; Baker, Allan J. (2024-05-24). "A nuclear genome assembly of an extinct flightless bird, the little bush moa". Science Advances. 10 (21). doi:10.1126/sciadv.adj6823. ISSN   2375-2548.
  157. Huang Y, Li Y, Burt DW, Chen H, Zhang Y, Qian W, et al. (July 2013). "The duck genome and transcriptome provide insight into an avian influenza virus reservoir species". Nature Genetics. 45 (7): 776–783. doi:10.1038/ng.2657. PMC   4003391 . PMID   23749191.
  158. Mueller RC, Ellström P, Howe K, Uliano-Silva M, Kuo RI, Miedzinska K, et al. (December 2021). "A high-quality genome and comparison of short- versus long-read transcriptome of the palaearctic duck Aythya fuligula (tufted duck)". GigaScience. 10 (12): giab081. doi:10.1093/gigascience/giab081. PMC   8685854 . PMID   34927191.
  159. Zhou C, Tu H, Yu H, Zheng S, Dai B, Price M, et al. (September 2019). "The Draft Genome of the Endangered Sichuan Partridge (Arborophila rufipectus) with Evolutionary Implications". Genes. 10 (9): 677. doi: 10.3390/genes10090677 . PMC   6770966 . PMID   31491910.
  160. International Chicken Genome Sequencing Consortium. (December 2004). "Sequence and comparative analysis of the chicken genome provide unique perspectives on vertebrate evolution". Nature. 432 (7018): 695–716. Bibcode:2004Natur.432..695C. doi: 10.1038/nature03154 . PMID   15592404. S2CID   4405203.
  161. Dalloul RA, Long JA, Zimin AV, Aslam L, Beal K, Blomberg L, et al. (September 2010). "Multi-platform next-generation sequencing of the domestic turkey (Meleagris gallopavo): genome assembly and analysis". PLOS Biology. 8 (9): e10000475. doi: 10.1371/journal.pbio.1000475 . PMC   2935454 . PMID   20838655.
  162. Vignal A, Boitard S, Thébault N, Dayo GK, Yapi-Gnaore V, Youssao Abdou Karim I, et al. (July 2019). "A guinea fowl genome assembly provides new evidence on evolution following domestication and selection in galliformes". Molecular Ecology Resources. 19 (4): 997–1014. doi:10.1111/1755-0998.13017. PMC   6579635 . PMID   30945415.
  163. Jaiswal SK, Gupta A, Saxena R (5 May 2018). "Genome Sequence of Indian Peacock Reveals the Peculiar Case of a Glittering Bird". bioRxiv . doi:10.1101/315457. S2CID   196632443.
  164. Zhang X, Lin C, Li H, Liu S, Wang Q, Yang S, et al. (February 2022). "Chromosome-Level Genome Assembly of the Green Peafowl (Pavo muticus)". Genome Biology and Evolution. 14 (2): evac015. doi:10.1093/gbe/evac015. PMC   8857919 . PMID   35106558.
  165. Liu Y, Liu S, Zhang N, Que P, Liu N, Höglund J, et al. (December 2019). "Genome Assembly of the Common Pheasant Phasianus colchicus: A Model for Speciation and Ecological Genomics". Genome Biology and Evolution. 11 (12): 3326–3331. doi:10.1093/gbe/evz249. PMC   7145668 . PMID   31713630.
  166. Lee CY, Hsieh PH, Chiang LM, Chattopadhyay A, Li KY, Lee YF, et al. (May 2018). "Whole-genome de novo sequencing reveals unique genes that contributed to the adaptive evolution of the Mikado pheasant". GigaScience. 7 (5). doi:10.1093/gigascience/giy044. PMC   5941149 . PMID   29722814.
  167. Wang B, Ekblom R, Bunikis I, Siitari H, Höglund J (March 2014). "Whole genome sequencing of the black grouse (Tetrao tetrix): reference guided assembly suggests faster-Z and MHC evolution". BMC Genomics. 15 (1): 180. doi: 10.1186/1471-2164-15-180 . PMC   4022176 . PMID   24602261.
  168. Chung O, Jin S, Cho YS, Lim J, Kim H, Jho S, et al. (October 2015). "The first whole genome and transcriptome of the cinereous vulture reveals adaptation in the gastric and immune defense systems and possible convergent evolution between the Old and New World vultures". Genome Biology. 16 (1): 215. doi: 10.1186/s13059-015-0780-4 . PMC   4618389 . PMID   26486310.
  169. "Golden Eagle Genome Sequenced".
  170. 1 2 3 4 Galla SJ, Forsdick NJ, Brown L, Hoeppner MP, Knapp M, Maloney RF, et al. (December 2018). "Reference Genomes from Distantly Related Species Can Be Used for Discovery of Single Nucleotide Polymorphisms to Inform Conservation Management". Genes. 10 (1): 9. doi: 10.3390/genes10010009 . PMC   6356778 . PMID   30583569.
  171. Li S, Li B, Cheng C, Xiong Z, Liu Q, Lai J, et al. (2014-12-11). "Genomic signatures of near-extinction and rebirth of the crested ibis and other endangered bird species". Genome Biology. 15 (12): 557. doi: 10.1186/s13059-014-0557-1 . PMC   4290368 . PMID   25496777.
  172. 1 2 Zhan X, Pan S, Wang J, Dixon A, He J, Muller MG, et al. (May 2013). "Peregrine and saker falcon genome sequences provide insights into evolution of a predatory lifestyle". Nature Genetics. 45 (5): 563–6. doi: 10.1038/ng.2588 . PMID   23525076. S2CID   10858993.
  173. Sutton JT, Helmkampf M, Steiner CC, Bellinger MR, Korlach J, Hall R, et al. (August 2018). "A High-Quality, Long-Read De Novo Genome Assembly to Aid Conservation of Hawaii's Last Remaining Crow Species". Genes. 9 (8): 393. doi: 10.3390/genes9080393 . PMC   6115840 . PMID   30071683.
  174. Gan HM, Falk S, Morales HE, Austin CM, Sunnucks P, Pavlova A (September 2019). "Genomic evidence of neo-sex chromosomes in the eastern yellow robin". GigaScience. 8 (9). doi:10.1093/gigascience/giz111. PMC   6736294 . PMID   31494668.
  175. 1 2 Ellegren H, Smeds L, Burri R, Olason PI, Backström N, Kawakami T, et al. (November 2012). "The genomic landscape of species divergence in Ficedula flycatchers". Nature. 491 (7426): 756–60. Bibcode:2012Natur.491..756E. doi: 10.1038/nature11584 . PMID   23103876. S2CID   4414084.
  176. Formenti G, Chiara M, Poveda L, Francoijs KJ, Bonisoli-Alquati A, Canova L, et al. (January 2019). "SMRT long reads and Direct Label and Stain optical maps allow the generation of a high-quality genome assembly for the European barn swallow (Hirundo rustica rustica)". GigaScience. 8 (1). doi:10.1093/gigascience/giy142. PMC   6324554 . PMID   30496513.
  177. Colquitt BM, Mets DG, Brainard MS (March 2018). "Draft genome assembly of the Bengalese finch, Lonchura striata domestica, a model for motor skill variability and learning". GigaScience. 7 (3): 1–6. doi:10.1093/gigascience/giy008. PMC   5861438 . PMID   29618046.
  178. Prost S, Armstrong EE, Nylander J, Thomas GW, Suh A, Petersen B, et al. (2019). "GigaDB Dataset - Genome data of the bird of paradise, Lycocorax pyrrhopterus". GigaScience Database. doi:10.5524/102158 . Retrieved 2019-06-14.
  179. 1 2 3 4 Prost S, Armstrong EE, Nylander J, Thomas GW, Suh A, Petersen B, et al. (May 2019). "Comparative analyses identify genomic features potentially involved in the evolution of birds-of-paradise". GigaScience. 8 (5). doi:10.1093/gigascience/giz003. PMC   6497032 . PMID   30689847.
  180. Peona V, Blom MP, Xu L, Burri R, Sullivan S, Bunikis I, et al. (January 2021). "Identifying the causes and consequences of assembly gaps using a multiplatform genome assembly of a bird-of-paradise". Molecular Ecology Resources. 21 (1): 263–286. doi:10.1111/1755-0998.13252. PMC   7757076 . PMID   32937018.
  181. Peñalba JV, Deng Y, Fang Q, Joseph L, Moritz C, Cockburn A (March 2020). "Genome of an iconic Australian bird: High-quality assembly and linkage map of the superb fairy-wren (Malurus cyaneus)". Molecular Ecology Resources. 20 (2): 560–578. doi: 10.1111/1755-0998.13124 . hdl: 1885/206161 . PMID   31821695. S2CID   209317246.
  182. de Villemereuil P, Rutschmann A, Lee KD, Ewen JG, Brekke P, Santure AW (March 2019). "Little Adaptive Potential in a Threatened Passerine Bird". Current Biology. 29 (5): 889–894.e3. Bibcode:2019CBio...29E.889D. doi: 10.1016/j.cub.2019.01.072 . PMID   30799244. S2CID   72334429.
  183. Prost S, Armstrong EE, Nylander J, Thomas GW, Suh A, Petersen B, et al. (2019). "Genome data of the bird of paradise, Ptiloris paradiseus". GigaScience Database. doi:10.5524/102159.
  184. Warren WC, Clayton DF, Ellegren H, Arnold AP, Hillier LW, Künstner A, et al. (April 2010). "The genome of a songbird". Nature. 464 (7289): 757–62. Bibcode:2010Natur.464..757W. doi:10.1038/nature08819. PMC   3187626 . PMID   20360741.
  185. 1 2 Kolchanova S, Kliver S, Komissarov A, Dobrinin P, Tamazian G, Grigorev K, et al. (January 2019). "Genomes of Three Closely Related Caribbean Amazons Provide Insight for Species History and Conservation". Genes. 10 (1): 54. doi: 10.3390/genes10010054 . PMC   6356210 . PMID   30654561.
  186. Oleksyk TK, Pombert JF, Siu D, Mazo-Vargas A, Ramos B, Guiblet W, et al. (September 2012). "A locally funded Puerto Rican parrot (Amazona vittata) genome sequencing project increases avian data and advances young researcher education". GigaScience. 1 (1): 14. doi: 10.1186/2047-217X-1-14 . PMC   3626513 . PMID   23587420.
  187. Seabury CM, Dowd SE, Seabury PM, Raudsepp T, Brightsmith DJ, Liboriussen P, et al. (2013-05-08). "A multi-platform draft de novo genome assembly and comparative analysis for the Scarlet Macaw (Ara macao)". PLOS ONE. 8 (5): e62415. Bibcode:2013PLoSO...862415S. doi: 10.1371/journal.pone.0062415 . PMC   3648530 . PMID   23667475.
  188. Galla SJ, Moraga R, Brown L, Cleland S, Hoeppner MP, Maloney RF, et al. (May 2020). "A comparison of pedigree, genetic and genomic estimates of relatedness for informing pairing decisions in two critically endangered birds: Implications for conservation breeding programmes worldwide". Evolutionary Applications. 13 (5): 991–1008. Bibcode:2020EvApp..13..991G. doi:10.1111/eva.12916. PMC   7232769 . PMID   32431748.
  189. Guhlin, Joseph; Le Lec, Marissa F.; Wold, Jana; Koot, Emily; Winter, David; Biggs, Patrick J.; Galla, Stephanie J.; Urban, Lara; Foster, Yasmin; Cox, Murray P.; Digby, Andrew; Uddstrom, Lydia R.; Eason, Daryl; Vercoe, Deidre; Davis, Tāne (2023-08-28). "Species-wide genomics of kākāpō provides tools to accelerate recovery". Nature Ecology & Evolution. 7 (10): 1693–1705. Bibcode:2023NatEE...7.1693G. doi:10.1038/s41559-023-02165-y. ISSN   2397-334X. PMID   37640765. S2CID   261324540.
  190. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 Pan H, Cole TL, Bi X, Fang M, Zhou C, Yang Z, et al. (September 2019). "High-coverage genomes to elucidate the evolution of penguins". GigaScience. 8 (9). doi:10.1093/gigascience/giz117. PMC   6904868 . PMID   31531675.
  191. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from King penguin (Aptenodytes patagonicus)". GigaScience Database. doi:10.5524/102182.
  192. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Western rockhopper penguin (Eudyptes chrysocome)". GigaScience Database. doi:10.5524/102170.
  193. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Macaroni penguin (Eudyptes chrysolophus chrysolophus)". GigaScience Database. doi:10.5524/102165.
  194. Alan DT, Andrew RH, McKinlay B, Charles-André B, Chengran Z, Daniel KT, et al. (2019). "Genomic data from Royal penguin (Eudyptes chrysolophus schlegeli)". GigaScience Database. doi:10.5524/102164.
  195. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Eastern rockhopper penguin (Eudyptes filholi)". GigaScience Database. doi:10.5524/102169.
  196. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Northern rockhopper penguin (Eudyptes moseleyi)". GigaScience Database. doi:10.5524/102171.
  197. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Fiordland-crested penguin (Eudyptes pachyrhynchus)". GigaScience Database. doi:10.5524/102166.
  198. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Snares-crested penguin (Eudyptes robustus)". GigaScience Database. doi:10.5524/102167.
  199. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Erect-crested penguin (Eudyptes sclateri)". GigaScience Database. doi:10.5524/102168.
  200. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from White-flippered penguin (Eudyptula minor albosignata)". GigaScience Database. doi:10.5524/102177.
  201. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Little blue penguin (Eudyptula minor minor)". GigaScience Database. doi:10.5524/102178.
  202. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Fairy penguin (Eudyptula novaehollandiae)". GigaScience Database. doi:10.5524/102179.
  203. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Yellow-eyed penguin (Megadyptes antipodes antipodes)". GigaScience Database. doi:10.5524/102172.
  204. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Chinstrap penguin (Pygoscelis antarctica)". GigaScience Database. doi:10.5524/102181.
  205. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Gentoo penguin (Pygoscelis papua)". GigaScience Database. doi:10.5524/102180.
  206. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Humboldt penguin (Spheniscus humboldti)". GigaScience Database. doi:10.5524/102176.
  207. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Magellanic penguin (Spheniscus magellanicus)". GigaScience Database. doi:10.5524/102173.
  208. Pan H, Cole T, Couto A, Bi X, Machado AM, Brejova B, et al. (2019). "Genomic data from Galápagos penguin (Spheniscus mendiculus)". GigaScience Database. doi:10.5524/102175.
  209. 1 2 Hanna ZR, Henderson JB, Wall JD, Emerling CA, Fuchs J, Runckel C, et al. (October 2017). "Northern Spotted Owl (Strix occidentalis caurina) Genome: Divergence with the Barred Owl (Strix varia) and Characterization of Light-Associated Genes". Genome Biology and Evolution. 9 (10): 2522–2545. doi:10.1093/gbe/evx158. PMC   5629816 . PMID   28992302.
  210. 1 2 3 4 Burga A, Wang W, Ben-David E, Wolf PC, Ramey AM, Verdugo C, Lyons K, Parker PG, Kruglyak L (June 2017). "A genetic signature of the evolution of loss of flight in the Galapagos cormorant". Science. 356 (6341): eaal3345. doi:10.1126/science.aal3345. PMC   5567675 . PMID   28572335.
  211. 1 2 3 St John JA, Braun EL, Isberg SR, Miles LG, Chong AY, Gongora J, et al. (January 2012). "Sequencing three crocodilian genomes to illuminate the evolution of archosaurs and amniotes". Genome Biology. 13 (1): 415. doi: 10.1186/gb-2012-13-1-415 . PMC   3334581 . PMID   22293439.
  212. Wan QH, Pan SK, Hu L, Zhu Y, Xu PW, Xia JQ, et al. (September 2013). "Genome analysis and signature discovery for diving and sensory properties of the endangered Chinese alligator". Cell Research. 23 (9): 1091–105. doi:10.1038/cr.2013.104. PMC   3760627 . PMID   23917531.
  213. Wan QH, Pan SK, Hu L, Zhu Y, Xu PW, Xia JQ, et al. (March 28, 2014). "Genomic data of the Chinese alligator (Alligator sinensis)". GigaScience Database. doi:10.5524/100077.
  214. 1 2 Wang Z, Pascual-Anaya J, Zadissa A, Li W, Niimura Y, Huang Z, et al. (June 2013). "The draft genomes of soft-shell turtle and green sea turtle yield insights into the development and evolution of the turtle-specific body plan". Nature Genetics. 45 (6): 701–706. doi:10.1038/ng.2615. PMC   4000948 . PMID   23624526.
  215. Todd BD, Jenkinson TS, Escalona M, Beraut E, Nguyen O, Sahasrabudhe R, et al. (November 2022). "Reference Genome of the Northwestern Pond Turtle, Actinemys marmorata". The Journal of Heredity. 113 (6): 624–631. doi:10.1093/jhered/esac021. PMC   9709993 . PMID   35665811.
  216. Shaffer HB, Minx P, Warren DE, Shedlock AM, Thomson RC, Valenzuela N, et al. (March 2013). "The western painted turtle genome, a model for the evolution of extreme physiological adaptations in a slowly evolving lineage". Genome Biology. 14 (3): R28. doi: 10.1186/gb-2013-14-3-r28 . PMC   4054807 . PMID   23537068.
  217. Cao D, Wang M, Ge Y, Gong S (May 2019). "Draft genome of the big-headed turtle Platysternon megacephalum". Scientific Data. 6 (1): 60. Bibcode:2019NatSD...6...60C. doi:10.1038/s41597-019-0067-9. PMC   6522511 . PMID   31097710.
