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Abdominal contents reveal Cretaceous crocodyliforms ate dinosaurs
[Display omitted] •Description of a new early-branching eusuchian from Australia.•New taxon named Confractosuchus sauroktonos gen. et sp. nov.•Tomography scans revealed its last meal was a juvenile ornithopod dinosaur.•Morphometric analysis identifies Confractosuchus as a macro-generalist. Crocodyli...
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Published in: | Gondwana research 2022-06, Vol.106, p.281-302 |
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Main Authors: | , , , , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | [Display omitted]
•Description of a new early-branching eusuchian from Australia.•New taxon named Confractosuchus sauroktonos gen. et sp. nov.•Tomography scans revealed its last meal was a juvenile ornithopod dinosaur.•Morphometric analysis identifies Confractosuchus as a macro-generalist.
Crocodylians are among Earth’s most successful hyper-carnivores, with their crocodyliform ancestors persisting since the Triassic. The diets of extinct crocodyliforms are typically inferred from distinctive bite-marks on fossil bone, which indicate that some species fed on contemporaneous dinosaurs. Nevertheless, the most direct dietary evidence (i.e. preserved gut contents) of these interactions in fossil crocodyliforms has been elusive. Here we report on a new crocodyliform, Confractosuchus sauroktonos gen. et sp. nov., from the Cenomanian (92.5–104 Ma) of Australia, with exceptionally preserved abdominal contents comprising parts of a juvenile ornithopod dinosaur. A phylogenetic analysis recovered Confractosuchus as the sister taxon to a clade comprising susisuchids and hylaeochampsids. The ornithopod remains displayed clear evidence of oral processing, carcass reduction (dismemberment) and bone fragmentation, which are diagnostic hallmarks of some modern crocodylian feeding behaviour. Nevertheless, a macro-generalist feeding strategy for Confractosuchus similar to extant crocodylians is supported by a morphometric analysis of the skull and reveals that dietary versatility accompanied the modular assembly of the modern crocodylian bauplan. Of further interest, these ornithopod bones represent the first skeletal remains of the group from the Winton Formation, previously only known from shed teeth and tracks, and may represent a novel taxon. |
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ISSN: | 1342-937X 1878-0571 |
DOI: | 10.1016/j.gr.2022.01.016 |