Colobomycter

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Colobomycter
Temporal range: Early Permian, 289  Ma
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Colobomycter skull diagram.png
Skull diagram of Colobomycter pholeter
Scientific classification OOjs UI icon edit-ltr.svg
Domain: Eukaryota
Kingdom: Animalia
Phylum: Chordata
Class: Reptilia
Clade: Parareptilia
Order: Procolophonomorpha
Family: Acleistorhinidae
Genus: Colobomycter
Vaughn, 1958
Type species
Colobomycter pholeter
Vaughn, 1958
Species
  • C. pholeterVaughn, 1958 (type)
  • C. vaughniMacDougall, Modesto, & Reisz, 2016

Colobomycter is an extinct genus of lanthanosuchoid parareptile known from the Early Permian of Oklahoma.

Contents

Discovery

The type species, Colobomycter pholeter, was first described from fossil remains in 1958, at which time it was believed to represent a synapsid, specifically, a pelycosaur. [1] However, the discovery of new material and reexamination of the holotype led to its reclassification as a member of the Eureptilia. [2] More recent studies indicate that Colobomycter is properly placed within the amniote clade Parareptilia, as part of the group Lanthanosuchoidea and closely related to the taxon Acleistorhinus . [3] [4] [5] A second species of Colobomycter was described in 2016, Colobomycter vaughni. [6]

No postcranial material is known for Colobomycter, and the skull material referred to the genus has all been recovered from a single locality, the Richards Spur site at the Dolese Brothers Limestone Quarry, 11 kilometers north of Fort Sill, Comanche County, Oklahoma, dating to the early Artinskian stage. This site comprises a fissure-fill deposit yielding a unique upland fauna. [3] [4] Other taxa recovered from these strata preserves a wide array of tetrapods, including lepospondyl and temnospondyl amphibians, Seymouria , microsaurs, captorhinomorphs, and synapsids.

Description

The skull of Colobomycter is considered one of the most enigmatic found in any of the parareptiles primarily due to the presence of greatly enlarged caniniform teeth possessing serrated edges in the premaxilla and, to a lesser extent, the maxilla. [4] The length of the premaxillary fang is greater than half the height of the skull. Modesto & Reisz (2008) note that "The large size of the first premaxillary tooth is [otherwise] unheard of among early reptiles." The taxon also possesses unusual "folding" of the dentine at the bases of its larger marginal teeth, a state known as polyplycodont (a condition also seen to have evolved independently in diadectomorphs, ichthyosaurs, and mosasaurs). [7] Modesto & Reisz (2008) speculate that hard-shelled insects and other arthropods may have formed the bulk of its diet, but that Colobomycter could also have fed on vertebrates, including small amphibians and eureptiles. It is notable as the smallest predatory amniote from the Richard's Spur deposits, with a skull measuring a mere 70-80 millimeters in length. [4]

Related Research Articles

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<span class="mw-page-title-main">Eupelycosauria</span> Clade of synapsids

Eupelycosauria is a large clade of animals characterized by the unique shape of their skull, encompassing all mammals and their closest extinct relatives. They first appeared 308 million years ago during the Early Pennsylvanian epoch, with the fossils of Echinerpeton and perhaps an even earlier genus, Protoclepsydrops, representing just one of the many stages in the evolution of mammals, in contrast to their earlier amniote ancestors.

Varanopidae is an extinct family of amniotes that resembled monitor lizards and may have filled a similar niche, hence the name. Typically, they are considered synapsids that evolved from an Archaeothyris-like synapsid in the Late Carboniferous. However, some recent studies have recovered them being taxonomically closer to diapsid reptiles. A varanopid from the latest Middle Permian Pristerognathus Assemblage Zone is the youngest known varanopid and the last member of the "pelycosaur" group of synapsids.

<i>Mycterosaurus</i> Extinct genus of tetrapods

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<span class="mw-page-title-main">Parareptilia</span> Subclass of reptiles

Parareptilia ("near-reptiles") is a subclass or clade of basal sauropsids/reptiles, typically considered the sister taxon to Eureptilia. Parareptiles first arose near the end of the Carboniferous period and achieved their highest diversity during the Permian period. Several ecological innovations were first accomplished by parareptiles among reptiles. These include the first reptiles to return to marine ecosystems (mesosaurs), the first bipedal reptiles, the first reptiles with advanced hearing systems, and the first large herbivorous reptiles. The only parareptiles to survive into the Triassic period were the procolophonoids, a group of small generalists, omnivores, and herbivores. The largest family of procolophonoids, the procolophonids, rediversified in the Triassic, but subsequently declined and became extinct by the end of the period.