  218. Liu J, Liu S, Zheng K, Tang M, Gu L, Young J, et al. (May 2022). "Chromosome-level genome assembly of the Chinese three-keeled pond turtle (Mauremys reevesii) provides insights into freshwater adaptation". Molecular Ecology Resources. 22 (4): 1596–1605. doi:10.1111/1755-0998.13563. PMID   34845835. S2CID   244730411.
  219. 1 2 Quesada V, Freitas-Rodríguez S, Miller J, Pérez-Silva JG, Jiang ZF, Tapia W, et al. (January 2019). "Giant tortoise genomes provide insights into longevity and age-related disease". Nature Ecology & Evolution. 3 (1): 87–95. doi:10.1038/s41559-018-0733-x. PMC   6314442 . PMID   30510174.
  220. Çilingir FG, A'Bear L, Hansen D, Davis LR, Bunbury N, Ozgul A, et al. (October 2022). "Chromosome-level genome assembly for the Aldabra giant tortoise enables insights into the genetic health of a threatened population". GigaScience. 11. doi:10.1093/gigascience/giac090. PMC   9553416 . PMID   36251273.
  221. Jensen EL, Gaughran SJ, Fusco NA, Poulakakis N, Tapia W, Sevilla C, et al. (June 2022). "The Galapagos giant tortoise Chelonoidis phantasticus is not extinct". Communications Biology. 5 (1): 546. doi:10.1038/s42003-022-03483-w. PMC   9184544 . PMID   35681083.
  222. Gemmell NJ, Rutherford K, Prost S, Tollis M, Winter D, Macey JR, et al. (August 2020). "The tuatara genome reveals ancient features of amniote evolution". Nature. 584 (7821): 403–409. doi:10.1038/s41586-020-2561-9. PMC   7116210 . PMID   32760000.
  223. Tang CY, Zhang X, Xu X, Sun S, Peng C, Song MH, et al. (March 2023). "Genetic mapping and molecular mechanism behind color variation in the Asian vine snake". Genome Biology. 24 (1): 46. doi: 10.1186/s13059-023-02887-z . PMC   9999515 . PMID   36895044.
  224. Gower DJ, Fleming JF, Pisani D, Vonk FJ, Kerkkamp HM, Peichl L, et al. (December 2021). "Eye-Transcriptome and Genome-Wide Sequencing for Scolecophidia: Implications for Inferring the Visual System of the Ancestral Snake". Genome Biology and Evolution. 13 (12). doi:10.1093/gbe/evab253. PMC   8643396 . PMID   34791190.
  225. Alföldi J, Di Palma F, Grabherr M, Williams C, Kong L, Mauceli E, et al. (August 2011). "The genome of the green anole lizard and a comparative analysis with birds and mammals". Nature. 477 (7366): 587–91. Bibcode:2011Natur.477..587A. doi:10.1038/nature10390. PMC   3184186 . PMID   21881562.
  226. Wood DA, Richmond JQ, Escalona M, Marimuthu MP, Nguyen O, Sacco S, et al. (November 2022). "Reference genome of the California glossy snake, Arizona elegans occidentalis: A declining California Species of Special Concern". The Journal of Heredity. 113 (6): 632–640. doi:10.1093/jhered/esac040. PMC   9923794 . PMID   35939354.
  227. Myers EA, Strickland JL, Rautsaw RM, Mason AJ, Schramer TD, Nystrom GS, et al. (July 2022). "De Novo Genome Assembly Highlights the Role of Lineage-Specific Gene Duplications in the Evolution of Venom in Fea's Viper (Azemiops feae)". Genome Biology and Evolution. 14 (7). doi:10.1093/gbe/evac082. PMC   9256536 . PMID   35670514.
  228. Card DC, Adams RH, Schield DR, Perry BW, Corbin AB, Pasquesi GI, et al. (November 2019). "Genomic Basis of Convergent Island Phenotypes in Boa Constrictors". Genome Biology and Evolution. 11 (11): 3123–3143. doi:10.1093/gbe/evz226. PMC   6836717 . PMID   31642474.
  229. Almeida DD, Viala VL, Nachtigall PG, Broe M, Gibbs HL, de Toledo Serrano SM, Moura-da-Silva AM, Ho PL, Nishiyama MY Jr, Junqueira-de-Azevedo IL (2021). "Tracking the recruitment and evolution of snake toxins using the evolutionary context provided by the Bothrops jararaca genome". Proceedings of the National Academy of Sciences of the United States of America. 118 (20): e2015159118. Bibcode:2021PNAS..11815159A. doi: 10.1073/pnas.2015159118 . PMC   8157943 . PMID   33972420.
  230. Zhang ZY, Lv Y, Wu W, Yan C, Tang CY, Peng C, Li JT (July 2022). "The structural and functional divergence of a neglected three-finger toxin subfamily in lethal elapids". Cell Reports. 40 (2): 111079. doi: 10.1016/j.celrep.2022.111079 . PMID   35830808. S2CID   250511576.
  231. Xu J, Guo S, Yin X, Li M, Su H, Liao X, et al. (May 2023). "Genomic, transcriptomic, and epigenomic analysis of a medicinal snake, Bungarus multicinctus, to provides insights into the origin of Elapidae neurotoxins". Acta Pharmaceutica Sinica B. 13 (5): 2234–2249. doi:10.1016/j.apsb.2022.11.015. PMC   10213816 . PMID   37250171.
  232. Liu B, Cui L, Deng Z, Ma Y, Yang D, Gong Y, et al. (2023-06-29). "The genome assembly and annotation of the many-banded krait, Bungarus multicinctus". Gigabyte. 2023: gigabyte82. doi:10.46471/gigabyte.82. ISSN   2709-4715. PMC   10315667 . PMID   37404266. S2CID   259321695.
  233. Grismer JL, Escalona M, Miller C, Beraut E, Fairbairn CW, Marimuthu MP, et al. (November 2022). "Reference genome of the rubber boa, Charina bottae (Serpentes: Boidae)". The Journal of Heredity. 113 (6): 641–648. doi:10.1093/jhered/esac048. PMC   9709994 . PMID   36056886.
  234. Dinesh D, Mitra I, Roy S (2023-05-14). "The Complete Genome Sequence of Chyrsopelea ornata, Ornate Flying Snake". Biodiversity Genomes. doi: 10.56179/001c.75385 .
  235. Hogan MP, Whittington AC, Broe MB, Ward MJ, Gibbs HL, Rokyta DR (June 2021). "The Chemosensory Repertoire of the Eastern Diamondback Rattlesnake (Crotalus adamanteus) Reveals Complementary Genetics of Olfactory and Vomeronasal-Type Receptors". Journal of Molecular Evolution. 89 (4–5): 313–328. Bibcode:2021JMolE..89..313H. doi:10.1007/s00239-021-10007-3. PMID   33881604. S2CID   233326982.
  236. Gilbert C, Meik JM, Dashevsky D, Card DC, Castoe TA, Schaack S (September 2014). "Endogenous hepadnaviruses, bornaviruses and circoviruses in snakes". Proceedings. Biological Sciences. 281 (1791): 20141122. doi:10.1098/rspb.2014.1122. PMC   4132678 . PMID   25080342.
  237. Margres MJ, Rautsaw RM, Strickland JL, Mason AJ, Schramer TD, Hofmann EP, et al. (January 2021). "The Tiger Rattlesnake genome reveals a complex genotype underlying a simple venom phenotype". Proceedings of the National Academy of Sciences of the United States of America. 118 (4). Bibcode:2021PNAS..11814634M. doi: 10.1073/pnas.2014634118 . PMC   7848695 . PMID   33468678.
  238. Pasquesi GI, Adams RH, Card DC, Schield DR, Corbin AB, Perry BW, et al. (July 2018). "Squamate reptiles challenge paradigms of genomic repeat element evolution set by birds and mammals". Nature Communications. 9 (1): 2774. Bibcode:2018NatCo...9.2774P. doi:10.1038/s41467-018-05279-1. PMC   6050309 . PMID   30018307.
  239. Saethang T, Somparn P, Payungporn S, Sriswasdi S, Yee KT, Hodge K, et al. (July 2022). "Identification of Daboia siamensis venome using integrated multi-omics data". Scientific Reports. 12 (1): 13140. Bibcode:2022NatSR..1213140S. doi:10.1038/s41598-022-17300-1. PMC   9338987 . PMID   35907887.
  240. Yin W, Wang ZJ, Li QY, Lian JM, Zhou Y, Lu BZ, et al. (October 2016). "Evolutionary trajectories of snake genes and genomes revealed by comparative analyses of five-pacer viper". Nature Communications. 7 (1): 13107. Bibcode:2016NatCo...713107Y. doi:10.1038/ncomms13107. PMC   5059746 . PMID   27708285.
  241. Song B, Cheng S, Sun Y, Zhong X, Jin J, Guan R, Murphy RW, Che J, Zhang Y, Liu X (2015). "A genome draft of the legless anguid lizard, Ophisaurus gracilis". GigaScience. 4: 17. doi: 10.1186/s13742-015-0056-7 . PMC   4391233 . PMID   25859342.
  242. Mahtani-Williams S, Fulton W, Desvars-Larrive A, Lado S, Elbers JP, Halpern B, et al. (October 2020). "Landscape Genomics of a Widely Distributed Snake, Dolichophis caspius (Gmelin, 1789) across Eastern Europe and Western Asia". Genes. 11 (10): 1218. doi: 10.3390/genes11101218 . PMC   7603136 . PMID   33080926.
  243. 1 2 3 4 Kishida T, Go Y, Tatsumoto S, Tatsumi K, Kuraku S, Toda M (2019). "Loss of olfaction in sea snakes provides new perspectives on the aquatic adaptation of amniotes". Proceedings of the Royal Society B: Biological Sciences. 286 (1910): 20191828. doi:10.1098/rspb.2019.1828. PMC   6742997 . PMID   31506057.
  244. Xiong Z, Li F, Li Q, Zhou L, Gamble T, Zheng J, et al. (October 2016). "Draft genome of the leopard gecko, Eublepharis macularius". GigaScience. 5 (1): 47. doi: 10.1186/s13742-016-0151-4 . PMC   5080775 . PMID   27784328.
  245. Shibata H, Chijiwa T, Oda-Ueda N, Nakamura H, Yamaguchi K, Hattori S, et al. (July 2018). "The habu genome reveals accelerated evolution of venom protein genes". Scientific Reports. 8 (1): 11300. Bibcode:2018NatSR...811300S. doi:10.1038/s41598-018-28749-4. PMC   6062510 . PMID   30050104.
  246. Aird SD, Arora J, Barua A, Qiu L, Terada K, Mikheyev AS (October 2017). "Population Genomic Analysis of a Pitviper Reveals Microevolutionary Forces Underlying Venom Chemistry". Genome Biology and Evolution. 9 (10): 2640–2649. doi:10.1093/gbe/evx199. PMC   5737360 . PMID   29048530.
  247. Dyson CJ, Pfennig A, Ariano-Sánchez D, Lachance J, Mendelson Iii JR, Goodisman MA (December 2022). "Genome of the endangered Guatemalan Beaded Lizard, Heloderma charlesbogerti, reveals evolutionary relationships of squamates and declines in effective population sizes". G3: Genes, Genomes, Genetics. 12 (12). doi:10.1093/g3journal/jkac276. PMC   9713440 . PMID   36226801.
  248. Leitão HG, Diedericks G, Broeckhoven C, Baeckens S, Svardal H (February 2023). "Chromosome-Level Genome Assembly of the Cape Cliff Lizard (Hemicordylus capensis)". Genome Biology and Evolution. 15 (2). doi:10.1093/gbe/evad001. PMC   9907493 . PMID   36624992.
  249. Peng C, Ren JL, Deng C, Jiang D, Wang J, Qu J, et al. (June 2020). "The Genome of Shaw's Sea Snake (Hydrophis curtus) Reveals Secondary Adaptation to Its Marine Environment". Molecular Biology and Evolution. 37 (6): 1744–1760. doi: 10.1093/molbev/msaa043 . PMID   32077944.
  250. Li A, Wang J, Sun K, Wang S, Zhao X, Wang T, et al. (October 2021). "Two Reference-Quality Sea Snake Genomes Reveal Their Divergent Evolution of Adaptive Traits and Venom Systems". Molecular Biology and Evolution. 38 (11): 4867–4883. doi:10.1093/molbev/msab212. PMC   8557462 . PMID   34320652.
  251. Khedkar G, Kambayashi C, Tabata H, Takemura I, Minei R, Ogura A, Kurabayashi A (July 2022). "The draft genome sequence of the Brahminy blindsnake Indotyphlops braminus". Scientific Data. 9 (1): 410. Bibcode:2022NatSD...9..410K. doi:10.1038/s41597-022-01530-z. PMC   9287396 . PMID   35840572.
  252. Morrill BH, Bessell IS, Pirro S (2022-12-27). "The Complete Genome Sequence of Morelia viridis, the Green Tree Python". Biodiversity Genomes. 2022: 18–19. doi:10.56179/001c.66204. PMC   9835526 . PMID   36644785.
  253. Köhler G, Khaing KP, Than NL, Baranski D, Schell T, Greve C, et al. (January 2021). "A new genus and species of mud snake from Myanmar (Reptilia, Squamata, Homalopsidae)". Zootaxa. 4915 (3): zootaxa.4915.3.1. doi:10.11646/zootaxa.4915.3.1. PMID   33756559. S2CID   232339097.
  254. Suryamohan K, Krishnankutty SP, Guillory J, Jevit M, Schröder MS, Wu M, et al. (January 2020). "The Indian cobra reference genome and transcriptome enables comprehensive identification of venom toxins". Nature Genetics. 52 (1): 106–117. doi:10.1038/s41588-019-0559-8. PMC   8075977 . PMID   31907489.
  255. 1 2 Galbraith JD, Ludington AJ, Sanders KL, Amos TG, Thomson VA, Enosi Tuipulotu D, et al. (January 2022). "Horizontal Transposon Transfer and Its Implications for the Ancestral Ecology of Hydrophiine Snakes". Genes. 13 (2): 217. doi: 10.3390/genes13020217 . PMC   8872380 . PMID   35205262.
  256. Vonk FJ, Casewell NR, Henkel CV, Heimberg AM, Jansen HJ, McCleary RJ, et al. (December 2013). "The king cobra genome reveals dynamic gene evolution and adaptation in the snake venom system". Proceedings of the National Academy of Sciences of the United States of America. 110 (51): 20651–6. Bibcode:2013PNAS..11020651V. doi: 10.1073/pnas.1314702110 . PMC   3870661 . PMID   24297900.
  257. Ullate-Agote A, Milinkovitch MC, Tzika AC (2015-07-02). "The genome sequence of the corn snake (Pantherophis guttatus), a valuable resource for EvoDevo studies in squamates". The International Journal of Developmental Biology. 58 (10–12): 881–8. doi: 10.1387/ijdb.150060at . PMID   26154328.
  258. Ullate-Agote, Asier; Tzika, Athanasia C. (2021). "Characterization of the Leucistic Texas Rat Snake Pantherophis obsoletus". Frontiers in Ecology and Evolution. 9. doi: 10.3389/fevo.2021.583136 . ISSN   2296-701X.
  259. Georges A, Li Q, Lian J, O'Meally D, Deakin J, Wang Z, et al. (2015-12-01). "High-coverage sequencing and annotated assembly of the genome of the Australian dragon lizard Pogona vitticeps". GigaScience. 4 (1): 45. doi: 10.1186/s13742-015-0085-2 . PMC   4585809 . PMID   26421146.
  260. Farleigh K, Vladimirova SA, Blair C, Bracken JT, Koochekian N, Schield DR, et al. (September 2021). "The effects of climate and demographic history in shaping genomic variation across populations of the Desert Horned Lizard (Phrynosoma platyrhinos)". Molecular Ecology. 30 (18): 4481–4496. Bibcode:2021MolEc..30.4481F. doi:10.1111/mec.16070. PMID   34245067. S2CID   235786119.
  261. Finger N, Farleigh K, Bracken JT, Leaché AD, François O, Yang Z, et al. (January 2022). "Genome-Scale Data Reveal Deep Lineage Divergence and a Complex Demographic History in the Texas Horned Lizard (Phrynosoma cornutum) throughout the Southwestern and Central United States". Genome Biology and Evolution. 14 (1). doi:10.1093/gbe/evab260. PMC   8735750 . PMID   34849831.
  262. Castoe TA, de Koning AP, Hall KT, Card DC, Schield DR, Fujita MK, et al. (December 2013). "The Burmese python genome reveals the molecular basis for extreme adaptation in snakes". Proceedings of the National Academy of Sciences of the United States of America. 110 (51): 20645–50. Bibcode:2013PNAS..11020645C. doi: 10.1073/pnas.1314475110 . PMC   3870669 . PMID   24297902.
  263. Roscito JG, Sameith K, Pippel M, Francoijs KJ, Winkler S, Dahl A, et al. (December 2018). "The genome of the tegu lizard Salvator merianae: combining Illumina, PacBio, and optical mapping data to generate a highly contiguous assembly". GigaScience. 7 (12). doi:10.1093/gigascience/giy141. PMC   6304105 . PMID   30481296.
  264. Westfall AK, Telemeco RS, Grizante MB, Waits DS, Clark AD, Simpson DY, et al. (October 2021). "A chromosome-level genome assembly for the eastern fence lizard (Sceloporus undulatus), a reptile model for physiological and evolutionary ecology". GigaScience. 10 (10). doi:10.1093/gigascience/giab066. PMC   8486681 . PMID   34599334.
