Aegirocassis

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Aegirocassis
Temporal range: Late Tremadocian, 480  Ma
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YPM 237172 Aegirocassis benmoulae.jpg
Fossil holotype
20191205 Aegirocassis benmoulai Aegirocassis benmoulae.png
Reconstruction of Aegirocassis benmoulai
Scientific classification OOjs UI icon edit-ltr.svg
Domain: Eukaryota
Kingdom: Animalia
Phylum: Arthropoda
Order: Radiodonta
Family: Hurdiidae
Subfamily: Aegirocassisinae
Genus: Aegirocassis
Species:
A. benmoulai
Binomial name
Aegirocassis benmoulai
Van Roy, Daley, & Briggs, 2015 [1] (nom. corr. Van Roy et al. in press [2] )

Aegirocassis is an extinct genus of giant radiodont arthropod belonging to the family Hurdiidae that lived 480 million years ago during the early Ordovician in the Fezouata Formation of Morocco. It is known by a single species, Aegirocassis benmoulai. [1] [note 1] Van Roy initiated scientific study of the fossil, the earliest known of a "giant" filter-feeder discovered to date. [1] Aegirocassis is considered to have evolved from early predatory radiodonts. [3] This animal is characterized by its long, forward facing head sclerite, and the endites on its frontal appendages that bore copious amounts of baleen-like auxiliary spines. [1] This animal evolving filter-feeding traits was most likely a result of the Great Ordovician Biodiversification Event, when environmental changes caused a diversification of plankton, which in turn allowed for the evolution of new suspension feeding lifeforms. [4] [5] Alongside the closely related Pseudoangustidontus , [6] an unnamed hurdiid from Wales, [7] the middle Ordovician dinocaridid Mieridduryn , [8] and the Devonian hurdiid Schinderhannes this radiodont is one of the few dinocaridids known from post-Cambrian rocks. [9]

Contents

Description

A. benmoulai was the largest known radiodont and the largest known animal that existed in this period, [10] and the length was described as exceeding 2.0 metres (6.6 ft). [1]

The fossil was preserved with exceptional three-dimensional detail, unlike most other radiodont fossils, in which the animals are flattened. [1] The quality of three-dimensional preservation has shed light on the nature of radiodont trunk flaps. Each trunk segment of the Aegirocassis benmoulai specimen has both a ventral and a dorsal pair of flaps. Several details seen clearly in the specimen led to a review and reassessment of research of existing specimens and, most importantly, to the conclusion that the ventral pair are homologous with arthropod endopods (limb-like inner branches) and lobopodian limbs (lobopods), and the dorsal pair are homologous with the flaps of gilled lobopodians and exites (gill-like outer branches) of the arthropod biramous limb. [1] [10] This discovery also found that other hurdiid radiodonts like Peytoia and Hurdia had a dorsal pair of flaps as well. [1]

Frontal appendages of Aegirocassis had five endites, and each endites had around 80 setae-like auxiliary spines. These spines are estimated to have been used as a mesh for filter feeding. It was probably able to consume mesozooplankton roughly the same size as the other filter feeding radiodont, Tamisiocaris , was able to catch. However, the spines on the frontal appendages of Aegirocassis are inward-angled, which allowed the spines to overlap to a degree, allowing more control over the size of the filtering mesh. This has led to the estimation that Aegirocassis may have fed on larger size ranges of zooplankton than Tamisiocaris could. In addition, the large carapace (H-element) may have helped to guide the feeding current to the frontal appendages. [1] Eyes and mouthpart (oral cone) are not known from Aegirocassis. Since it was probably a filter feeder, Aegirocassis probably lacked a hard mouthpart and had a flexible one, explaining why mouth structures are not preserved. [1]

Reconstruction of the Fezouata Biota, featuring roughly 50 different species. The largest animal, Aegirocassis benmoulai (just over 2 metres in length), is depicted in a pair swimming just above the seafloor. The pair is depicted as sexually dimorphic, with the larger individual possessing an expanded lateral process on its central head carapace. Fezouata Biota.jpg
Reconstruction of the Fezouata Biota, featuring roughly 50 different species. The largest animal, Aegirocassis benmoulai (just over 2 metres in length), is depicted in a pair swimming just above the seafloor. The pair is depicted as sexually dimorphic, with the larger individual possessing an expanded lateral process on its central head carapace.

