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  5. Highly aquatic marine stem archosaur with soft tissue preservation

Highly aquatic marine stem archosaur with soft tissue preservation

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Resource type
Journal article
Creator (person)
Wang, Wei
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Fraser, Nicholas C
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Spiekman, Stephan N F
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Zhiheng, Li
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Rieppel, Olivier
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Date published
July 18, 2026
Abstract

Archosauromorpha is a dominant reptile clade that primarily occupied terrestrial ecosystems with limited secondarily aquatic invasions that are poorly known. Here we report on a well-preserved Triassic reptile representing the earliest stem-archosaur to evolve unequivocal aquatic specializations. This taxon exhibits a suite of aquatic adaptations previously unknown in stem-archosaurs, such as hyperphalangy, enhanced paddle-like forelimbs, and a loss of articulation between the sacrum and pelvis, indicating an advanced aquatic lifestyle. The fossil exhibits the oldest known stomach, liver, and intestinal preservations in reptiles. Our findings provide unexpected insights into the early aquatic diversification of Archosauromorpha during the Triassic marine ecosystem recovery and highlight a conservative gastrointestinal system in an early Mesozoic vertebrate. In the absence of clear terrestrial members of the other major Mesozoic marine reptile lineages (e.g., ichthyosaurs and sauropterygians), this discovery provides an unambiguous example of such a lineage including both decidedly terrestrial and extensively marine forms, providing tantalizing evidence for the land-to-sea transition in Triassic reptiles.

Organisational unit
Natural Sciences
Volume
12
Issue
31
Article number
eaeb7528
Publisher
American Association For The Advancement of Science
eISSN
2375-2548
Date accepted
June 25, 2026
Related URL
https://www.nms.ac.uk/profile/dr-nick-fraser
Rights statement
In Copyright
Licence
CC BY-NC 4.0
DOI
10.1126/sciadv.aeb7528
Keywords
archosaur
soft tissue preservation
Archosauromorpha
Triassic reptile
ecology
evolution
Library of Congress classification
QL
Additional information
Full text available via the official URL
Managed by the British Library and supported by the AHRC

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