  265. Gao J, Li Q, Wang Z, Zhou Y, Martelli P, Li F, et al. (July 2017). "Sequencing, de novo assembling, and annotating the genome of the endangered Chinese crocodile lizard Shinisaurus crocodilurus". GigaScience. 6 (7): 1–6. doi:10.1093/gigascience/gix041. PMC   5569961 . PMID   28595343.
  266. Morrill BH, MacKnight HP, Flagle AR, Pirro S (2022-09-06). "The Complete Genome Sequence of the Simalia boeleni, the Boelen's Python". Biodiversity Genomes. 2022. doi:10.56179/001c.38128. PMC   9681057 . PMID   36420082.
  267. Perry BW, Card DC, McGlothlin JW, Pasquesi GI, Adams RH, Schield DR, et al. (August 2018). "Molecular Adaptations for Sensing and Securing Prey and Insight into Amniote Genome Diversity from the Garter Snake Genome". Genome Biology and Evolution. 10 (8): 2110–2129. doi:10.1093/gbe/evy157. PMC   6110522 . PMID   30060036.
  268. Li JT, Gao YD, Xie L, Deng C, Shi P, Guan ML, et al. (August 2018). "Comparative genomic investigation of high-elevation adaptation in ectothermic snakes". Proceedings of the National Academy of Sciences of the United States of America. 115 (33): 8406–8411. Bibcode:2018PNAS..115.8406L. doi: 10.1073/pnas.1805348115 . PMC   6099860 . PMID   30065117.
  269. Yurchenko AA, Recknagel H, Elmer KR (November 2020). "Chromosome-Level Assembly of the Common Lizard (Zootoca vivipara) Genome". Genome Biology and Evolution. 12 (11): 1953–1960. doi:10.1093/gbe/evaa161. PMC   7643610 . PMID   32835354.
  270. 1 2 Y. Zhou et al. Platypus and echidna genomes reveal mammalian biology and evolution. Nature, published online January 6, 2021; doi: 10.1038/s41586-020-03039-0
  271. Mikkelsen TS, Wakefield MJ, Aken B, Amemiya CT, Chang JL, Duke S, et al. (May 2007). "Genome of the marsupial Monodelphis domestica reveals innovation in non-coding sequences". Nature. 447 (7141): 167–77. Bibcode:2007Natur.447..167M. doi: 10.1038/nature05805 . PMID   17495919. S2CID   4337232.
  272. Brandies PA, Tang S, Johnson RS, Hogg CJ, Belov K (2020). "The first Antechinus reference genome provides a resource for investigating the genetic basis of semelparity and age-related neuropathologies". Gigabyte. 2020: 1–22. doi:10.46471/gigabyte.7. PMC   9631953 . PMID   36824596. S2CID   228895349 . Retrieved 2020-11-17.
  273. Miller W, Hayes VM, Ratan A, Petersen DC, Wittekindt NE, Miller J, et al. (July 2011). "Genetic diversity and population structure of the endangered marsupial Sarcophilus harrisii (Tasmanian devil)". Proceedings of the National Academy of Sciences of the United States of America. 108 (30): 12348–12353. Bibcode:2011PNAS..10812348M. doi: 10.1073/pnas.1102838108 . PMC   3145710 . PMID   21709235.
  274. "Fat-tailed dunnart genome". Oz Mammals Genomics.
  275. "Northern quoll genome". Oz Mammals Genomics.
  276. "Numbat genome". Oz Mammals Genomics.
  277. Feigin CY, Newton AH, Doronina L, Schmitz J, Hipsley CA, Mitchell KJ, et al. (January 2018). "Genome of the Tasmanian tiger provides insights into the evolution and demography of an extinct marsupial carnivore". Nature Ecology & Evolution. 2 (1): 182–192. doi: 10.1038/s41559-017-0417-y . PMID   29230027. S2CID   4630578.
  278. "Eastern barred bandicoot genome".
  279. "Greater bilby genome". Oz Mammals Genomics.
  280. "Marsupial mole genome". Oz Mammals Genomics.
  281. Renfree MB, Papenfuss AT, Deakin JE, Lindsay J, Heider T, Belov K, et al. (August 2011). "Genome sequence of an Australian kangaroo, Macropus eugenii, provides insight into the evolution of mammalian reproduction and development". Genome Biology. 12 (8): R81. doi: 10.1186/gb-2011-12-8-r81 . PMC   3277949 . PMID   21854559.
  282. "Brush-tailed rock-wallaby genome". Oz Mammals Genomics.
  283. "Eastern bettong genome". Oz Mammals Genomics.
  284. Peel E, Silver L, Brandies P, Hogg CJ, Belov K (2021-12-10). "A reference genome for the critically endangered woylie, Bettongia penicillata ogilbyi". Gigabyte. 2021: 1–15. doi:10.46471/gigabyte.35. PMC   9650285 . PMID   36824341. S2CID   245097228.
  285. "Leadbeater's possum genome". Oz Mammals Genomics.
  286. "Mountain pygmy-possum genome". Oz Mammals Genomics.
  287. "Bare-nosed wombat genome". Oz Mammals Genomics.
  288. Davey, M. (10 April 2013). "Australians crack the code of koala's genetic blueprint". The Age . Retrieved 25 June 2013.
  289. Dastjerdi A, Robert C, Watson M (2014). "Low coverage sequencing of two Asian elephant (Elephas maximus) genomes". GigaScience. 3: 12. doi: 10.1186/2047-217X-3-12 . PMC   4106201 . PMID   25053995.
  290. "Loxodonta africana". UCSC browser entry.
  291. Palkopoulou E, Lipson M, Mallick S, Nielsen S, Rohland N, Baleka S, et al. (March 2018). "A comprehensive genomic history of extinct and living elephants". Proceedings of the National Academy of Sciences of the United States of America. 115 (11): E2566–E2574. Bibcode:2018PNAS..115E2566P. doi: 10.1073/pnas.1720554115 . PMC   5856550 . PMID   29483247.
  292. 1 2 3 Foote AD, Liu Y, Thomas GW, Vinař T, Alföldi J, Deng J, et al. (March 2015). "Convergent evolution of the genomes of marine mammals". Nature Genetics. 47 (3): 272–5. doi:10.1038/ng.3198. PMC   4644735 . PMID   25621460.
  293. 1 2 "Mammalian Genome Project". MIT. Archived from the original on 2009-01-06. Retrieved 2012-05-23.
  294. "Oryctolagus cuniculus". e!Ensembl.
  295. "allithrix jacchus". e!Ensembl.
  296. Worley KC, Warren WC, Rogers J, Locke D, Muzny DM, Mardis ER, et al. (Marmoset Genome Sequencing and Analysis Consortium) (August 2014). "The common marmoset genome provides insight into primate biology and evolution". Nature Genetics. 46 (8): 850–7. doi:10.1038/ng.3042. PMC   4138798 . PMID   25038751.
  297. Gibbs RA, Rogers J, Katze MG, Bumgarner R, Weinstock GM, Mardis ER, et al. (April 2007). "Evolutionary and biomedical insights from the rhesus macaque genome". Science. 316 (5822): 222–34. Bibcode:2007Sci...316..222.. doi:10.1126/science.1139247. PMID   17431167. S2CID   10535839.
  298. 1 2 Yan G, Zhang G, Fang X, Zhang Y, Li C, Ling F, et al. (October 2011). "Genome sequencing and comparison of two nonhuman primate animal models, the cynomolgus and Chinese rhesus macaques". Nature Biotechnology. 29 (11): 1019–23. doi: 10.1038/nbt.1992 . PMID   22002653. S2CID   9218360.
  299. Batra SS, Levy-Sakin M, Robinson J, Guillory J, Durinck S, Vilgalys TP, et al. (December 2020). "Accurate assembly of the olive baboon (Papio anubis) genome using long-read and Hi-C data". GigaScience. 9 (12). doi:10.1093/gigascience/giaa134. PMC   7719865 . PMID   33283855.
  300. Wall JD, Schlebusch SA, Alberts SC, Cox LA, Snyder-Mackler N, Nevonen KA, et al. (July 2016). "Genomewide ancestry and divergence patterns from low-coverage sequencing data reveal a complex history of admixture in wild baboons". Molecular Ecology. 25 (14): 3469–83. Bibcode:2016MolEc..25.3469W. doi:10.1111/mec.13684. PMC   5306399 . PMID   27145036.
  301. Wang L, Wu J, Liu X, Di D, Liang Y, Feng Y, et al. (August 2019). "A high-quality genome assembly for the endangered golden snub-nosed monkey (Rhinopithecus roxellana)". GigaScience. 8 (8). doi:10.1093/gigascience/giz098. PMC   6705546 . PMID   31437279.
  302. "Otolemur garnettii". e!Ensembl.
  303. Locke DP, Hillier LW, Warren WC, Worley KC, Nazareth LV, Muzny DM, et al. (January 2011). "Comparative and demographic analysis of orang-utan genomes". Nature. 469 (7331): 529–33. Bibcode:2011Natur.469..529L. doi:10.1038/nature09687. PMC   3060778 . PMID   21270892.
  304. Scally A, Dutheil JY, Hillier LW, Jordan GE, Goodhead I, Herrero J, et al. (March 2012). "Insights into hominid evolution from the gorilla genome sequence". Nature. 483 (7388): 169–75. Bibcode:2012Natur.483..169S. doi:10.1038/nature10842. PMC   3303130 . PMID   22398555.
  305. McPherson JD, Marra M, Hillier L, Waterston RH, Chinwalla A, Wallis J, et al. (February 2001). "A physical map of the human genome". Nature. 409 (6822): 934–41. Bibcode:2001Natur.409..934M. doi: 10.1038/35057157 . PMID   11237014. S2CID   186244510.
  306. Venter JC, Adams MD, Myers EW, Li PW, Mural RJ, Sutton GG, et al. (February 2001). "The sequence of the human genome". Science. 291 (5507): 1304–51. Bibcode:2001Sci...291.1304V. doi:10.1126/science.1058040. PMID   11181995. S2CID   85981305.
  307. Nurk S, Koren S, Rhie A, Rautiainen M, Bzikadze AV, Mikheenko A, et al. (April 2022). "The complete sequence of a human genome" (PDF). Science. 376 (6588): 44–53. Bibcode:2022Sci...376...44N. doi:10.1126/science.abj6987. PMC   9186530 . PMID   35357919. S2CID   247854936.
  308. Green RE, Krause J, Briggs AW, Maricic T, Stenzel U, Kircher M, et al. (May 2010). "A draft sequence of the Neandertal genome". Science. 328 (5979): 710–722. Bibcode:2010Sci...328..710G. doi:10.1126/science.1188021. PMC   5100745 . PMID   20448178.
  309. Chimpanzee Sequencing and Analysis Consortium. (September 2005). "Initial sequence of the chimpanzee genome and comparison with the human genome". Nature. 437 (7055): 69–87. Bibcode:2005Natur.437...69.. doi: 10.1038/nature04072 . PMID   16136131. S2CID   2638825.
  310. Prüfer K, Munch K, Hellmann I, Akagi K, Miller JR, Walenz B, et al. (June 2012). "The bonobo genome compared with the chimpanzee and human genomes". Nature. 486 (7404): 527–31. Bibcode:2012Natur.486..527P. doi:10.1038/nature11128. PMC   3498939 . PMID   22722832.
  311. Herrera-Alvarez S, Karlsson E, Ryder OA, Lindblad-Toh K, Crawford AJ (2018-09-23). "How to make a rodent giant: Genomic basis and tradeoffs of gigantism in the capybara, the world's largest rodent". bioRxiv   10.1101/424606 .
  312. 1 2 Duckett DJ, Sullivan J, Pirro S, Carstens BC (May 2021). "Genomic Resources for the North American Water Vole (Microtus richardsoni) and the Montane Vole (Microtus montanus)". Gigabyte. 1: 1–13. doi:10.46471/gigabyte.19. PMC   9631978 . PMID   36824326. S2CID   236550254.
  313. Duckett DJ, Sullivan J, Pirro S, Carstens BC (2021). "Genomic data for the montane vole (Microtus montanus)". GigaScience Database. doi:10.5524/100885.
  314. Duckett DJ, Sullivan J, Pirro S, Carstens BC (2021). "Genomic data for the North American water vole (Microtus richardsoni)". GigaScience Database. doi:10.5524/100886.
  315. Long AD, Baldwin-Brown J, Tao Y, Cook VJ, Balderrama-Gutierrez G, Crobett-Detig R, Mortazavi R, Barbour AG (July 2019). "The genome of Peromyscus leucopus, natural host for Lyme disease and other emerging infections". Science Advances. 5 (7): eaaw6441. Bibcode:2019SciA....5.6441L. doi:10.1126/sciadv.aaw6441. PMC   6656541 . PMID   31355335.
  316. Wilder AP, Dudchenko O, Curry C, Korody M, Turbek SP, Daly M, et al. (August 2022). "A Chromosome-Length Reference Genome for the Endangered Pacific Pocket Mouse Reveals Recent Inbreeding in a Historically Large Population". Genome Biology and Evolution. 14 (8). doi:10.1093/gbe/evac122. PMC   9348616 . PMID   35894178.
  317. Hardin A, Nevonen KA, Eckalbar WL, Carbone L, Ahituv N (Aug 2019). "Comparative genomic characterization of the multimammate mouse Mastomys coucha". Molecular Biology and Evolution. 36 (12): 2805–2812. doi:10.1093/molbev/msz188. PMC   6878952 . PMID   31424545.
  318. Waterston RH, Lindblad-Toh K, Birney E, Rogers J, Abril JF, Agarwal P, et al. (December 2002). "Initial sequencing and comparative analysis of the mouse genome". Nature. 420 (6915): 520–62. Bibcode:2002Natur.420..520W. doi: 10.1038/nature01262 . PMID   12466850.
  319. Gibbs RA, Weinstock GM, Metzker ML, Muzny DM, Sodergren EJ, Scherer S, et al. (April 2004). "Genome sequence of the Brown Norway rat yields insights into mammalian evolution". Nature. 428 (6982): 493–521. Bibcode:2004Natur.428..493G. doi: 10.1038/nature02426 . PMID   15057822. S2CID   4415600.
  320. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 Chen L, Qiu Q, Jiang Y, Wang K, Lin Z, Li Z, et al. (June 2019). "Large-scale ruminant genome sequencing provides insights into their evolution and distinct traits". Science. 364 (6446): eaav6202. Bibcode:2019Sci...364.6202C. doi: 10.1126/science.aav6202 . PMID   31221828. S2CID   195191415.
  321. Keane M, Semeiks J, Webb AE, Li YI, Quesada V, Craig T, et al. (January 2015). "Insights into the evolution of longevity from the bowhead whale genome". Cell Reports. 10 (1): 112–22. doi:10.1016/j.celrep.2014.12.008. PMC   4536333 . PMID   25565328.
  322. 1 2 3 4 5 Árnason Ú, Lammers F, Kumar V, Nilsson MA, Janke A (April 2018). "Whole-genome sequencing of the blue whale and other rorquals finds signatures for introgressive gene flow". Science Advances. 4 (4): eaap9873. Bibcode:2018SciA....4.9873A. doi:10.1126/sciadv.aap9873. PMC   5884691 . PMID   29632892.
  323. 1 2 3 Yim HS, Cho YS, Guang X, Kang SG, Jeong JY, Cha SS, et al. (January 2014). "Minke whale genome and aquatic adaptation in cetaceans". Nature Genetics. 46 (1): 88–92. doi:10.1038/ng.2835. PMC   4079537 . PMID   24270359.
  324. Wang K, Wang L, Lenstra JA, Jian J, Yang Y, Hu Q, et al. (April 2017). "The genome sequence of the wisent (Bison bonasus)". GigaScience. 6 (4): 1–5. doi:10.1093/gigascience/gix016. PMC   5530314 . PMID   28327911.
  325. Dong J, Hu Z, Wu C, Guo H, Zhou B, Lv J, et al. (July 2012). "Association analyses identify multiple new lung cancer susceptibility loci and their interactions with smoking in the Chinese population". Nature Genetics. 44 (8): 895–9. doi:10.1038/ng.2351. PMC   6628171 . PMID   22797725.
  326. Canavez FC, Luche DD, Stothard P, Leite KR, Sousa-Canavez JM, Plastow G, et al. (2012). "Genome sequence and assembly of Bos indicus". The Journal of Heredity. 103 (3): 342–8. doi:10.1093/jhered/esr153. PMID   22315242.
  327. Elsik CG, Tellam RL, Worley KC, Gibbs RA, Muzny DM, Weinstock GM, et al. (April 2009). "The genome sequence of taurine cattle: a window to ruminant biology and evolution". Science. 324 (5926): 522–8. Bibcode:2009Sci...324..522A. doi:10.1126/science.1169588. PMC   2943200 . PMID   19390049.
  328. Williams JL, Iamartino D, Pruitt KD, Sonstegard T, Smith TP, Low WY, et al. (October 2017). "Genome assembly and transcriptome resource for river buffalo, Bubalus bubalis (2n = 50)". GigaScience. 6 (10): 1–6. doi:10.1093/gigascience/gix088. PMC   5737279 . PMID   29048578.
  329. Koepfli KP, Tamazian G, Wildt D, Dobrynin P, Kim C, Frandsen PB, et al. (June 2019). "in Situ Populations". G3: Genes, Genomes, Genetics. 9 (6): 1785–1793. doi:10.1534/g3.119.400084. PMC   6553546 . PMID   31000506.