Discovery

A fossil of A. benmoulai from the Fezouata biota, Morocco was discovered by and named after Mohamed Ben Moula, a fossil collector who recognized its rare characteristics and brought it to the notice of a professional paleontologist, Peter Van Roy, at the Ghent University in Belgium. [12]

Phylogeny

Phylogenetic position of Aegirocassis within Panarthropoda, according to Pates et al. (2022). [13]

Notes

  1. The species was originally termed A. benmoulae, but was corrected to A. benmoulai to comply with the terms of the ICZN. [2]

Related Research Articles

<span class="mw-page-title-main">Dinocaridida</span> Extinct class of basal arthropods

Dinocaridida is a proposed fossil taxon of basal arthropods, which flourished during the Cambrian period and survived up to Early Devonian. Characterized by a pair of frontal appendages and series of body flaps, the name of Dinocaridids refers to the suggested role of some of these members as the largest marine predators of their time. Dinocaridids are occasionally referred to as the 'AOPK group' by some literatures, as the group compose of Radiodonta, Opabiniidae, and the "gilled lobopodians" Pambdelurion and Kerygmachelidae. It is most likely paraphyletic, with Kerygmachelidae and Pambdelurion more basal than the clade compose of Opabiniidae, Radiodonta and other arthropods.

<i>Anomalocaris</i> Extinct genus of cambrian radiodont

Anomalocaris is an extinct genus of radiodont, an order of early-diverging stem-group arthropods.

<i>Peytoia</i> Extinct genus of radiodont

Peytoia is a genus of hurdiid radiodont, an early diverging order of stem-group arthropods, that lived in the Cambrian period, containing two species, Peytoia nathorsti from the Miaolingian of Canada and Peytoia infercambriensis from Poland, dating to Cambrian Stage 3. Its two frontal appendages had long bristle-like spines, it had no fan tail, and its short stalked eyes were behind its large head.

<span class="mw-page-title-main">Anomalocarididae</span> Clade of extinct arthropods

Anomalocarididae is an extinct family of Cambrian radiodonts, a group of stem-group arthropods.

<i>Peytoia infercambriensis</i> Extinct species of arthropod

Peytoia infercambriensis is a species of hurdiid radiodont in the genus Peytoia.

<i>Schinderhannes bartelsi</i> Extinct species of radiodont

Schinderhannes bartelsi is a species of hurdiid radiodont (anomalocaridid), known from one specimen from the Lower Devonian Hunsrück Slates. Its discovery was astonishing because the latest definitive radiodonts were known only from the Early Ordovician, at least 66 million years earlier than this taxon.

<span class="mw-page-title-main">Radiodonta</span> Extinct order of basal arthropods

Radiodonta is an extinct order of stem-group arthropods that was successful worldwide during the Cambrian period. Radiodonts are distinguished by their distinctive frontal appendages, which are morphologically diverse and used for a variety of functions. Radiodonts included the earliest large predators known, but they also included sediment sifters and filter feeders. Some of the most famous species of radiodonts are the Cambrian taxa Anomalocaris canadensis, Hurdia victoria, Peytoia nathorsti, Titanokorys gainesi, Cambroraster falcatus and Amplectobelua symbrachiata. The later surviving members include the subfamily Aegirocassisinae from the Early Ordovician of Morocco and the Early Devonian member Schinderhannes bartelsi from Germany.

<i>Hurdia</i> Extinct genus of radiodonts

Hurdia is an extinct genus of hurdiid radiodont that lived 505 million years ago during the Cambrian Period. Fossils have been found in North America, China and the Czech Republic.

<i>Stanleycaris</i> Extinct genus of basal hurdiid radiodonts

Stanleycaris is an extinct genus of hurdiid radiodont from the Cambrian. The type species is Stanleycaris hirpex. Stanleycaris was described from the Stephen Formation near the Stanley Glacier and Burgess Shale locality of Canada, as well as Wheeler Formation of United States. A second species, S. qingjiangensis is known from the Qingjiang biota of China. The genus was characterized by the rake-like frontal appendages with robust inner spines.

<i>Cucumericrus</i> Extinct genus of arthropod

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<i>Caryosyntrips</i> Extinct genus of arthropod

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<span class="mw-page-title-main">Tamisiocarididae</span> Clade of extinct arthropods

Tamisiocarididae is a family of radiodonts, extinct marine animals related to arthropods, that bore finely-spined appendages that were presumably used in filter-feeding. When first discovered, the clade was named Cetiocaridae after a speculative evolution artwork, Bearded Ceticaris by John Meszaros, that depicted a hypothetical filter-feeding radiodont at a time before any were known to exist. However, the family name was not valid according to the International Code of Zoological Nomenclature, as no real genus named "Cetiocaris" exists, and in 2019 it was formally replaced by the name Tamisiocarididae, after the only valid genus of the clade at the time. The family is only known from Series 2 of the Cambrian, unlike other radiodont families, which persisted longer into the Cambrian. All known species would have lived in tropical or subtropical waters, suggesting a preference for warmer waters.

