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  5. A new long†necked archosauromorph from the Guanling Formation (Anisian, Middle Triassic) of southwestern China and its implications for neck evolution in tanystropheids

A new long†necked archosauromorph from the Guanling Formation (Anisian, Middle Triassic) of southwestern China and its implications for neck evolution in tanystropheids

Resource type
Journal article
Creator (person)
Wang, Wei
ORCIDORCID logo
Spiekman, Stephan N F
ORCIDORCID logo
Zhao, Lijun
Rieppel, Olivier
Scheyer, Torsten M
Fraser, Nicholas C
ORCIDORCID logo
Li, Chun
Date published
April 7, 2023
Abstract
A long neck is an evolutionary innovation convergently appearing in multiple tetrapod lineages, including groups of plesiosaurs, non-archosauriform archosauromorphs, turtles, sauropodomorphs, birds, and mammals. Among all tetrapods both extant and extinct, two Triassic archosauromorphs, Tanystropheus and Dinocephalosaurus, have necks that are particularly elongated relative to the lengths of their trunks. However, the evolutionary history of such hyper-elongated necks in these two archosauromorph clades remains unknown, partially because known close relatives such as Macrocnemus and Pectodens possess only moderately elongated necks. Here, we describe a newly discovered early diverging archosauromorph, Gracilicollum latens gen. et sp. nov., based on a specimen comprising a partial neck and an incompletely preserved skull. The long neck is composed of at least 18 cervical vertebrae. The dentition suggests that this new taxon most likely represents an aquatic piscivore, similar to Dinocephalosaurus and Tanystropheus hydroides. Despite possessing a high number of cervical vertebrae, Gracilicollum gen. nov. is recovered as a tanystropheid in an evolutionary grade between Macrocnemus and Tanystropheus rather than as a close relative of Dinocephalosaurus, a result that is primarily attributable to the presence of palatal teeth and the anatomy of the cervical vertebrae in Gracilicollum gen. nov. Considering the information provided by the new specimen, we provide a detailed discussion of the cervical evolution in dinocephalosaurids and tanystropheids, which is shown to be highly complex and mosaic in nature.
Funder
Funder nameAwards
National Natural Science Foundation of China
42002019
Schweizerischer Nationalfonds zur Fà¶rderung der Wissenschaftlichen Forschung
205321_162775
Youth Innovation Promotion Association of the Chinese Academy of Sciences
Journal title
The Anatomical Record
Publisher
Wiley
ISSN
1932-8486
eISSN
1932-8494
Official URL
https://doi.org/10.1002/ar.25216
Related URL
https://www.nms.ac.uk/collections-research/collections-departments/natural-sciences/meet-the-team/dr-nick-fraser/
Rights statement
In Copyright
DOI
10.1002/ar.25216
Keywords
evolution
Dinocephalosaurus
Tanystropheus
Triassic archosauromorphs
tetrapods
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