  330. Farré M, Li Q, Zhou Y, Damas J, Chemnick LG, Kim J, et al. (February 2019). "A near-chromosome-scale genome assembly of the gemsbok (Oryx gazella): an iconic antelope of the Kalahari desert". GigaScience. 8 (2). doi:10.1093/gigascience/giy162. PMC   6351727 . PMID   30649288.
  331. Yang Y, Wang Y, Zhao Y, Zhang X, Li R, Chen L, et al. (December 2017). "Draft genome of the Marco Polo Sheep (Ovis ammon polii)". GigaScience. 6 (12): 1–7. doi:10.1093/gigascience/gix106. PMC   5740985 . PMID   29112761.
  332. Cui, Peng; Ji, Rimutu; Ding, Feng; Qi, Dan; Gao, Hongwei; Meng, He; Yu, Jun; Hu, Songnian; Zhang, Heping (2007-01-01). "A complete mitochondrial genome sequence of the wild two-humped camel (Camelus bactrianus ferus): an evolutionary history of camelidae". BMC Genomics. 8: 241. doi: 10.1186/1471-2164-8-241 . ISSN   1471-2164. PMC   1939714 . PMID   17640355.
  333. Zhang C, Chen L, Zhou Y, Wang K, Chemnick LG, Ryder OA, et al. (February 2018). "Draft genome of the milu (Elaphurus davidianus)". GigaScience. 7 (2). doi:10.1093/gigascience/gix130. PMC   5824821 . PMID   29267854.
  334. Lamb S, Taylor AM, Hughes TA, McMillan BR, Larsen RT, Khan R, et al. (2021-11-22). "De novo chromosome-length assembly of the mule deer (Odocoileus hemionus) genome". Gigabyte. 2021: 1–13. doi:10.46471/gigabyte.34. PMC   9650288 . PMID   36824347. S2CID   244421049.
  335. Li Z, Lin Z, Ba H, Chen L, Yang Y, Wang K, et al. (December 2017). "Draft genome of the reindeer (Rangifer tarandus)". GigaScience. 6 (12): 1–5. doi:10.1093/gigascience/gix102. PMC   5726476 . PMID   29099922.
  336. 1 2 Lindblad-Toh K, Garber M, Zuk O, Lin MF, Parker BJ, Washietl S, et al. (October 2011). "A high-resolution map of human evolutionary constraint using 29 mammals". Nature. 478 (7370): 476–82. Bibcode:2011Natur.478..476.. doi:10.1038/nature10530. PMC   3207357 . PMID   21993624.
  337. Ming Y, Jian J, Yu X, Wang J, Liu W (May 2019). "The genome resources for conservation of Indo-Pacific humpback dolphin, Sousa chinensis". Scientific Data. 6 (1): 68. Bibcode:2019NatSD...6...68M. doi:10.1038/s41597-019-0078-6. PMC   6531461 . PMID   31118413.
  338. Farré M, Li Q, Darolti I, Zhou Y, Damas J, Proskuryakova AA, et al. (August 2019). "An integrated chromosome-scale genome assembly of the Masai giraffe (Giraffa camelopardalis tippelskirchi)". GigaScience. 8 (8). doi:10.1093/gigascience/giz090. PMC   6669057 . PMID   31367745.
  339. Ip S (12 December 2017). "Beluga whale genome sequenced for the first time in Vancouver". Vancouver Sun.
  340. Fan Z, Li W, Jin J, Cui K, Yan C, Peng C, et al. (April 2018). "The draft genome sequence of forest musk deer (Moschus berezovskii)". GigaScience. 7 (4). doi:10.1093/gigascience/giy038. PMC   5906906 . PMID   29635287.
  341. Yin D, Chen C, Lin D, Zhang J, Ying C, Liu Y, et al. (December 2022). "Gapless genome assembly of East Asian finless porpoise". Scientific Data. 9 (1): 765. Bibcode:2022NatSD...9..765Y. doi:10.1038/s41597-022-01868-4. PMC   9747978 . PMID   36513679.
  342. Fan G, Zhang Y, Liu X, Wang J, Sun Z, Sun S, et al. (July 2019). "The first chromosome-level genome for a marine mammal as a resource to study ecology and evolution" (PDF). Molecular Ecology Resources. 19 (4): 944–956. doi:10.1111/1755-0998.13003. PMID   30735609. S2CID   73451140.
  343. Groenen MA, Archibald AL, Uenishi H, Tuggle CK, Takeuchi Y, Rothschild MF, et al. (November 2012). "Analyses of pig genomes provide insight into porcine demography and evolution". Nature. 491 (7424): 393–8. Bibcode:2012Natur.491..393G. doi:10.1038/nature11622. PMC   3566564 . PMID   23151582.
  344. Dobrynin P, Liu S, Tamazian G, Xiong Z, Yurchenko AA, Krasheninnikova K, et al. (December 2015). "Genomic legacy of the African cheetah, Acinonyx jubatus". Genome Biology. 16 (1): 277. doi: 10.1186/s13059-015-0837-4 . PMC   4676127 . PMID   26653294.
  345. Pontius JU, Mullikin JC, Smith DR, Lindblad-Toh K, Gnerre S, Clamp M, et al. (November 2007). "Initial sequence and comparative analysis of the cat genome". Genome Research. 17 (11): 1675–89. doi:10.1101/gr.6380007. PMC   2045150 . PMID   17975172.
  346. 1 2 3 4 Cho YS, Hu L, Hou H, Lee H, Xu J, Kwon S, et al. (2013). "The tiger genome and comparative analysis with lion and snow leopard genomes". Nature Communications. 4: 2433. Bibcode:2013NatCo...4.2433C. doi:10.1038/ncomms3433. PMC   3778509 . PMID   24045858.
  347. 1 2 Kim S, Cho YS, Kim HM, Chung O, Kim H, Jho S, et al. (October 2016). "Comparison of carnivore, omnivore, and herbivore mammalian genomes with a new leopard assembly". Genome Biology. 17 (1): 211. doi: 10.1186/s13059-016-1071-4 . PMC   5090899 . PMID   27802837.
  348. Lindblad-Toh K, Wade CM, Mikkelsen TS, Karlsson EK, Jaffe DB, Kamal M, et al. (December 2005). "Genome sequence, comparative analysis and haplotype structure of the domestic dog". Nature. 438 (7069): 803–19. Bibcode:2005Natur.438..803L. doi: 10.1038/nature04338 . PMID   16341006. S2CID   4338513.
  349. Gopalakrishnan S, Samaniego Castruita JA, Sinding MS, Kuderna LF, Räikkönen J, Petersen B, et al. (June 2017). "The wolf reference genome sequence (Canis lupus lupus) and its implications for Canis spp. population genomics". BMC Genomics. 18 (1): 495. doi: 10.1186/s12864-017-3883-3 . PMC   5492679 . PMID   28662691.
  350. Armstrong EE, Taylor RW, Prost S, Blinston P, van der Meer E, Madzikanda H, et al. (February 2019). "Cost-effective assembly of the African wild dog (Lycaon pictus) genome using linked reads". GigaScience. 8 (2). doi:10.1093/gigascience/giy124. PMC   6350039 . PMID   30346553.
  351. Li R, Fan W, Tian G, Zhu H, He L, Cai J, et al. (January 2010). "The sequence and de novo assembly of the giant panda genome". Nature. 463 (7279): 311–7. Bibcode:2010Natur.463..311L. doi:10.1038/nature08696. PMC   3951497 . PMID   20010809.
  352. Taylor GA, Kirk H, Coombe L, Jackman SD, Chu J, Tse K, et al. (November 2018). "The Genome of the North American Brown Bear or Grizzly: Ursus arctos ssp. horribilis". Genes. 9 (12): 598. doi: 10.3390/genes9120598 . PMC   6315469 . PMID   30513700.
  353. Srivastava A, Kumar Sarsani V, Fiddes I, Sheehan SM, Seger RL, Barter ME, et al. (February 2019). "Genome assembly and gene expression in the American black bear provides new insights into the renal response to hibernation". DNA Research. 26 (1): 37–44. doi:10.1093/dnares/dsy036. PMC   6379037 . PMID   30395234.
  354. Liu S, Lorenzen ED, Fumagalli M, Li B, Harris K, Xiong Z, et al. (May 2014). "Population genomics reveal recent speciation and rapid evolutionary adaptation in polar bears". Cell. 157 (4): 785–94. doi:10.1016/j.cell.2014.03.054. PMC   4089990 . PMID   24813606.
  355. Li B, Zhang G, Willersleve E, Wang J, Wang J (2011). "Genomic data from the polar bear (Ursus maritimus)". GigaScience Database. doi:10.5524/100008 . Retrieved 2019-06-21.
  356. Jones SJ, Haulena M, Taylor GA, Chan S, Bilobram S, Warren RL, et al. (December 2017). "The Genome of the Northern Sea Otter (Enhydra lutris kenyoni)". Genes. 8 (12): 379. doi: 10.3390/genes8120379 . PMC   5748697 . PMID   29232880.
  357. Colella JP, Lan T, Schuster SC, Talbot SL, Cook JA, Lindqvist C (2018-05-31). "Mustela erminea finds that pulsed hybridization impacts evolution at highlatitudes". Communications Biology. 1 (1): 51. doi:10.1038/s42003-018-0058-y. PMC   6123727 . PMID   30271934.
  358. Peng X, Alföldi J, Gori K, Eisfeld AJ, Tyler SR, Tisoncik-Go J, et al. (December 2014). "The draft genome sequence of the ferret (Mustela putorius furo) facilitates study of human respiratory disease". Nature Biotechnology. 32 (12): 1250–5. doi:10.1038/nbt.3079. PMC   4262547 . PMID   25402615.
  359. Beichman AC, Koepfli KP, Li G, Murphy W, Dobrynin P, Kilver S, et al. (June 2019). "Aquatic adaptation and depleted diversity: a deep dive into the genomes of the sea otter and giant otter". Molecular Biology and Evolution. 36 (12): 2631–2655. doi:10.1093/molbev/msz101. PMC   7967881 . PMID   31212313.
  360. 1 2 3 4 Parker J, Tsagkogeorga G, Cotton JA, Liu Y, Provero P, Stupka E, Rossiter SJ (October 2013). "Genome-wide signatures of convergent evolution in echolocating mammals". Nature. 502 (7470): 228–31. Bibcode:2013Natur.502..228P. doi:10.1038/nature12511. PMC   3836225 . PMID   24005325.
  361. "Little Brown Bat Genome Project". Broad Institute. 23 September 2008.
  362. 1 2 3 4 5 Gutiérrez-Guerrero YT, Ibarra-Laclette E, Martínez Del Río C, Barrera-Redondo J, Rebollar EA, Ortega J, et al. (June 2020). "Genomic consequences of dietary diversification and parallel evolution due to nectarivory in leaf-nosed bats". GigaScience. 9 (6). doi:10.1093/gigascience/giaa059. PMC   7276932 . PMID   32510151.
  363. Grigorev K, Kliver S, Dobrynin P, Komissarov A, Wolfsberger W, Krasheninnikova K, et al. (June 2018). "Innovative assembly strategy contributes to understanding the evolution and conservation genetics of the endangered Solenodon paradoxus from the island of Hispaniola". GigaScience. 7 (6). doi:10.1093/gigascience/giy025. PMC   6009670 . PMID   29718205.
  364. Wade CM, Giulotto E, Sigurdsson S, Zoli M, Gnerre S, Imsland F, et al. (November 2009). "Genome sequence, comparative analysis, and population genetics of the domestic horse". Science. 326 (5954): 865–7. Bibcode:2009Sci...326..865W. doi:10.1126/science.1178158. PMC   3785132 . PMID   19892987.
  365. Kalbfleisch TS, Rice ES, DePriest MS, Walenz BP, Hestand MS, Vermeesch JR, et al. (2018-11-16). "Improved reference genome for the domestic horse increases assembly contiguity and composition". Communications Biology. 1 (1): 197. doi:10.1038/s42003-018-0199-z. PMC   6240028 . PMID   30456315.
  366. 1 2 Harrison MC, Jongepier E, Robertson HM, Arning N, Bitard-Feildel T, Chao H, et al. (March 2018). "Hemimetabolous genomes reveal molecular basis of termite eusociality". Nature Ecology & Evolution. 2 (3): 557–566. Bibcode:2018NatEE...2..557H. doi:10.1038/s41559-017-0459-1. PMC   6482461 . PMID   29403074.
  367. Li S, Zhu S, Jia Q, Yuan D, Ren C, Li K, et al. (March 2018). "The genomic and functional landscapes of developmental plasticity in the American cockroach". Nature Communications. 9 (1): 1008. Bibcode:2018NatCo...9.1008L. doi: 10.1038/s41467-018-03281-1 . PMC   5861062 . PMID   29559629.
  368. Terrapon N, Li C, Robertson HM, Ji L, Meng X, Booth W, et al. (May 2014). "Molecular traces of alternative social organization in a termite genome". Nature Communications. 5: 3636. Bibcode:2014NatCo...5.3636T. doi: 10.1038/ncomms4636 . hdl: 11858/00-001M-0000-0017-9F85-9 . PMID   24845553. S2CID   12087886.
  369. Poulsen M, Hu H, Li C, Chen Z, Xu L, Otani S, et al. (October 2014). "Complementary symbiont contributions to plant decomposition in a fungus-farming termite". Proceedings of the National Academy of Sciences of the United States of America. 111 (40): 14500–5. Bibcode:2014PNAS..11114500P. doi: 10.1073/pnas.1319718111 . PMC   4209977 . PMID   25246537.
  370. Keeling CI, Yuen MM, Liao NY, Docking TR, Chan SK, Taylor GA, et al. (March 2013). "Draft genome of the mountain pine beetle, Dendroctonus ponderosae Hopkins, a major forest pest". Genome Biology. 14 (3): R27. doi: 10.1186/gb-2013-14-3-r27 . PMC   4053930 . PMID   23537049.
  371. 1 2 Fallon TR, Lower SE, Chang CH, Bessho-Uehara M, Martin GJ, Bewick AJ, et al. (October 2018). Tautz R, Waterhouse D (eds.). "Firefly genomes illuminate parallel origins of bioluminescence in beetles". eLife. 7: e36495. doi: 10.7554/eLife.36495 . PMC   6191289 . PMID   30324905.
  372. Wang K, Li P, Gao Y, Liu C, Wang Q, Yin J, et al. (April 2019). "De novo genome assembly of the white-spotted flower chafer (Protaetia brevitarsis)". GigaScience. 8 (4). doi:10.1093/gigascience/giz019. PMC   6449472 . PMID   30949689.
  373. Richards S, Gibbs RA, Weinstock GM, Brown SJ, Denell R, Beeman RW, et al. (April 2008). "The genome of the model beetle and pest Tribolium castaneum" (PDF). Nature. 452 (7190): 949–55. Bibcode:2008Natur.452..949R. doi:10.1038/nature06784. PMID   18362917. S2CID   4402128.
  374. Wang Q, Liu L, Zhang S, Wu H, Huang J (June 2022). "A chromosome-level genome assembly and intestinal transcriptome of Trypoxylus dichotomus (Coleoptera: Scarabaeidae) to understand its lignocellulose digestion ability". GigaScience. 11. doi:10.1093/gigascience/giac059. PMC   9239855 . PMID   35764601.
  375. 1 2 Schneider C, Woehle C, Greve C, D'Haese CA, Wolf M, Hiller M, et al. (May 2021). "Two high-quality de novo genomes from single ethanol-preserved specimens of tiny metazoans (Collembola)". GigaScience. 10 (5). doi:10.1093/gigascience/giab035. PMC   8138834 . PMID   34018554.
  376. Schneider C, Woehle C, Greve C, D'Haese CA, Wolf M, Hiller M, et al. (2021). "High-quality de novo genome from an ethanol-preserved specimen of Desoria tigrina". GigaScience Database. doi:10.5524/100897.
  377. Schneider C, Woehle C, Greve C, D'Haese CA, Wolf M, Hiller M, et al. (2021). "High-quality de novo genome from an ethanol-preserved specimen of Sminthurides aquaticus". GigaScience Database. doi:10.5524/100871.
  378. Meng F, Liu Z, Han H, Finkelbergs D, Jiang Y, Zhu M, et al. (March 2020). "Chromosome-level genome assembly of Aldrichina grahami, a forensically important blowfly". GigaScience. 9 (3). doi:10.1093/gigascience/giaa020. PMC   7081965 . PMID   32191812.
  379. Drukewitz SH, Bokelmann L, Undheim EA, von Reumont BM (July 2019). "Toxins from scratch? Diverse, multimodal gene origins in the predatory robber fly Dasypogon diadema indicate a dynamic venom evolution in dipteran insects". GigaScience. 8 (7). doi:10.1093/gigascience/giz081. PMC   6615979 . PMID   31289835.
  380. Kim S, Oh M, Jung W, Park J, Choi HG, Shin SC (March 2017). "Genome sequencing of the winged midge, Parochlus steinenii, from the Antarctic Peninsula". GigaScience. 6 (3): 1–8. doi:10.1093/gigascience/giw009. PMC   5467013 . PMID   28327954.
  381. Dikow RB, Frandsen PB, Turcatel M, Dikow T (2017-01-31). "Proctacanthus coquilletti (Insecta: Diptera: Asilidae) and 16 representative transcriptomes". PeerJ. 5: e2951. doi: 10.7717/peerj.2951 . PMC   5289110 . PMID   28168115.
