4.3 Article

A redescription of the Late Jurassic (Tithonian) turtle Uluops uluops and a new phylogenetic hypothesis of Paracryptodira

期刊

SWISS JOURNAL OF PALAEONTOLOGY
卷 140, 期 1, 页码 -

出版社

SPRINGER INT PUBL AG
DOI: 10.1186/s13358-021-00234-y

关键词

Testudinata; Baenidae; Compsemydidae; Helochelydridae; Pleurosternidae; Phylogeny; Morphology; Neurobiology; Cranial circulation; Fossil record

资金

  1. Swiss National Science Foundation grant SNF [200021_178780/1]
  2. Swiss National Science Foundation (SNF) [200021_178780] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

The study of the Late Jurassic turtle Uluops uluops using micro-computed tomography scans provides new insights into the evolution of the internal carotid artery and facial nerve systems, as well as the phylogenetic relationships of this group. The presence of a canalis caroticus lateralis in Uluops uluops suggests at least two independent losses of the palatine artery within paracryptodires. Future studies are expected to further clarify the evolution of the circulation system of paracryptodires and relationships along the turtle stem.
We study the Late Jurassic (Tithonian) turtle Uluops uluops using micro-computed tomography scans to investigate the cranial anatomy of paracryptodires, and provide new insights into the evolution of the internal carotid artery and facial nerve systems, as well as the phylogenetic relationships of this group. We demonstrate the presence of a canalis caroticus lateralis in Uluops uluops, the only pleurosternid for which a palatine artery canal can be confidently identified. Our phylogenetic analysis retrieves Uluops uluops as the earliest branching pleurosternid, Helochelydridae within Pleurosternidae, and Compsemydidae including Kallokibotion bajazidi within Baenidae, which suggests at least two independent losses of the palatine artery within paracryptodires. We expect future studies will provide additional insights into the evolution of the circulation system of paracryptodires, as well as clarifying relationships along the turtle stem.

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