Were Notosuchia (Pseudosuchia, Crocodylomorpha) warm-blooded? A palaeohistological analysis suggests ectothermy - Sorbonne Université Accéder directement au contenu
Article Dans Une Revue Biological Journal of the Linnean Society Année : 2020

Were Notosuchia (Pseudosuchia, Crocodylomorpha) warm-blooded? A palaeohistological analysis suggests ectothermy

Résumé

Most Notosuchia were active terrestrial predators. A few were semi-aquatic, or were insectivorous, omnivorous or herbivorous. A question relative to their thermometabolism remains to be answered: were Notosuchia warm-blooded? Here we use quantitative bone palaeohistology to answer this question. Two variables were used as proxies to infer thermometabolism: resting metabolic rate and red blood cell dimensions. Resting metabolic rate was inferred using relative primary osteon area and osteocyte size, shape and density. Blood cell dimensions were inferred using harmonic mean canal diameter and minimum canal diameter. All inferences were performed using phylogenetic eigenvector maps. Both sets of analyses suggest that the seven species of Notosuchia sampled in this study were ectotherms. Given that extant Neosuchia (their sister group) are also ectotherms, and that archosaurs were primitively endotherms, parsimony suggests that endothermy may have been lost at the node Metasuchia (Notosuchia–Neosuchia) by the Early Jurassic. Semi-aquatic taxa such as Pepesuchus may have had thermoregulatory strategies similar to those of recent crocodylians, whereas the terrestrial taxa (Araripesuchus, Armadillosuchus, Iberosuchus, Mariliasuchus, Stratiotosuchus) may have been thermoregulators similar to active predatory varanids. Thermal inertia may have contributed to maintaining a stable temperature in large notosuchians such as Baurusuchus.
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hal-03329989 , version 1 (31-08-2021)

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Jorge Cubo, Mariana V A Sena, Paul Aubier, Guillaume Houee, Penelope Claisse, et al.. Were Notosuchia (Pseudosuchia, Crocodylomorpha) warm-blooded? A palaeohistological analysis suggests ectothermy. Biological Journal of the Linnean Society, 2020, 131 (1), pp.154-162. ⟨10.1093/biolinnean/blaa081⟩. ⟨hal-03329989⟩
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