<i>Eothyris</i> Extinct genus of synapsids

Eothyris is a genus of extinct synapsid in the family Eothyrididae from the early Permian. It was a carnivorous insectivorous animal, closely related to Oedaleops. Only the skull of Eothyris, first described in 1937, is known. It had a 6-centimetre-long (2.4-inch) skull, and its total estimated length was 30 centimetres. Eothyris is one of the most primitive synapsids known and is probably very similar to the common ancestor of all synapsids in many respects. The only known specimen of Eothyris was collected from the Artinskian-lower.

<i>Delorhynchus</i> Extinct genus of reptiles

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<i>Mesenosaurus</i> Extinct genus of synapsids

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<span class="mw-page-title-main">Acleistorhinidae</span> Extinct family of reptiles

Acleistorhinidae is an extinct family of Late Carboniferous and Early Permian-aged parareptiles. Acleistorhinids are most diverse from the Richards Spur locality of the Early Permian of Oklahoma. Richards Spur acleistorhinids include Acleistorhinus, Colobomycter, and possibly Delorhynchus and Feeserpeton. Other taxa include Carbonodraco from the Late Carboniferous of Ohio and Karutia from the Early Permian of Brazil. Acleistorhinidae is commonly considered a subgroup of lanthanosuchoids, related to taxa such as Chalcosaurus, Lanthaniscus and Lanthanosuchus. However, a re-examination of parareptile phylogeny conducted by Cisneros et al. (2021) argued that lanthanosuchids were not closely related to acleistorhinids. The phylogenetic analysis conducted by these authors recovered acleistorhinids as the sister group of the clade Procolophonia, while lanthanosuchids were recovered within the procolophonian subgroup Pareiasauromorpha.

<i>Acleistorhinus</i> Extinct genus of reptiles

Acleistorhinus (ah-kles-toe-RYE-nuss) is an extinct genus of parareptile known from the Early Permian of Oklahoma. It is notable for being the earliest known anapsid reptile yet discovered. The morphology of the lower temporal fenestra of the skull of Acleistorhinus bears a superficial resemblance to that seen in early synapsids, a result of convergent evolution. Only a single species, A. pteroticus, is known, and it is classified in the Family Acleistorhinidae, along with Colobomycter.

<i>Heleosaurus</i> Extinct genus of tetrapods

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<i>Microleter</i> Extinct genus of reptiles

Microleter is an extinct genus of basal procolophonomorph parareptiles which lived in Oklahoma during the Early Permian period. The type and only known species is Microleter mckinzieorum. Microleter is one of several parareptile taxa described from the Richards Spur fissure fills, and can be characterized from its high tooth count, lacrimal/narial contact, short postfrontal, and slit-like temporal emargination edged by the postorbital, jugal, squamosal, and quadratojugal. Contrary to Australothyris, which had a similar phylogenetic position as a basal procolophonomorph, Microleter suggests that early parareptile evolution occurred in Laurasia and that multiple lineages developed openings or emarginations in the temporal region.

Baeotherates is an extinct genus of Early Permian captorhinid reptile known from Oklahoma, United States.

<span class="mw-page-title-main">Lanthanosuchoidea</span> Extinct superfamily of reptiles

Lanthanosuchoidea is an extinct superfamily of ankyramorph parareptiles from the middle Pennsylvanian to the middle Guadalupian epoch of Europe, North America and Asia. It was named by the Russian paleontologist Ivachnenko in 1980, and it contains two families Acleistorhinidae and Lanthanosuchidae.

<i>Feeserpeton</i> Extinct genus of reptiles

Feeserpeton is an extinct genus of parareptile from the Early Permian of Richard's Spur, Oklahoma. It is known from a single species, Feeserpeton oklahomensis, which was named in 2012 on the basis of a nearly complete skull. Feeserpeton is a member of the clade Lanthanosuchoidea and is one of the earliest parareptiles.