<span class="mw-page-title-main">Hurdiidae</span> Extinct family of arthropods

Hurdiidae is an extinct cosmopolitan family of radiodonts, a group of stem-group arthropods, which lived during the Paleozoic Era. It is the most long-lived radiodont clade, lasting from the Cambrian period to the Devonian period.

<i>Ursulinacaris</i> Extinct genus of hurdiid radiodonts

Ursulinacaris is a genus of hurdiid radiodont from the Cambrian of North America. It contains one known species, Ursulinacaris grallae. It was described in 2019, based on fossils of the frontal appendages discovered in the 1990s and thereafter. The endites of Ursulinacaris were very slender, unlike other hurdiids such as Peytoia or Hurdia. It was initially reported as the first hurdiid with paired endites, but Moysiuk & Caron (2021) suggested that it is actually the preservation of the fossils and thus no paired endites.

<i>Laminacaris</i> Genus of extinct arthropods

Laminacaris is a genus of extinct stem-group arthropods (Radiodonta) that lived during the Cambrian period. It is monotypic with a single species Laminacaris chimera, the fossil of which was described from the Chengjiang biota of China in 2018. Around the same time, two specimens that were similar or of the same species were discovered at the Kinzers Formation in Pennsylvania, USA. The first specimens from China were three frontal appendages, without the other body parts.

<i>Pahvantia</i> Extinct genus of radiodonts

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<i>Mieridduryn</i> An opabiniid-like panarthropod

Mieridduryn is a genus of extinct dinocaridid arthropod that lived during the Middle Ordovician of what is now the United Kingdom. This animal was described in 2022 based on a singular fossil found in Castle Bank, a Burgess shale type lagerstätte located in the country of Wales. This animal's taxonomic affinities are somewhat unclear, but there are some hypotheses. One is that this animal represents a new grade of stem-euarthropods that evolved features similar to the Cambrian aged opabiniids. Another is that if the features seen in Mieridduryn are convergent, and not homologous, to those seen in radiodonts, then this animal represents a late surviving opabiniid.

<i>Pseudoangustidontus</i> Hurdiid radiodont from the Early Ordovician

Pseudoangustidontus is a genus of hurdiid (peytoiid) radiodont from the Lower Ordovician of Morocco. This genus is known from two described species, P. duplospineus and P. izidigua, with some specimens that are hard to determine which species to belong to. This animal is only known from the Fezouata Formation, a fossil site in Morocco that is of Lagerstätte status, meaning that the fossils from this site are exceptionally preserved. Because of its partial remains, its classification was debated, but with more complete fossils it is identified as radiodont frontal appendage.

<span class="mw-page-title-main">Aegirocassisinae</span> Subfamily of hurdiid radiodonts

Aegirocassisinae is a subfamily of radiodonts from the lower Paleozoic era. It belongs to the larger hurdiidae (peytoiid) family, which were the most diverse and long lasting radiodonts. The members of this subfamily are restricted to the Lower Ordovician-aged Fezouata Formation of Morocco. Currently only two genera are included: Aegirocassis and Pseudoangustidontus. These two genera possess large Baleen-like auxiliary spines on their frontal appendages, which suggests a suspension feeding lifestyle for the group. These radiodonts are some of the few known from sediments beyond the Cambrian period. This subfamily shows that following the Great Ordovician Biodiversification Event, which saw a rise in the plankton population in the worlds oceans, suspension feeding became more common in radiodonts then other feeding styles. It also seems that due to the evolution of new predators, like large nautiloid cephalopods, and other arthropod groups like the eurypterids, the radiodonts evolved suspension feeding lifestyles in order to minimize competition for food.

<i>Cordaticaris</i> Genus of extinct stem-group arthropods

Cordaticaris is a genus of extinct hurdiid (peytoiid) radiodont that lived in what is now northern China during the middle Cambrian period. This animal was described in 2020 based on remains found in the Zhangxia Formation, located in the Shandong Province. It is differentiated from other members of its family by its unique heart-shaped frontal sclerite, and its frontal appendages bearing nine endites and seven more elongated subequal endites. This animal was important as it was the first Miaolingian aged hurdiid known from rock layers outside of laurentia, allowing paleontologists to get a better grasp of this families geographic range in life.