  382. Nene V, Wortman JR, Lawson D, Haas B, Kodira C, Tu ZJ, et al. (June 2007). "Genome sequence of Aedes aegypti, a major arbovirus vector". Science. 316 (5832): 1718–23. Bibcode:2007Sci...316.1718N. doi:10.1126/science.1138878. PMC   2868357 . PMID   17510324.
  383. Chen XG, Jiang X, Gu J, Xu M, Wu Y, Deng Y, et al. (November 2015). "Genome sequence of the Asian Tiger mosquito, Aedes albopictus, reveals insights into its biology, genetics, and evolution". Proceedings of the National Academy of Sciences of the United States of America. 112 (44): E5907-15. Bibcode:2015PNAS..112E5907C. doi: 10.1073/pnas.1516410112 . PMC   4640774 . PMID   26483478.
  384. Holt RA, Subramanian GM, Halpern A, Sutton GG, Charlab R, Nusskern DR, et al. (October 2002). "The genome sequence of the malaria mosquito Anopheles gambiae". Science. 298 (5591): 129–49. Bibcode:2002Sci...298..129H. doi:10.1126/science.1076181. PMID   12364791. S2CID   4512225.H
  385. 1 2 Lawniczak MK, Emrich SJ, Holloway AK, Regier AP, Olson M, White B, et al. (October 2010). "Widespread divergence between incipient Anopheles gambiae species revealed by whole genome sequences". Science. 330 (6003): 512–4. Bibcode:2010Sci...330..512L. doi:10.1126/science.1195755. PMC   3674514 . PMID   20966253.
  386. Zhou D, Zhang D, Ding G, Shi L, Hou Q, Ye Y, et al. (January 2014). "Genome sequence of Anopheles sinensis provides insight into genetics basis of mosquito competence for malaria parasites". BMC Genomics. 15 (1): 42. doi: 10.1186/1471-2164-15-42 . PMC   3901762 . PMID   24438588.
  387. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 Neafsey DE, Waterhouse RM, Abai MR, Aganezov SS, Alekseyev MA, Allen JE, et al. (January 2015). "Mosquito genomics. Highly evolvable malaria vectors: the genomes of 16 Anopheles mosquitoes". Science. 347 (6217): 1258522. doi:10.1126/science.1258522. PMC   4380271 . PMID   25554792.
  388. Ghurye J, Koren S, Small ST, Redmond S, Howell P, Phillippy AM, Besansky NJ (June 2019). "A chromosome-scale assembly of the major African malaria vector Anopheles funestus". GigaScience. 8 (6). doi:10.1093/gigascience/giz063. PMC   6545970 . PMID   31157884.
  389. Arensburger P, Megy K, Waterhouse RM, Abrudan J, Amedeo P, Antelo B, et al. (October 2010). "Sequencing of Culex quinquefasciatus establishes a platform for mosquito comparative genomics". Science. 330 (6000): 86–8. Bibcode:2010Sci...330...86A. doi:10.1126/science.1191864. PMC   3740384 . PMID   20929810.
  390. Zhou Q, Zhu HM, Huang QF, Zhao L, Zhang GJ, Roy SW, et al. (March 2012). "Deciphering neo-sex and B chromosome evolution by the draft genome of Drosophila albomicans". BMC Genomics. 13: 109. doi: 10.1186/1471-2164-13-109 . PMC   3353239 . PMID   22439699.
  391. 1 2 3 4 5 6 7 8 9 10 Clark AG, Eisen MB, Smith DR, Bergman CM, Oliver B, Markow TA, et al. (November 2007). "Evolution of genes and genomes on the Drosophila phylogeny". Nature. 450 (7167): 203–18. Bibcode:2007Natur.450..203C. doi: 10.1038/nature06341 . PMID   17994087. S2CID   2416812.
  392. 1 2 3 4 5 6 7 8 "Drosophila modENCODE Project BCM-HGSC". Baylor College of Medicine, Human Genome Sequencing Center.
  393. Adams MD, Celniker SE, Holt RA, Evans CA, Gocayne JD, Amanatides PG, et al. (March 2000). "The genome sequence of Drosophila melanogaster". Science. 287 (5461): 2185–95. Bibcode:2000Sci...287.2185.. doi:10.1126/science.287.5461.2185. PMID   10731132.
  394. Hamilton PT, Leong JS, Koop BF, Perlman SJ (March 2014). "Transcriptional responses in a Drosophila defensive symbiosis". Molecular Ecology. 23 (6): 1558–70. Bibcode:2014MolEc..23.1558H. doi:10.1111/mec.12603. PMID   24274471. S2CID   2964885.
  395. Richards S, Liu Y, Bettencourt BR, Hradecky P, Letovsky S, Nielsen R, et al. (January 2005). "Comparative genome sequencing of Drosophila pseudoobscura: chromosomal, gene, and cis-element evolution". Genome Research. 15 (1): 1–18. doi:10.1101/gr.3059305. PMC   540289 . PMID   15632085.
  396. "The Drosophila santomea genome - release 1.0". Andolfatto Lab. Princeton University. Archived from the original on 2018-10-22. Retrieved 2012-05-23.
  397. 1 2 Jiménez-Guri E, Huerta-Cepas J, Cozzuto L, Wotton KR, Kang H, Himmelbauer H, et al. (February 2013). "Comparative transcriptomics of early dipteran development". BMC Genomics. 14: 123. doi: 10.1186/1471-2164-14-123 . PMC   3616871 . PMID   23432914.
  398. Martinson EO, Peyton J, Kelkar YD, Jennings EC, Benoit JB, Werren JH, Denlinger DL (May 2019). "Sarcophaga bullata". G3: Genes, Genomes, Genetics. 9 (5): 1313–1320. doi:10.1534/g3.119.400148. PMC   6505164 . PMID   30926723.
  399. Lemke S, Antonopoulos DA, Meyer F, Domanus MH, Schmidt-Ott U (May 2011). "BMP signaling components in embryonic transcriptomes of the hover fly Episyrphus balteatus (Syrphidae)". BMC Genomics. 12: 278. doi: 10.1186/1471-2164-12-278 . PMC   3224130 . PMID   21627820.
  400. International Aphid Genomics Consortium (February 2010). "Genome sequence of the pea aphid Acyrthosiphon pisum". PLOS Biology. 8 (2): e1000313. doi: 10.1371/journal.pbio.1000313 . PMC   2826372 . PMID   20186266.
  401. Yang P, Yu S, Hao J, Liu W, Zhao Z, Zhu Z, et al. (September 2019). "Genome sequence of the Chinese white wax scale insect Ericerus pela: the first draft genome for the Coccidae family of scale insects". GigaScience. 8 (9). doi:10.1093/gigascience/giz113. PMC   6743827 . PMID   31518402.
  402. Zhu J, Jiang F, Wang X, Yang P, Bao Y, Zhao W, et al. (December 2017). "Genome sequence of the small brown planthopper, Laodelphax striatellus". GigaScience. 6 (12): 1–12. doi:10.1093/gigascience/gix109. PMC   5740986 . PMID   29136191.
  403. Kingan SB, Urban J, Lambert CC, Baybayan P, Childers AK, Coates B, et al. (October 2019). "A high-quality genome assembly from a single, field-collected spotted lanternfly (Lycorma delicatula) using the PacBio Sequel II system". GigaScience. 8 (10). doi:10.1093/gigascience/giz122. PMC   6791401 . PMID   31609423.
  404. Mesquita RD, Vionette-Amaral RJ, Lowenberger C, Rivera-Pomar R, Monteiro FA, Minx P, et al. (December 2015). "Genome of Rhodnius prolixus, an insect vector of Chagas disease, reveals unique adaptations to hematophagy and parasite infection". Proceedings of the National Academy of Sciences of the United States of America. 112 (48): 14936–41. Bibcode:2015PNAS..11214936M. doi: 10.1073/pnas.1506226112 . PMC   4672799 . PMID   26627243.
  405. Chen W, Shakir S, Bigham M, Richter A, Fei Z, Jander G (April 2019). "Genome sequence of the corn leaf aphid (Rhopalosiphum maidis Fitch)". GigaScience. 8 (4). doi:10.1093/gigascience/giz033. PMC   6451198 . PMID   30953568.
  406. Chen J, Fan J, Zhang Y, Li Q, Zhang S, Yin H, et al. (2019-08-01). "A chromosome-level draft genome of the grain aphid Sitobion miscanthi". GigaScience. 8 (8). doi:10.1093/gigascience/giz101. PMC   6701489 . PMID   31430367.
  407. Liu Q, Guo Y, Zhang Y, Hu W, Li Y, Zhu D, et al. (August 2019). "A chromosomal-level genome assembly for the insect vector for Chagas disease, Triatoma rubrofasciata". GigaScience. 8 (8). doi:10.1093/gigascience/giz089. PMC   6699579 . PMID   31425588.
  408. Nygaard S, Zhang G, Schiøtt M, Li C, Wurm Y, Hu H, et al. (August 2011). "The genome of the leaf-cutting ant Acromyrmex echinatior suggests key adaptations to advanced social life and fungus farming". Genome Research. 21 (8): 1339–48. doi:10.1101/gr.121392.111. PMC   3149500 . PMID   21719571.
  409. Honeybee Genome Sequencing Consortium (October 2006). "Insights into social insects from the genome of the honeybee Apis mellifera". Nature. 443 (7114): 931–49. Bibcode:2006Natur.443..931T. doi:10.1038/nature05260. PMC   2048586 . PMID   17073008.
  410. Suen G, Teiling C, Li L, Holt C, Abouheif E, Bornberg-Bauer E, et al. (February 2011). Copenhaver G (ed.). "The genome sequence of the leaf-cutter ant Atta cephalotes reveals insights into its obligate symbiotic lifestyle". PLOS Genetics. 7 (2): e1002007. doi: 10.1371/journal.pgen.1002007 . PMC   3037820 . PMID   21347285.
  411. 1 2 Bonasio R, Zhang G, Ye C, Mutti NS, Fang X, Qin N, et al. (August 2010). "Genomic comparison of the ants Camponotus floridanus and Harpegnathos saltator". Science. 329 (5995): 1068–71. Bibcode:2010Sci...329.1068B. doi:10.1126/science.1192428. PMC   3772619 . PMID   20798317.
  412. Oxley PR, Ji L, Fetter-Pruneda I, McKenzie SK, Li C, Hu H, Zhang G, Kronauer DJ (February 2014). "The genome of the clonal raider ant Cerapachys biroi". Current Biology. 24 (4): 451–8. Bibcode:2014CBio...24..451O. doi:10.1016/j.cub.2014.01.018. PMC   3961065 . PMID   24508170.
  413. Brand P, Saleh N, Pan H, Li C, Kapheim KM, Ramírez SR (September 2017). "The Nuclear and Mitochondrial Genomes of the Facultatively Eusocial Orchid Bee Euglossa dilemma". G3: Genes, Genomes, Genetics. 7 (9): 2891–2898. doi:10.1534/g3.117.043687. PMC   5592917 . PMID   28701376.
  414. Konorov EA, Nikitin MA, Mikhailov KV, Lysenkov SN, Belenky M, Chang PL, Nuzhdin SV, Scobeyeva VA (February 2017). "Genomic exaptation enables Lasius niger adaptation to urban environments". BMC Evolutionary Biology. 17 (Suppl 1): 39. Bibcode:2017BMCEE..17S..39K. doi: 10.1186/s12862-016-0867-x . PMC   5333191 . PMID   28251870.
  415. Smith CD, Zimin A, Holt C, Abouheif E, Benton R, Cash E, et al. (April 2011). "Draft genome of the globally widespread and invasive Argentine ant (Linepithema humile)". Proceedings of the National Academy of Sciences of the United States of America. 108 (14): 5673–8. Bibcode:2011PNAS..108.5673S. doi: 10.1073/pnas.1008617108 . PMC   3078359 . PMID   21282631.
  416. 1 2 3 Werren JH, Richards S, Desjardins CA, Niehuis O, Gadau J, Colbourne JK, et al. (January 2010). "Functional and evolutionary insights from the genomes of three parasitoid Nasonia species". Science. 327 (5963): 343–8. Bibcode:2010Sci...327..343.. doi:10.1126/science.1178028. PMC   2849982 . PMID   20075255.
  417. Kapheim KM, Pan H, Li C, Blatti C, Harpur BA, Ioannidis P, et al. (March 2019). "Nomia melanderi)". G3: Genes, Genomes, Genetics. 9 (3): 625–634. doi:10.1534/g3.118.200865. PMC   6404593 . PMID   30642875.
  418. Smith CR, Smith CD, Robertson HM, Helmkampf M, Zimin A, Yandell M, et al. (April 2011). "Draft genome of the red harvester ant Pogonomyrmex barbatus". Proceedings of the National Academy of Sciences of the United States of America. 108 (14): 5667–72. Bibcode:2011PNAS..108.5667S. doi: 10.1073/pnas.1007901108 . PMC   3078412 . PMID   21282651.
  419. Wurm Y, Wang J, Riba-Grognuz O, Corona M, Nygaard S, Hunt BG, et al. (April 2011). "The genome of the fire ant Solenopsis invicta". Proceedings of the National Academy of Sciences of the United States of America. 108 (14): 5679–84. Bibcode:2011PNAS..108.5679W. doi: 10.1073/pnas.1009690108 . PMC   3078418 . PMID   21282665.
  420. Boyes, Douglas; Crowley, Liam M.; Holland, Peter W.H. (2021). "The genome sequence of the spectacle, Abrostola tripartita Hufnagel, 1766". Wellcome Open Research. 6: 330. doi: 10.12688/wellcomeopenres.17355.1 . PMC   8753578 . PMID   35071799.
  421. Shen J, Cong Q, Borek D, Otwinowski Z, Grishin NV (July 2017). "Complete Genome of Achalarus lyciades, The First Representative of the Eudaminae Subfamily of Skippers". Current Genomics. 18 (4): 366–374. doi:10.2174/1389202918666170426113315. PMC   5635620 . PMID   29081692.
  422. Tang, Rui; Huang, Cong; Yang, Jun; Rao, Zhong-Chen; Cao, Li; Bai, Peng-Hua; Zhao, Xin-Cheng; Dong, Jun-Feng; Yan, Xi-Zhong; Wan, Fang-Hao; Jiang, Nan-Ji; Han, Ri-Chou (2024). "A ghost moth olfactory prototype of the lepidopteran sex communication". GigaScience. 13. doi:10.1093/gigascience/giae044. ISSN   2047-217X. PMC   11258902 . PMID   39028585.
  423. Kim SR, Kwak W, Kim H, Caetano-Anolles K, Kim KY, Kim SB, et al. (January 2018). "Genome sequence of the Japanese oak silk moth, Antheraea yamamai: the first draft genome in the family Saturniidae". GigaScience. 7 (1): 1–11. doi:10.1093/gigascience/gix113. PMC   5774507 . PMID   29186418.
  424. Yen EC, McCarthy SA, Galarza JA, Generalovic TN, Pelan S, Nguyen P, et al. (August 2020). "A haplotype-resolved, de novo genome assembly for the wood tiger moth (Arctia plantaginis) through trio binning". GigaScience. 9 (8). doi:10.1093/gigascience/giaa088. PMC   7433188 . PMID   32808665.
  425. Nowell RW, Elsworth B, Oostra V, Zwaan BJ, Wheat CW, Saastamoinen M, et al. (July 2017). "A high-coverage draft genome of the mycalesine butterfly Bicyclus anynana". GigaScience. 6 (7): 1–7. doi:10.1093/gigascience/gix035. PMC   5493746 . PMID   28486658.
  426. Mita K, Kasahara M, Sasaki S, Nagayasu Y, Yamada T, Kanamori H, Namiki N, Kitagawa M, Yamashita H, Yasukochi Y, Kadono-Okuda K, Yamamoto K, Ajimura M, Ravikumar G, Shimomura M, Nagamura Y, Shin-I T, Abe H, Shimada T, Morishita S, Sasaki T (February 2004). "The genome sequence of silkworm, Bombyx mori". DNA Research. 11 (1): 27–35. doi: 10.1093/dnares/11.1.27 . PMID   15141943.
  427. 1 2 Cong Q, Shen J, Borek D, Robbins RK, Otwinowski Z, Grishin NV (April 2016). "Complete genomes of Hairstreak butterflies, their speciation and nucleo-mitochondrial incongruence". Scientific Reports. 6 (24863): 24863. Bibcode:2016NatSR...624863C. doi:10.1038/srep24863. PMC   4848470 . PMID   27120974.
  428. Legeai, Fabrice; Romain, Sandra; Capblancq, Thibaut; Doniol-Valcroze, Paul; Joron, Mathieu; Lemaitre, Claire; Després, Laurence (March 2024). "Chromosome-Level Assembly and Annotation of the Pearly Heath Coenonympha arcania Butterfly Genome". Genome Biology and Evolution. 16 (3). doi:10.1093/gbe/evae055. ISSN   1759-6653. PMC   10980516 . PMID   38491969.
  429. Wan F, Yin C, Tang R, Chen M, Wu Q, Huang C, et al. (September 2019). "A chromosome-level genome assembly of Cydia pomonella provides insights into chemical ecology and insecticide resistance". Nature Communications. 10 (1): 4237. Bibcode:2019NatCo..10.4237W. doi:10.1038/s41467-019-12175-9. PMC   6748993 . PMID   31530873.
  430. Zhan S, Merlin C, Boore JL, Reppert SM (November 2011). "The monarch butterfly genome yields insights into long-distance migration". Cell. 147 (5): 1171–85. doi:10.1016/j.cell.2011.09.052. PMC   3225893 . PMID   22118469.