<span class="mw-page-title-main">Paleontology in Oklahoma</span>

Paleontology in Oklahoma refers to paleontological research occurring within or conducted by people from the U.S. state of Oklahoma. Oklahoma has a rich fossil record spanning all three eras of the Phanerozoic Eon. Oklahoma is the best source of Pennsylvanian fossils in the United States due to having an exceptionally complete geologic record of the epoch. From the Cambrian to the Devonian, all of Oklahoma was covered by a sea that would come to be home to creatures like brachiopods, bryozoans, graptolites and trilobites. During the Carboniferous, an expanse of coastal deltaic swamps formed in areas of the state where early tetrapods would leave behind footprints that would later fossilize. The sea withdrew altogether during the Permian period. Oklahoma was home a variety of insects as well as early amphibians and reptiles. Oklahoma stayed dry for most of the Mesozoic. During the Late Triassic, carnivorous dinosaurs left behind footprints that would later fossilize. During the Cretaceous, however, the state was mostly covered by the Western Interior Seaway, which was home to huge ammonites and other marine invertebrates. During the Cenozoic, Oklahoma became home to creatures like bison, camels, creodonts, and horses. During the Ice Age, the state was home to mammoths and mastodons. Local Native Americans are known to have used fossils for medicinal purposes. The Jurassic dinosaur Saurophaganax maximus is the Oklahoma state fossil.

<i>Abyssomedon</i> Extinct genus of reptiles

Abyssomedon is an extinct genus of a nyctiphruretid parareptile known from Early Permian fissure fills at Richards Spur in Comanche County, Oklahoma, south-central United States. It contains a single species, Abyssomedon williamsi, which represents oldest known nyctiphruretid species and the first to be discovered in North America.

<span class="mw-page-title-main">Richards Spur</span> Permian fossil locality in Oklahoma

Richards Spur is a Permian fossil locality located at the Dolese Brothers Limestone Quarry north of Lawton, Oklahoma. The locality preserves clay and mudstone fissure fills of a karst system eroded out of Ordovician limestone and dolomite, with the infilling dating to the Artinskian stage of the early Permian (Cisuralian), around 289 to 286 million years ago. Fossils of terrestrial animals are abundant and well-preserved, representing one of the most diverse Paleozoic tetrapod communities known. A common historical name for the site is Fort Sill, in reference to the nearby military base. Fossils were first reported at the quarry by workers in 1932, spurring a wave of collecting by local and international geologists. Early taxa of interest included the abundant reptile Captorhinus and microsaurs such as Cardiocephalus and Euryodus. Later notable discoveries include Doleserpeton, the most diverse assortment of parareptiles in the Early Permian, and the rare early diapsid Orovenator.

References

  1. Vaughn, P. P. (1958). "On a new pelycosaur from the Lower Permian of Oklahoma, and on the origin of the family Caseidae". Journal of Paleontology . 32: 981–991.
  2. Laurin, M.; Reisz, R. R. (1989). "Taxonomic position and phylogenetic relationships of Colobomycter pholeter, a small reptile from the Lower Permian of Oklahoma". Canadian Journal of Earth Sciences. 26 (3): 544–550. Bibcode:1989CaJES..26..544L. doi:10.1139/e89-046.
  3. 1 2 Modesto, S. P.; Reisz, R. R. (1999). "Colobomycter pholeter from the Lower Permian of Oklahoma: a parareptile, not a protorothyridid". Journal of Vertebrate Paleontology . 19 (3): 466–472. doi:10.1080/02724634.1999.10011159.
  4. 1 2 3 4 Modesto, S. P.; Reisz, R. R. (2008). "New material of Colobomycter pholeter, a small parareptile from the Lower Permian of Oklahoma". Journal of Vertebrate Paleontology. 28 (3): 677–684. doi:10.1671/0272-4634(2008)28[677:NMOCPA]2.0.CO;2.
  5. Macdougall, Mark J.; Scott, Diane; Modesto, Sean P.; Williams, Scott A.; Reisz, Robert R. (2017-07-01). "New material of the reptile Colobomycter pholeter (Parareptilia: Lanthanosuchoidea) and the diversity of reptiles during the Early Permian (Cisuralian)". Zoological Journal of the Linnean Society. 180 (3): 661–671. doi:10.1093/zoolinnean/zlw012. ISSN   0024-4082.
  6. MacDougall, Mark J.; Modesto, Sean P.; Reisz, Robert R. (2016-09-02). "A new reptile from the Richards Spur locality, Oklahoma, U.S.A., and patterns of Early Permian parareptile diversification". Journal of Vertebrate Paleontology. 36 (5): e1179641. doi:10.1080/02724634.2016.1179641. ISSN   0272-4634. S2CID   89333948.
  7. MacDougall, Mark J.; LeBlanc, Aaron R. H.; Reisz, Robert R. (2014-05-07). "Plicidentine in the Early Permian Parareptile Colobomycter pholeter, and Its Phylogenetic and Functional Significance among Coeval Members of the Clade". PLOS ONE. 9 (5): e96559. Bibcode:2014PLoSO...996559M. doi: 10.1371/journal.pone.0096559 . ISSN   1932-6203. PMC   4013015 . PMID   24804680.