References

  1. 1 2 3 4 5 6 7 8 9 10 11 Van Roy, Peter; Daley, Allison C.; Briggs, Derek E. G. (2015). "Anomalocaridid trunk limb homology revealed by a giant filter-feeder with paired flaps". Nature. 522 (7554): 77–80. doi:10.1038/nature14256. ISSN   0028-0836. PMID   25762145. S2CID   205242881.
  2. 1 2 Van Roy, Peter; Briggs, Derek E. G.; Gaines, Robert R. (2015). "The Fezouata fossils of Morocco; an extraordinary record of marine life in the Early Ordovician". Journal of the Geological Society. 172 (5): 2015–017. doi:10.1144/jgs2015-017. hdl: 1854/LU-8714212 . ISSN   0016-7649. S2CID   129319753.
  3. Van Roy, Peter (12 March 2015). "Fossils of huge plankton-eating sea creature shine light on early arthropod evolution". The Conversation. Archived from the original on 2023-10-11. Retrieved 2024-05-12.
  4. Servais, T.; Owen, A. W.; Harper, D. A. T.; Kröger, B. R.; Munnecke, A. (2010). "The Great Ordovician Biodiversification Event (GOBE): the palaeoecological dimension". Palaeogeography, Palaeoclimatology, Palaeoecology. 294 (3–4): 99–119. doi:10.1016/j.palaeo.2010.05.031.
  5. Stigall, A.L; et al. (December 2016). "Biotic immigration events, speciation, and the accumulation of biodiversity in the fossil record". Global and Planetary Change. 148: 242–257. Bibcode:2017GPC...148..242S. doi:10.1016/j.gloplacha.2016.12.008.
  6. Potin, G. J.-M.; Gueriau, P.; Daley, A. C. (2023). "Radiodont frontal appendages from the Fezouata Biota (Morocco) reveal high diversity and ecological adaptations to suspension-feeding during the Early Ordovician". Frontiers in Ecology and Evolution. 11. 1214109. doi: 10.3389/fevo.2023.1214109 .
  7. Pates, Stephen; Botting, Joseph P.; McCobb, Lucy M. E.; Muir, Lucy A. (2020). "A miniature Ordovician hurdiid from Wales demonstrates the adaptability of Radiodonta". Royal Society Open Science. 7 (6): 200459. Bibcode:2020RSOS....700459P. doi: 10.1098/rsos.200459 . PMC   7353989 . PMID   32742697.
  8. Pates, S.; Botting, J. P.; Muir, L. A.; Wolfe, J. M. (2022). "Ordovician opabiniid-like animals and the role of the proboscis in euarthropod head evolution". Nature Communications. 13 (1). 6969. doi: 10.1038/s41467-022-34204-w . PMC   9666559 . PMID   36379946.
  9. Gabriele Kühl; Derek E. G. Briggs & Jes Rust (2009). "A great-appendage arthropod with a radial mouth from the Lower Devonian Hunsrück Slate, Germany". Science . 323 (5915): 771–773. Bibcode:2009Sci...323..771K. doi:10.1126/science.1166586. PMID   19197061. S2CID   47555807.
  10. 1 2 Perkins, S. (2015-03-11). "Newly discovered sea creature was once the largest animal on Earth". AAAS. Archived from the original on 2023-08-13. Retrieved 2024-05-12.
  11. Saleh, Farid; Antcliffe, Jonathan B.; Birolini, Enzo; Candela, Yves; Corthésy, Nora; Daley, Allison C.; Dupichaud, Christophe; Gibert, Corentin; Guenser, Pauline; Laibl, Lukáš; Lefebvre, Bertrand; Michel, Soline; Potin, Gaëtan J.-M. (6 September 2024). "Highly resolved taphonomic variations within the Early Ordovician Fezouata Biota". Scientific Reports. 14 (1): 20807. doi: 10.1038/s41598-024-71622-w . ISSN   2045-2322. PMC   11379804 .
  12. Van Roy, Peter; Briggs, Derek E. G. (2011). "A giant Ordovician anomalocaridid". Nature. 473 (7348): 510–513. doi:10.1038/nature09920. ISSN   1476-4687. PMID   21614078. S2CID   205224390.
  13. Pates, Stephen; Wolfe, Joanna M.; Lerosey-Aubril, Rudy; Daley, Allison C.; Ortega-Hernández, Javier (2022-02-09). "New opabiniid diversifies the weirdest wonders of the euarthropod stem group". Proceedings of the Royal Society B: Biological Sciences. 289 (1968). doi: 10.1098/rspb.2021.2093 . PMC   8826304 . PMID   35135344.