  431. Dasmahapatra KK (July 2012). "Butterfly genome reveals promiscuous exchange of mimicry adaptations among species". Nature. 487 (7405): 94–8. Bibcode:2012Natur.487...94T. doi:10.1038/nature11041. PMC   3398145 . PMID   22722851.
  432. Weng, Yi-Ming; Shashank, Pathour R; Godfrey, R Keating; Plotkin, David; Parker, Brandon M; Wist, Tyler; Kawahara, Akito Y (2024). "Evolutionary genomics of three agricultural pest moths reveals rapid evolution of host adaptation and immune-related genes". GigaScience. 13. doi:10.1093/gigascience/giad103. ISSN   2047-217X. PMC   10759296 . PMID   38165153.
  433. Ahola V, Lehtonen R, Somervuo P, Salmela L, Koskinen P, Rastas P, et al. (September 2014). "The Glanville fritillary genome retains an ancient karyotype and reveals selective chromosomal fusions in Lepidoptera". Nature Communications. 5 (1): 4737. Bibcode:2014NatCo...5.4737A. doi:10.1038/ncomms5737. PMC   4164777 . PMID   25189940.
  434. Smolander OP, Blande D, Ahola V, Rastas P, Tanskanen J, Kammonen JI, et al. (January 2022). "Improved chromosome-level genome assembly of the Glanville fritillary butterfly (Melitaea cinxia) integrating Pacific Biosciences long reads and a high-density linkage map". GigaScience. 11 (1): giab097. doi:10.1093/gigascience/giab097. PMC   8756199 . PMID   35022701.
  435. Cong Q, Li W, Borek D, Otwinowski Z, Grishin NV (February 2019). "The Bear Giant-Skipper genome suggests genetic adaptations to living inside yucca roots". Molecular Genetics and Genomics. 294 (1): 211–226. doi:10.1007/s00438-018-1494-6. PMC   6436644 . PMID   30293092.
  436. 1 2 3 Bastide H, López-Villavicencio M, Ogereau D, Lledo J, Dutrillaux AM, Debat V, Llaurens V (December 2022). "Genome assembly of 3 Amazonian Morpho butterfly species reveals Z-chromosome rearrangements between closely related species living in sympatry". GigaScience. 12. doi:10.1093/gigascience/giad033. PMC   10202424 . PMID   37216769.
  437. Héloïse, Bastide; Manuela, López-Villavicencio; David, Ogereau; Joanna, Lledo; Dutrillaux Anne-Marie; Vincent, Debat; Violaine, Llaurens (2023). "GigaDB Dataset - DOI 10.5524/102367 - Genomic data of the Amazonian blue butterfly, Morpho helenor". gigadb.org. doi:10.5524/102367 . Retrieved 2023-07-10.
  438. 1 2 Héloïse, Bastide; Manuela, López-Villavicencio; David, Ogereau; Joanna, Lledo; Dutrillaux Anne-Marie; Vincent, Debat; Violaine, Llaurens (2023). "GigaDB Dataset - DOI 10.5524/102366 - Genomic data of the Amazonian blue butterfly, Morpho achilles". gigadb.org. doi:10.5524/102366 . Retrieved 2023-07-10.
  439. Lu S, Yang J, Dai X, Xie F, He J, Dong Z, et al. (November 2019). "Chromosomal-level reference genome of Chinese peacock butterfly (Papilio bianor) based on third-generation DNA sequencing and Hi-C analysis". GigaScience. 8 (11). doi:10.1093/gigascience/giz128. PMC   6827417 . PMID   31682256.
  440. Weng, Yi-Ming; Shashank, Pathour R; Godfrey, R Keating; Plotkin, David; Parker, Brandon M; Wist, Tyler; Kawahara, Akito Y (2024). "Evolutionary genomics of three agricultural pest moths reveals rapid evolution of host adaptation and immune-related genes". GigaScience. 13. doi:10.1093/gigascience/giad103. ISSN   2047-217X. PMC   10759296 . PMID   38165153.
  441. Shen J, Cong Q, Kinch LN, Borek D, Otwinowski Z, Grishin NV (2016-11-03). "Pieris rapae, a resilient alien, a cabbage pest, and a source of anti-cancer proteins". F1000Research. 5: 2631. doi: 10.12688/f1000research.9765.1 . PMC   5247789 . PMID   28163896.
  442. 1 2 Kawahara AY, Storer CG, Markee A, Heckenhauer J, Powell A, Plotkin D, et al. (2022). "Long-read HiFi sequencing correctly assembles repetitive heavy fibroin silk genes in new moth and caddisfly genomes". GigaByte. 2022: 1–14. doi:10.46471/gigabyte.64. PMC   9693786 . PMID   36824508.
  443. Akito KY, Caroline SG, Amanda M, Jacqueline H, Ashlyn P, David P, et al. (2022). "GigaDB Dataset - Chromosome-scale assembly of the Indianmeal moth Plodia interpunctella". GigaDB. doi:10.5524/102231.
  444. You M, Yue Z, He W, Yang X, Yang G, Xie M, et al. (February 2013). "A heterozygous moth genome provides insights into herbivory and detoxification". Nature Genetics. 45 (2): 220–5. doi: 10.1038/ng.2524 . hdl: 2440/80359 . PMID   23313953. S2CID   645600.
  445. Weng, Yi-Ming; Shashank, Pathour R; Godfrey, R Keating; Plotkin, David; Parker, Brandon M; Wist, Tyler; Kawahara, Akito Y (2024). "Evolutionary genomics of three agricultural pest moths reveals rapid evolution of host adaptation and immune-related genes". GigaScience. 13. doi:10.1093/gigascience/giad103. ISSN   2047-217X. PMC   10759296 . PMID   38165153.
  446. Gouin A, Bretaudeau A, Nam K, Gimenez S, Aury JM, Duvic B, et al. (September 2017). "Two genomes of highly polyphagous lepidopteran pests (Spodoptera frugiperda, Noctuidae) with different host-plant ranges". Scientific Reports. 7 (1): 11816. Bibcode:2017NatSR...711816G. doi:10.1038/s41598-017-10461-4. PMC   5613006 . PMID   28947760.
  447. Kakumani PK, Malhotra P, Mukherjee SK, Bhatnagar RK (August 2014). "A draft genome assembly of the army worm, Spodoptera frugiperda". Genomics. 104 (2): 134–43. doi: 10.1016/j.ygeno.2014.06.005 . PMID   24984256.
  448. Tang, Rui; Huang, Cong; Yang, Jun; Rao, Zhong-Chen; Cao, Li; Bai, Peng-Hua; Zhao, Xin-Cheng; Dong, Jun-Feng; Yan, Xi-Zhong; Wan, Fang-Hao; Jiang, Nan-Ji; Han, Ri-Chou (2024). "A ghost moth olfactory prototype of the lepidopteran sex communication". GigaScience. 13. doi:10.1093/gigascience/giae044. ISSN   2047-217X. PMC   11258902 . PMID   39028585.
  449. Tang, Rui; Huang, Cong; Yang, Jun; Rao, Zhong-Chen; Cao, Li; Bai, Peng-Hua; Zhao, Xin-Cheng; Dong, Jun-Feng; Yan, Xi-Zhong; Wan, Fang-Hao; Jiang, Nan-Ji; Han, Ri-Chou (2024). "A ghost moth olfactory prototype of the lepidopteran sex communication". GigaScience. 13. doi:10.1093/gigascience/giae044. ISSN   2047-217X. PMC   11258902 . PMID   39028585.
  450. Hui, Jerome H. L.; Chan, Ting Fung; Chan, Leo Lai; Cheung, Siu Gin; Cheang, Chi Chiu; Fang, James Kar-Hei; Gaitan-Espitia, Juan Diego; Lau, Stanley Chun Kwan; Sung, Yik Hei; Wong, Chris Kong Chu; Yip, Kevin Yuk-Lap; Wei, Yingying; So, Wai Lok; Nong, Wenyan; Pun, Hydrogen Sui Fai (2024-04-25). "Chromosomal-level genome assembly of golden birdwing Troides aeacus (Felder & Felder, 1860)". Gigabyte. 2024: 1–14. doi:10.46471/gigabyte.122. ISSN   2709-4715. PMC   11068028 . PMID   38707630.
  451. Sivasankaran K, Mathew P, Anand S, Ceasar SA, Mariapackiam S, Ignacimuthu S (December 2017). "Complete mitochondrial genome sequence of fruit-piercing moth Eudocima phalonia (Linnaeus, 1763) (Lepidoptera: Noctuoidea)". Genomics Data. 14: 66–81. doi: 10.1016/j.gdata.2017.09.004 . PMC   5633087 . PMID   29021958.
  452. Wang X, Fang X, Yang P, Jiang X, Jiang F, Zhao D, et al. (14 January 2014). "The locust genome provides insight into swarm formation and long-distance flight". Nature Communications. 5 (1): 2957. Bibcode:2014NatCo...5.2957W. doi: 10.1038/ncomms3957 . PMC   3896762 . PMID   24423660.
  453. Verlinden H, Sterck L, Li J, Li Z, Yssel A, Gansemans Y, et al. (27 July 2020). "First draft genome assembly of the desert locust, Schistocerca gregaria". F1000Research. 9: 775. doi: 10.12688/f1000research.25148.1 . PMC   7607483 . PMID   33163158.
  454. Ylla G, Nakamura T, Itoh T, Kajitani R, Toyoda A, Tomonari S, et al. (June 2021). "Insights into the genomic evolution of insects from cricket genomes". Communications Biology. 4 (1): 733. doi:10.1038/s42003-021-02197-9. PMC   8203789 . PMID   34127782.
  455. Kirkness EF, Haas BJ, Sun W, Braig HR, Perotti MA, Clark JM, et al. (July 2010). "Genome sequences of the human body louse and its primary endosymbiont provide insights into the permanent parasitic lifestyle". Proceedings of the National Academy of Sciences of the United States of America. 107 (27): 12168–73. Bibcode:2010PNAS..10712168K. doi: 10.1073/pnas.1003379107 . PMC   2901460 . PMID   20566863.
  456. Feng S, Opit G, Deng W, Stejskal V, Li Z (July 2022). "A chromosome-level genome of the booklouse, Liposcelis brunnea, provides insight into louse evolution and environmental stress adaptation". GigaScience. 11. doi:10.1093/gigascience/giac062. PMC   9295366 . PMID   35852419.
  457. Wolf, Magnus; Greve, Carola; Schell, Tilman; Janke, Axel; Schmitt, Thomas; Pauls, Steffen U.; Aspöck, Horst; Aspöck, Ulrike (2024). "The de novo genome of the Black-necked Snakefly ( Venustoraphidia nigricollis Albarda, 1891): A resource to study the evolution of living fossils". Journal of Heredity. 115 (1): 112–119. doi: 10.1093/jhered/esad074 . PMC   10838129 . PMID   37988623.
  458. Akito KY, Caroline SG, Amanda M, Jacqueline H, Ashlyn P, David P, et al. (2022). "GigaDB Dataset - Chromosome-scale assembly of the caddisfly Eubasilissa regina". GigaDB. doi:10.5524/102230.
  459. Luo S, Tang M, Frandsen PB, Stewart RJ, Zhou X (December 2018). "The genome of an underwater architect, the caddisfly Stenopsyche tienmushanensis Hwang (Insecta: Trichoptera)". GigaScience. 7 (12). doi:10.1093/gigascience/giy143. PMC   6302954 . PMID   30476205.
  460. Jørgensen TS, Petersen B, Petersen HC, Browne PD, Prost S, Stillman JH, et al. (May 2019). "The Genome and mRNA Transcriptome of the Cosmopolitan Calanoid Copepod Acartia tonsa Dana Improve the Understanding of Copepod Genome Size Evolution". Genome Biology and Evolution. 11 (5): 1440–1450. doi:10.1093/gbe/evz067. PMC   6526698 . PMID   30918947.
  461. Tan MH, Gan HM, Lee YP, Grandjean F, Croft LJ, Austin CM (2020). "A Giant Genome for a Giant Crayfish (Cherax quadricarinatus) With Insights Into cox1 Pseudogenes in Decapod Genomes". Frontiers in Genetics. 11: 201. doi: 10.3389/fgene.2020.00201 . PMC   7069360 . PMID   32211032.
  462. "The Daphnia Genomics Consortium". Archived from the original on 2010-01-09. Retrieved 2012-05-23.
  463. "Daphnia pulex v1.0". DOE Joint Genome Institute . Retrieved 2009-11-29.
  464. Colbourne JK, Pfrender ME, Gilbert D, Thomas WK, Tucker A, Oakley TH, et al. (February 2011). "The ecoresponsive genome of Daphnia pulex". Science. 331 (6017): 555–61. Bibcode:2011Sci...331..555C. doi:10.1126/science.1197761. PMC   3529199 . PMID   21292972.
  465. Baldwin-Brown JG, Weeks SC, Long AD (January 2018). "A New Standard for Crustacean Genomes: The Highly Contiguous, Annotated Genome Assembly of the Clam Shrimp Eulimnadia texana Reveals HOX Gene Order and Identifies the Sex Chromosome". Genome Biology and Evolution. 10 (1): 143–156. doi:10.1093/gbe/evx280. PMC   5765565 . PMID   29294012.
  466. Jin S, Bian C, Jiang S, Han K, Xiong Y, Zhang W, et al. (January 2021). "A chromosome-level genome assembly of the oriental river prawn, Macrobrachium nipponense". GigaScience. 10 (1). doi:10.1093/gigascience/giaa160. PMC   7812440 . PMID   33459341.
  467. Kenny NJ, Sin YW, Shen X, Zhe Q, Wang W, Chan TF, et al. (March 2014). "Genomic sequence and experimental tractability of a new decapod shrimp model, Neocaridina denticulata". Marine Drugs. 12 (3): 1419–37. doi: 10.3390/md12031419 . PMC   3967219 . PMID   24619275.
  468. Kao D, Lai AG, Stamataki E, Rosic S, Konstantinides N, Jarvis E, et al. (November 2016). "Parhyale hawaiensis, a model for animal development, regeneration, immunity and lignocellulose digestion". eLife. 5: e20062. doi: 10.7554/eLife.20062 . PMC   5111886 . PMID   27849518.
  469. Bernot JP, Avdeyev P, Zamyatin A, Dreyer N, Alexeev N, Pérez-Losada M, Crandall KA (March 2022). "Chromosome-level genome assembly, annotation, and phylogenomics of the gooseneck barnacle Pollicipes pollicipes". GigaScience. 11: giac021. doi:10.1093/gigascience/giac021. PMC   8917513 . PMID   35277961.
  470. Tang B, Zhang D, Li H, Jiang S, Zhang H, Xuan F, et al. (January 2020). "Chromosome-level genome assembly reveals the unique genome evolution of the swimming crab (Portunus trituberculatus)". GigaScience. 9 (1). doi:10.1093/gigascience/giz161. PMC   6944217 . PMID   31904811.
  471. Gutekunst J, Andriantsoa R, Falckenhayn C, Hanna K, Stein W, Rasamy J, Lyko F (March 2018). "Clonal genome evolution and rapid invasive spread of the marbled crayfish". Nature Ecology & Evolution. 2 (3): 567–573. Bibcode:2018NatEE...2..567G. doi: 10.1038/s41559-018-0467-9 . PMID   29403072. S2CID   3354026.
  472. Yang, Mingliu; Gao, Tingwei; Yan, Bing; Chen, Xiao; Liu, Wenai (2 January 2019). "Complete mitochondrial genome and the phylogenetic position of a wood-boring Isopod Sphaeroma terebrans (Crustacea, Isopoda, Sphaeromatidae)". Mitochondrial DNA Part B. 4 (1): 1920–1921. doi: 10.1080/23802359.2019.1613181 .
  473. Kang S, Ahn DH, Lee JH, Lee SG, Shin SC, Lee J, et al. (January 2017). "The genome of the Antarctic-endemic copepod, Tigriopus kingsejongensis". GigaScience. 6 (1): 1–9. doi:10.1093/gigascience/giw010. PMC   5467011 . PMID   28369352.
  474. Nossa CW, Havlak P, Yue JX, Lv J, Vincent KY, Brockmann HJ, et al. (2014). "Joint assembly and genetic mapping of the Atlantic horseshoe crab genome reveals ancient whole genome duplication". GigaScience. 3: 9. doi: 10.1186/2047-217X-3-9 . PMC   4066314 . PMID   24987520.
  475. 1 2 Nong, Wenyan; Qu, Zhe; Li, Yiqian; Barton-Owen, Tom; Wong, Annette Y. P.; Yip, Ho Yin; Lee, Hoi Ting; Narayana, Satya; Baril, Tobias; Swale, Thomas; Cao, Jianquan; Chan, Ting Fung; Kwan, Hoi Shan; Ngai, Sai Ming; Panagiotou, Gianni (2021-01-19). "Horseshoe crab genomes reveal the evolution of genes and microRNAs after three rounds of whole genome duplication". Communications Biology. 4 (1): 83. doi:10.1038/s42003-020-01637-2. ISSN   2399-3642. PMC   7815833 . PMID   33469163.
  476. Gulia-Nuss M, Nuss AB, Meyer JM, Sonenshine DE, Roe RM, Waterhouse RM, et al. (February 2016). "Genomic insights into the Ixodes scapularis tick vector of Lyme disease". Nature Communications. 7: 10507. Bibcode:2016NatCo...710507G. doi:10.1038/ncomms10507. PMC   4748124 . PMID   26856261.
  477. Dong X, Armstrong SD, Xia D, Makepeace BL, Darby AC, Kadowaki T (1 March 2017). "Draft genome of the honey bee ectoparasitic mite, Tropilaelaps mercedesae, is shaped by the parasitic life history". GigaScience. 6 (3): 1–17. doi:10.1093/gigascience/gix008. PMC   5467014 . PMID   28327890.
  478. Grbić M, Van Leeuwen T, Clark RM, Rombauts S, Rouzé P, Grbić V, et al. (November 2011). "The genome of Tetranychus urticae reveals herbivorous pest adaptations". Nature. 479 (7374): 487–92. Bibcode:2011Natur.479..487G. doi:10.1038/nature10640. PMC   4856440 . PMID   22113690.
  479. Cao Z, Yu Y, Wu Y, Hao P, Di Z, He Y, et al. (2013). "The genome of Mesobuthus martensii reveals a unique adaptation model of arthropods". Nature Communications. 4: 2602. Bibcode:2013NatCo...4.2602C. doi:10.1038/ncomms3602. PMC   3826648 . PMID   24129506.
  480. 1 2 Sanggaard KW, Bechsgaard JS, Fang X, Duan J, Dyrlund TF, Gupta V, et al. (May 2014). "Spider genomes provide insight into composition and evolution of venom and silk". Nature Communications. 5: 3765. Bibcode:2014NatCo...5.3765S. doi:10.1038/ncomms4765. PMC   4273655 . PMID   24801114.
  481. Sheffer MM, Hoppe A, Krehenwinkel H, Uhl G, Kuss AW, Jensen L, et al. (January 2021). "Chromosome-level reference genome of the European wasp spider Argiope bruennichi: a resource for studies on range expansion and evolutionary adaptation". GigaScience. 10 (1). doi:10.1093/gigascience/giaa148. PMC   7788392 . PMID   33410470.
  482. Sánchez-Herrero JF, Frías-López C, Escuer P, Hinojosa-Alvarez S, Arnedo MA, Sánchez-Gracia A, Rozas J (August 2019). "The draft genome sequence of the spider Dysdera silvatica (Araneae, Dysderidae): A valuable resource for functional and evolutionary genomic studies in chelicerates". GigaScience. 8 (8). doi:10.1093/gigascience/giz099. PMC   6701490 . PMID   31430368.
  483. Wang Z, Zhu K, Li H, Gao L, Huang H, Ren Y, Xiang H (May 2022). "Chromosome-level genome assembly of the black widow spider Latrodectus elegans illuminates composition and evolution of venom and silk proteins". GigaScience. 11: giac049. doi:10.1093/gigascience/giac049. PMC   9154082 . PMID   35639632.
  484. Babb PL, Lahens NF, Correa-Garhwal SM, Nicholson DN, Kim EJ, Hogenesch JB, et al. (May 2017). "The Nephila clavipes genome highlights the diversity of spider silk genes and their complex expression". Nature Genetics. 49 (6): 895–903. doi: 10.1038/ng.3852 . PMID   28459453. S2CID   1221097.
  485. Schwager EE, Sharma PP, Clarke T, Leite DJ, Wierschin T, Pechmann M, et al. (July 2017). "The house spider genome reveals an ancient whole-genome duplication during arachnid evolution". BMC Biology. 15 (1): 62. doi: 10.1186/s12915-017-0399-x . PMC   5535294 . PMID   28756775.
  486. Miller J, Zimin AV, Gordus A (December 2022). "Chromosome-level genome and the identification of sex chromosomes in Uloborus diversus". GigaScience. 12. doi:10.1093/gigascience/giad002. PMC   9912274 . PMID   36762707.
  487. Chipman AD, Ferrier DE, Brena C, Qu J, Hughes DS, Schröder R, et al. (November 2014). "The first myriapod genome sequence reveals conservative arthropod gene content and genome organisation in the centipede Strigamia maritima". PLOS Biology. 12 (11): e1002005. doi: 10.1371/journal.pbio.1002005 . PMC   4244043 . PMID   25423365.
  488. Mora, Marielos; Herrera, Alvaro; León, Pedro (1 April 1996). "The genome of Epiperipatus biolleyi (Peripatidae), a Costa rucan onychophoran". Revista de Biología Tropical (in Spanish). 44 (1): 153–157. ISSN   2215-2075.
  489. Sato, Shoyo; Cunha, Tauana J.; de Medeiros, Bruno A. S.; Khost, Danielle E.; Sackton, Timothy B.; Giribet, Gonzalo (15 February 2023). "Sizing Up the Onychophoran Genome: Repeats, Introns, and Gene Family Expansion Contribute to Genome Gigantism in Epiperipatus broadwayi". Genome Biology and Evolution. 15 (3). doi:10.1093/gbe/evad021. PMC   9985152 . PMID   36790097 via Oxford Academic.
  490. Boothby TC, Tenlen JR, Smith FW, Wang JR, Patanella KA, Nishimura EO, et al. (December 2015). "Evidence for extensive horizontal gene transfer from the draft genome of a tardigrade". Proceedings of the National Academy of Sciences of the United States of America. 112 (52): 15976–81. Bibcode:2015PNAS..11215976B. doi: 10.1073/pnas.1510461112 . PMC   4702960 . PMID   26598659.
  491. Koutsovoulos G, Kumar S, Laetsch DR, Stevens L, Daub J, Conlon C, Maroon H, Thomas F, Aboobaker AA, Blaxter M (2015). "The genome of the tardigrade Hypsibius dujardini". bioRxiv   10.1101/033464 .
  492. Varney RM, Speiser DI, McDougall C, Degnan BM, Kocot KM (December 2020). "The iron-responsive genome of the chiton Acanthopleura Granulata". Genome Biology and Evolution. 13 (1). evaa263. doi:10.1093/gbe/evaa263. PMC   7850002 . PMID   33320175.
  493. Guo Y, Zhang Y, Liu Q, Huang Y, Mao G, Yue Z, et al. (October 2019). "A chromosomal-level genome assembly for the giant African snail Achatina fulica". GigaScience. 8 (10). doi:10.1093/gigascience/giz124. PMC   6802634 . PMID   31634388.
  494. Brejova B, Albertin CB, Silva F, Gardner P, Baril T, Hayward A, et al. (2020-01-01). "A draft genome sequence of the elusive giant squid, Architeuthis dux". GigaScience. 9 (1). doi:10.1093/gigascience/giz152. PMC   6962438 . PMID   31942620.
  495. Li C, Liu X, Liu B, Ma B, Liu F, Liu G, et al. (April 2018). "Draft genome of the Peruvian scallop Argopecten purpuratus". GigaScience. 7 (4). doi:10.1093/gigascience/giy031. PMC   5905365 . PMID   29617765.
  496. 1 2 Sun J, Zhang Y, Xu T, Zhang Y, Mu H, Zhang Y, et al. (April 2017). "Adaptation to deep-sea chemosynthetic environments as revealed by mussel genomes". Nature Ecology & Evolution. 1 (5): 121. Bibcode:2017NatEE...1..121S. doi: 10.1038/s41559-017-0121 . PMID   28812709. S2CID   26405671.
  497. Adema CM, Hillier LW, Jones CS, Loker ES, Knight M, Minx P, et al. (May 2017). "Whole genome analysis of a schistosomiasis-transmitting freshwater snail". Nature Communications. 8: 15451. Bibcode:2017NatCo...815451A. doi:10.1038/ncomms15451. PMC   5440852 . PMID   28508897.
  498. Nong W, Yu Y, Aase-Remedios ME, Xie Y, So WL, Li Y, et al. (February 2022). "Genome of the ramshorn snail Biomphalaria straminea-an obligate intermediate host of schistosomiasis". GigaScience. 11: giac012. doi:10.1093/gigascience/giac012 (inactive 1 November 2024). PMC   8848322 . PMID   35166339.{{cite journal}}: CS1 maint: DOI inactive as of November 2024 (link)
  499. Chueca LJ, Schell T, Pfenninger M (August 2021). "De novo genome assembly of the land snail Candidula unifasciata (Mollusca: Gastropoda)". G3: Genes, Genomes, Genetics. 11 (8). doi:10.1093/g3journal/jkab180. PMC   8496239 . PMID   34849805.
  500. Li Y, Sun X, Hu X, Xun X, Zhang J, Guo X, et al. (November 2017). "Scallop genome reveals molecular adaptations to semi-sessile life and neurotoxins". Nature Communications. 8 (1): 1721. Bibcode:2017NatCo...8.1721L. doi:10.1038/s41467-017-01927-0. PMC   5700196 . PMID   29167427.
  501. Pardos-Blas JR, Irisarri I, Abalde S, Afonso CM, Tenorio MJ, Zardoya R (May 2021). "The genome of the venomous snail Lautoconus ventricosus sheds light on the origin of conotoxin diversity". GigaScience. 10 (5). doi:10.1093/gigascience/giab037. PMC   8152183 . PMID   34037232.
  502. Qi, Haigang; Cong, Rihao; Wang, Yanjun; Li, Li; Zhang, Guofan (2022). "Construction and analysis of the chromosome-level haplotype-resolved genomes of two Crassostrea oyster congeners: Crassostrea angulata and Crassostrea gigas". GigaScience. 12. doi:10.1093/gigascience/giad077. PMC   10546077 . PMID   37787064.
  503. Zhang G, Fang X, Guo X, Li L, Luo R, Xu F, et al. (October 2012). "The oyster genome reveals stress adaptation and complexity of shell formation". Nature. 490 (7418): 49–54. Bibcode:2012Natur.490...49Z. doi: 10.1038/nature11413 . hdl: 10722/251007 . PMID   22992520. S2CID   52853995.
  504. Calcino AD, Luiz de Oliveira A, Simakov O, Schwaha T, Zieger E, Wollesen T, et al. (October 2019). "The quagga mussel genome and the evolution of freshwater tolerance". DNA Research. 26 (5): 411–422. doi:10.1093/dnares/dsz019. PMC   6796509 . PMID   31504356.
  505. Belcaid M, Casaburi G, McAnulty SJ, Schmidbaur H, Suria AM, Moriano-Gutierrez S, et al. (February 2019). "Symbiotic organs shaped by distinct modes of genome evolution in cephalopods". Proceedings of the National Academy of Sciences of the United States of America. 116 (8): 3030–3035. Bibcode:2019PNAS..116.3030B. doi: 10.1073/pnas.1817322116 . PMC   6386654 . PMID   30635418.
  506. Cai H, Li Q, Fang X, Li J, Curtis NE, Altenburger A, et al. (February 2019). "A draft genome assembly of the solar-powered sea slug Elysia chlorotica". Scientific Data. 6 (1): 190022. Bibcode:2019NatSD...690022C. doi:10.1038/sdata.2019.22. PMC   6380222 . PMID   30778257.
  507. Nam BH, Kwak W, Kim YO, Kim DG, Kong HJ, Kim WJ, et al. (May 2017). "Genome sequence of pacific abalone (Haliotis discus hannai): the first draft genome in family Haliotidae". GigaScience. 6 (5): 1–8. doi:10.1093/gigascience/gix014. PMC   5439488 . PMID   28327967.
  508. Whitelaw BL, Cooke IR, Finn J, da Fonseca RR, Ritschard EA, Gilbert MT, et al. (November 2020). "Adaptive venom evolution and toxicity in octopods is driven by extensive novel gene formation, expansion, and loss". GigaScience. 9 (11). doi:10.1093/gigascience/giaa120. PMC   7656900 . PMID   33175168.
  509. Herráez-Pérez, Ana; Pardos-Blas, José Ramón; Afonso, Carlos M L.; Tenorio, Manuel J.; Zardoya, Rafael (2022). "Chromosome-level genome of the venomous snail Kalloconus canariensis: A valuable model for venomics and comparative genomics". GigaScience. 12. doi:10.1093/gigascience/giad075. PMC   10541794 . PMID   37776364.
  510. Daniels, Benjamin N.; Andrasz, Cassidy L.; Zarate, Nicholas; Lee, Andy; López, Cataixa; Anderson, Paul; Toonen, Robert J.; Christie, Mark R.; White, Crow; Davidson, Jean M. (2023-12-05). "De novo genome and transcriptome assembly of Kelletia kelletii, a coastal gastropod and fisheries species exhibiting a northern range expansion". Frontiers in Marine Science. 10. doi: 10.3389/fmars.2023.1278131 . ISSN   2296-7745.
  511. 1 2 3 Simakov O, Marletaz F, Cho SJ, Edsinger-Gonzales E, Havlak P, Hellsten U, et al. (January 2013). "Insights into bilaterian evolution from three spiralian genomes". Nature. 493 (7433): 526–31. Bibcode:2013Natur.493..526S. doi:10.1038/nature11696. PMC   4085046 . PMID   23254933.
  512. Uliano-Silva M, Dondero F, Dan Otto T, Costa I, Lima NC, Americo JA, et al. (February 2018). "A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei". GigaScience. 7 (2). doi:10.1093/gigascience/gix128. PMC   5836269 . PMID   29267857.
  513. Hui, Jerome H. L.; Chan, Ting Fung; Chan, Leo Lai; Cheung, Siu Gin; Cheang, Chi Chiu; Fang, James Kar-Hei; Gaitan-Espitia, Juan Diego; Lau, Stanley Chun Kwan; Sung, Yik Hei; Wong, Chris Kong Chu; Yip, Kevin Yuk-Lap; Wei, Yingying; Au, Ming Fung Franco; So, Wai Lok; Nong, Wenyan (2024-04-25). "Chromosome-level genome assembly of the common chiton, Liolophura japonica (Lischke, 1873)". Gigabyte. 2024: 1–14. doi:10.46471/gigabyte.123. ISSN   2709-4715. PMC   11068029 . PMID   38707631.
  514. Gomes-Dos-Santos A, Lopes-Lima M, Machado AM, Forest T, Achaz G, Teixeira A, et al. (2023-05-15). "The Crown Pearl V2: an improved genome assembly of the European freshwater pearl mussel Margaritifera margaritifera (Linnaeus, 1758)". GigaByte. 2023: 1–14. doi:10.46471/gigabyte.81. PMC   10189783 . PMID   37207176.
  515. Murgarella M, Puiu D, Novoa B, Figueras A, Posada D, Canchaya C (2016-03-15). "A First Insight into the Genome of the Filter-Feeder Mussel Mytilus galloprovincialis". PLOS ONE. 11 (3): e0151561. Bibcode:2016PLoSO..1151561M. doi: 10.1371/journal.pone.0151561 . PMC   4792442 . PMID   26977809.
  516. Albertin CB, Simakov O, Mitros T, Wang ZY, Pungor JR, Edsinger-Gonzales E, et al. (August 2015). "The octopus genome and the evolution of cephalopod neural and morphological novelties". Nature. 524 (7564): 220–4. Bibcode:2015Natur.524..220A. doi:10.1038/nature14668. PMC   4795812 . PMID   26268193.
  517. Kim BM, Kang S, Ahn DH, Jung SH, Rhee H, Yoo JS, et al. (November 2018). "The genome of common long-arm octopus Octopus minor". GigaScience. 7 (11). doi:10.1093/gigascience/giy119. PMC   6279123 . PMID   30256935.
  518. Zarrella I, Herten K, Maes GE, Tai S, Yang M, Seuntjens E, et al. (April 2019). "The survey and reference assisted assembly of the Octopus vulgaris genome". Scientific Data. 6 (1): 13. Bibcode:2019NatSD...6...13Z. doi:10.1038/s41597-019-0017-6. PMC   6472339 . PMID   30931949.
  519. Wang, Jing; Xu, Qing; Chen, Min; Chen, Yang; Wang, Chunde; Chen, Nansheng (2022-12-28). "Chromosome-level genome assembly of the Pacific geoduck Panopea generosa reveals major inter- and intrachromosomal rearrangements and substantial expansion of the copine gene family". GigaScience. 12. doi:10.1093/gigascience/giad105. ISSN   2047-217X. PMC   10729735 . PMID   38116826.
  520. Wang S, Zhang J, Jiao W, Li J, Xun X, Sun Y, et al. (April 2017). "Scallop genome provides insights into evolution of bilaterian karyotype and development". Nature Ecology & Evolution. 1 (5): 120. Bibcode:2017NatEE...1..120W. doi: 10.1038/s41559-017-0120 . PMC   10970998 . PMID   28812685. S2CID   10331741.
  521. Kenny NJ, McCarthy SA, Dudchenko O, James K, Betteridge E, Corton C, et al. (May 2020). "The gene-rich genome of the scallop Pecten maximus". GigaScience. 9 (5). doi:10.1093/gigascience/giaa037. PMC   7191990 . PMID   32352532.
  522. Takeuchi T, Kawashima T, Koyanagi R, Gyoja F, Tanaka M, Ikuta T, et al. (April 2012). "Draft genome of the pearl oyster Pinctada fucata: a platform for understanding bivalve biology". DNA Research. 19 (2): 117–30. doi:10.1093/dnares/dss005. PMC   3325083 . PMID   22315334.
  523. Maeda T, Takahashi S, Yoshida T, Shimamura S, Takaki Y, Nagai Y, Toyoda A, Suzuki Y, Arimoto A, Ishii H, Satoh N, Nishiyama T, Hasebe M, Maruyama T, Minagawa J, Obokata J, Shigenobu S (April 2021). "Chloroplast acquisition without the gene transfer in kleptoplastic sea slugs, Plakobranchus ocellatus". eLife. 10 (e60176). doi: 10.7554/eLife.60176 . PMC   8079154 . PMID   33902812.
  524. Liu C, Zhang Y, Ren Y, Wang H, Li S, Jiang F, et al. (September 2018). "The genome of the golden apple snail Pomacea canaliculata provides insight into stress tolerance and invasive adaptation". GigaScience. 7 (9). doi:10.1093/gigascience/giy101. PMC   6129957 . PMID   30107526.
  525. Mun S, Kim YJ, Markkandan K, Shin W, Oh S, Woo J, et al. (June 2017). "The Whole-Genome and Transcriptome of the Manila Clam (Ruditapes philippinarum)". Genome Biology and Evolution. 9 (6): 1487–1498. doi:10.1093/gbe/evx096. PMC   5499747 . PMID   28505302.
  526. Powell D, Subramanian S, Suwansa-Ard S, Zhao M, O'Connor W, Raftos D, Elizur A (December 2018). "The genome of the oyster Saccostrea offers insight into the environmental resilience of bivalves". DNA Research. 25 (6): 655–665. doi:10.1093/dnares/dsy032. PMC   6289776 . PMID   30295708.
  527. Bai CM, Xin LS, Rosani U, Wu B, Wang QC, Duan XK, et al. (July 2019). "Chromosomal-level assembly of the blood clam, Scapharca (Anadara) broughtonii, using long sequence reads and Hi-C". GigaScience. 8 (7). doi:10.1093/gigascience/giz067. PMC   6615981 . PMID   31289832.
  528. Li, Ruiqi; Li, Jingchun; Lopez, Jose Victor; Oatley, Graeme; Sinclair, Elizabeth; Aunin, Eerik; Gettle, Noah; Santos, Camilla; Paulini, Michael; Niu, Haoyu; McKenna, Victoria; o'Brien, Rebecca (2023). "The genome sequence of the giant clam, Tridacna crocea (Lamarck, 1819)". Wellcome Open Research. 8: 571. doi: 10.12688/wellcomeopenres.20580.1 . Retrieved 2024-06-30.
  529. Renaut S, Guerra D, Hoeh WR, Stewart DT, Bogan AE, Ghiselli F, et al. (July 2018). "Genome Survey of the Freshwater Mussel Venustaconcha ellipsiformis (Bivalvia: Unionida) Using a Hybrid De Novo Assembly Approach". Genome Biology and Evolution. 10 (7): 1637–1646. doi:10.1093/gbe/evy117. PMC   6054159 . PMID   29878181.
  530. Wang X, Chen W, Huang Y, Sun J, Men J, Liu H, et al. (October 2011). "The draft genome of the carcinogenic human liver fluke Clonorchis sinensis". Genome Biology. 12 (10): R107. doi: 10.1186/gb-2011-12-10-r107 . PMC   3333777 . PMID   22023798.
  531. 1 2 3 4 Tsai IJ, Zarowiecki M, Holroyd N, Garciarrubio A, Sánchez-Flores A, Brooks KL, et al. (April 2013). "The genomes of four tapeworm species reveal adaptations to parasitism". Nature. 496 (7443): 57–63. Bibcode:2013Natur.496...57.. doi:10.1038/nature12031. PMC   3964345 . PMID   23485966.
  532. Zheng H, Zhang W, Zhang L, Zhang Z, Li J, Lu G, et al. (October 2013). "The genome of the hydatid tapeworm Echinococcus granulosus". Nature Genetics. 45 (10): 1168–75. doi: 10.1038/ng.2757 . PMID   24013640. S2CID   205347630.
  533. Young ND, Jex AR, Li B, Liu S, Yang L, Xiong Z, et al. (January 2012). "Whole-genome sequence of Schistosoma haematobium". Nature Genetics. 44 (2): 221–5. doi: 10.1038/ng.1065 . hdl: 10072/45821 . PMID   22246508. S2CID   13309839.
  534. Stroehlein AJ, Korhonen PK, Chong TM, Lim YL, Chan KG, Webster B, et al. (September 2019). "High-quality Schistosoma haematobium genome achieved by single-molecule and long-range sequencing". GigaScience. 8 (9). doi:10.1093/gigascience/giz108. PMC   6736295 . PMID   31494670.
  535. The Schistosoma japonicum Genome Sequencing and Functional Analysis Consortium (July 2009). "The Schistosoma japonicum genome reveals features of host-parasite interplay". Nature. 460 (7253): 345–51. Bibcode:2009Natur.460..345Z. doi:10.1038/nature08140. PMC   3747554 . PMID   19606140.
  536. Berriman M, Haas BJ, LoVerde PT, Wilson RA, Dillon GP, Cerqueira GC, et al. (July 2009). "The genome of the blood fluke Schistosoma mansoni". Nature. 460 (7253): 352–8. Bibcode:2009Natur.460..352B. doi:10.1038/nature08160. PMC   2756445 . PMID   19606141.
  537. Protasio AV, Tsai IJ, Babbage A, Nichol S, Hunt M, Aslett MA, et al. (January 2012). "A systematically improved high quality genome and transcriptome of the human blood fluke Schistosoma mansoni". PLOS Neglected Tropical Diseases. 6 (1): e1455. doi: 10.1371/journal.pntd.0001455 . PMC   3254664 . PMID   22253936.
  538. "Schmidtea mediterranea". The Genome Institute. Washington University in St. Louis. Archived from the original on 2012-03-08. Retrieved 2012-05-23.
  539. Schwarz EM, Hu Y, Antoshechkin I, Miller MM, Sternberg PW, Aroian RV (April 2015). "The genome and transcriptome of the zoonotic hookworm Ancylostoma ceylanicum identify infection-specific gene families". Nature Genetics. 47 (4): 416–22. doi:10.1038/ng.3237. PMC   4617383 . PMID   25730766.
  540. Han L, Liu T, He F, Hou Z (2023-03-27). "The first genome assembly of the amphibian nematode parasite (Aplectana chamaeleonis)". Gigabyte. 2023: 1–8. doi:10.46471/gigabyte.79. ISSN   2709-4715. PMC   10043924 . PMID   36999120.
  541. Jex AR, Liu S, Li B, Young ND, Hall RS, Li Y, et al. (October 2011). "Ascaris suum draft genome". Nature. 479 (7374): 529–33. Bibcode:2011Natur.479..529J. doi: 10.1038/nature10553 . PMID   22031327. S2CID   205226683.
  542. Ghedin E, Wang S, Spiro D, Caler E, Zhao Q, Crabtree J, et al. (September 2007). "Draft genome of the filarial nematode parasite Brugia malayi". Science. 317 (5845): 1756–60. Bibcode:2007Sci...317.1756G. doi:10.1126/science.1145406. PMC   2613796 . PMID   17885136.
  543. Kikuchi T, Cotton JA, Dalzell JJ, Hasegawa K, Kanzaki N, McVeigh P, et al. (September 2011). "Genomic insights into the origin of parasitism in the emerging plant pathogen Bursaphelenchus xylophilus". PLOS Pathogens. 7 (9): e1002219. doi: 10.1371/journal.ppat.1002219 . PMC   3164644 . PMID   21909270.
  544. Mortazavi A, Schwarz EM, Williams B, Schaeffer L, Antoshechkin I, Wold BJ, et al. (December 2010). "Scaffolding a Caenorhabditis nematode genome with RNA-seq". Genome Research. 20 (12): 1740–7. doi:10.1101/gr.111021.110. PMC   2990000 . PMID   20980554.
  545. "GSC: Caenorhabditis n. sp. PB2801". Archived from the original on 18 August 2007. Retrieved 28 April 2007.
  546. "Wormbase" . Retrieved 4 September 2015.
  547. Stein LD, Bao Z, Blasiar D, Blumenthal T, Brent MR, Chen N, et al. (November 2003). "The genome sequence of Caenorhabditis briggsae: a platform for comparative genomics". PLOS Biology. 1 (2): E45. doi: 10.1371/journal.pbio.0000045 . PMC   261899 . PMID   14624247.
  548. C. elegans Sequencing Consortium. (December 1998). "Genome sequence of the nematode C. elegans: a platform for investigating biology". Science. 282 (5396): 2012–8. Bibcode:1998Sci...282.2012.. doi:10.1126/science.282.5396.2012. PMID   9851916.
  549. "GSC: Caenorhabditis remanei". Archived from the original on 13 March 2007. Retrieved 28 April 2007.
  550. Haag ES, Chamberlin H, Coghlan A, Fitch DH, Peters AD, Schulenburg H (March 2007). "Caenorhabditis evolution: if they all look alike, you aren't looking hard enough" (PDF). Trends in Genetics. 23 (3): 101–4. doi:10.1016/j.tig.2007.01.002. PMID   17275130.
  551. Godel C, Kumar S, Koutsovoulos G, Ludin P, Nilsson D, Comandatore F, et al. (November 2012). "The genome of the heartworm, Dirofilaria immitis, reveals drug and vaccine targets". FASEB Journal. 26 (11): 4650–61. doi: 10.1096/fj.12-205096 . PMC   3475251 . PMID   22889830.
  552. Cotton JA, Lilley CJ, Jones LM, Kikuchi T, Reid AJ, Thorpe P, et al. (March 2014). "The genome and life-stage specific transcriptomes of Globodera pallida elucidate key aspects of plant parasitism by a cyst nematode". Genome Biology. 15 (3): R43. doi: 10.1186/gb-2014-15-3-r43 . PMC   4054857 . PMID   24580726.
  553. Laing R, Kikuchi T, Martinelli A, Tsai IJ, Beech RN, Redman E, et al. (August 2013). "The genome and transcriptome of Haemonchus contortus, a key model parasite for drug and vaccine discovery". Genome Biology. 14 (8): R88. doi: 10.1186/gb-2013-14-8-r88 . PMC   4054779 . PMID   23985316.
  554. Masonbrink R, Maier TR, Muppirala U, Seetharam AS, Lord E, Juvale PS, et al. (9 February 2019). "The genome of the soybean cyst nematode (Heterodera glycines) reveals complex patterns of duplications involved in the evolution of parasitism genes". BMC Genomics. 20 (1): 119. doi: 10.1186/s12864-019-5485-8 . PMC   6367775 . PMID   30732586.
  555. Bai X, Adams BJ, Ciche TA, Clifton S, Gaugler R, Kim KS, et al. (18 July 2013). "A lover and a fighter: the genome sequence of an entomopathogenic nematode Heterorhabditis bacteriophora". PLOS ONE. 8 (7): e69618. Bibcode:2013PLoSO...869618B. doi: 10.1371/journal.pone.0069618 . PMC   3715494 . PMID   23874975.
  556. Desjardins CA, Cerqueira GC, Goldberg JM, Dunning Hotopp JC, Haas BJ, Zucker J, et al. (May 2013). "Genomics of Loa loa, a Wolbachia-free filarial parasite of humans". Nature Genetics. 45 (5): 495–500. doi:10.1038/ng.2585. PMC   4238225 . PMID   23525074.
  557. Opperman CH, Bird DM, Williamson VM, Rokhsar DS, Burke M, Cohn J, et al. (September 2008). "Sequence and genetic map of Meloidogyne hapla: A compact nematode genome for plant parasitism". Proceedings of the National Academy of Sciences of the United States of America. 105 (39): 14802–7. Bibcode:2008PNAS..10514802O. doi: 10.1073/pnas.0805946105 . PMC   2547418 . PMID   18809916.
  558. Abad P, Gouzy J, Aury JM, Castagnone-Sereno P, Danchin EG, Deleury E, et al. (August 2008). "Genome sequence of the metazoan plant-parasitic nematode Meloidogyne incognita". Nature Biotechnology. 26 (8): 909–15. doi: 10.1038/nbt.1482 . hdl: 1912/2392 . PMID   18660804. S2CID   8836601.
  559. Tang YT, Gao X, Rosa BA, Abubucker S, Hallsworth-Pepin K, Martin J, et al. (March 2014). "Genome of the human hookworm Necator americanus". Nature Genetics. 46 (3): 261–269. doi:10.1038/ng.2875. PMC   3978129 . PMID   24441737.
  560. 1 2 "Filarial worms Database". 2015-06-04. Retrieved 5 June 2015.
  561. Dieterich C, Clifton SW, Schuster LN, Chinwalla A, Delehaunty K, Dinkelacker I, et al. (October 2008). "The Pristionchus pacificus genome provides a unique perspective on nematode lifestyle and parasitism". Nature Genetics. 40 (10): 1193–8. doi:10.1038/ng.227. PMC   3816844 . PMID   18806794.
  562. Schiffer PH, Kroiher M, Kraus C, Koutsovoulos GD, Kumar S, Camps JI, et al. (December 2013). "The genome of Romanomermis culicivorax: revealing fundamental changes in the core developmental genetic toolkit in Nematoda". BMC Genomics. 14 (1): 923. doi: 10.1186/1471-2164-14-923 . PMC   3890508 . PMID   24373391.
  563. Jex AR, Nejsum P, Schwarz EM, Hu L, Young ND, Hall RS, et al. (July 2014). "Genome and transcriptome of the porcine whipworm Trichuris suis". Nature Genetics. 46 (7): 701–6. doi:10.1038/ng.3012. PMC   4105696 . PMID   24929829.
  564. 1 2 Foth BJ, Tsai IJ, Reid AJ, Bancroft AJ, Nichol S, Tracey A, et al. (July 2014). "Whipworm genome and dual-species transcriptome analyses provide molecular insights into an intimate host-parasite interaction". Nature Genetics. 46 (7): 693–700. doi:10.1038/ng.3010. PMC   5012510 . PMID   24929830.
  565. "Capitella teleta". The Joint Genome Institute. Berkeley National Laboratory.
  566. "J Helobdella robusta". The Joint Genome Institute. Berkeley National Laboratory.
  567. "Eisenia fetida". WhitneyLab.
  568. Zwarycz AS, Nossa CW, Putnam NH, Ryan JF (December 2015). "Timing and Scope of Genomic Expansion within Annelida: Evidence from Homeoboxes in the Genome of the Earthworm Eisenia fetida". Genome Biology and Evolution. 8 (1): 271–81. doi:10.1093/gbe/evv243. PMC   4758240 . PMID   26659921.
  569. Sun Y, Sun J, Yang Y, Lan Y, Ip J, Wong WC, Kwan YH, Zhang Y, Han Z, Qiu JW, Qian PY (13 July 2021). "Genomic Signatures Supporting the Symbiosis and Formation of Chitinous Tube in the Deep-Sea Tubeworm Paraescarpia echinospica". Molecular Biology and Evolution. 38 (10): 4116–4134. doi:10.1093/molbev/msab203. PMC   8476170 . PMID   34255082.
  570. 1 2 3 Zheng J, Wang X, Feng T, Rehman SU, Yan X, Shan H, et al. (December 2022). "Molecular mechanisms underlying hematophagia revealed by comparative analyses of leech genomes". GigaScience. 12. doi:10.1093/gigascience/giad023. PMC   10087013 . PMID   37039117.
  571. 1 2 Jinghui, Zheng; Xiaobo, Wang; Tong, Feng; Saif, Rehman Ur; Xiuying, Yan; Huiquan, Shan; Xiaocong, Ma; Weiguan, Zhou; Wenhua, Xu; Liying, Lu; Jiasheng, Liu; Xier, Luo; Kuiqing, Cui; Chaobin, Qin; Weihua, Chen; Jun, Yu; Zhipeng, Li; Jue, Ruan; Qingyou, Liu (2023). "GigaDB Dataset - DOI 10.5524/102363 - Genomic data of non-bloodsucking leech, Whitmania pigra". gigadb.org. doi:10.5524/102363 . Retrieved 2023-07-10.
  572. Jinghui, Zheng; Xiaobo, Wang; Tong, Feng; Saif, Rehman Ur; Xiuying, Yan; Huiquan, Shan; Xiaocong, Ma; Weiguan, Zhou; Wenhua, Xu; Liying, Lu; Jiasheng, Liu; Xier, Luo; Kuiqing, Cui; Chaobin, Qin; Weihua, Chen; Jun, Yu; Zhipeng, Li; Jue, Ruan; Qingyou, Liu (2023). "GigaDB Dataset - DOI 10.5524/102364 - Genomic data of bloodsucking leech, Hirudo nipponia". gigadb.org. doi:10.5524/102364 . Retrieved 2023-07-10.
  573. Rayko M, Komissarov A, Lim-Fong G, Rhodes AC, Kwan JC, Kliver S, Chesnokova P, O'Brien SJ, Lopez JV (September 2020). "Draft genome of Bryozoan Bugula neritina – a colonial animal packing powerful symbionts and potential medicines". Scientific Data. 7 (1): 356. doi:10.1038/s41597-020-00684-y. PMC   7576161 . PMID   33082320.
  574. Luo YJ, Takeuchi T, Koyanagi R, Yamada L, Kanda M, Khalturina M, et al. (September 2015). "The Lingula genome provides insights into brachiopod evolution and the origin of phosphate biomineralization". Nature Communications. 6: 8301. Bibcode:2015NatCo...6.8301L. doi:10.1038/ncomms9301. PMC   4595640 . PMID   26383154.
  575. Flot JF, Hespeels B, Li X, Noel B, Arkhipova I, Danchin EG, et al. (August 2013). "Genomic evidence for ameiotic evolution in the bdelloid rotifer Adineta vaga". Nature. 500 (7463): 453–7. Bibcode:2013Natur.500..453F. doi: 10.1038/nature12326 . hdl: 1721.1/87072 . PMID   23873043. S2CID   1706158.