Inner ear biomechanics reveals a Late Triassic origin for mammalian endothermy

外温 生物 吸热 内淋巴 解剖 Natrix公司 温度调节 内耳 哺乳动物 哺乳动物进化 树獭 动物 进化生物学 生态学 古生物学 热力学 基因 生物化学 差示扫描量热法 物理
作者
Ricardo Nascimento Araújo,Romain David,Julien Benoit,Jacqueline K. Lungmus,Alexander Stoessel,Paul M. Barrett,Jessica A. Maisano,Eric G. Ekdale,Maeva J. Orliac,Zhe-Xi Luo,Agustín G. Martinelli,Eva Hoffman,Christian A. Sidor,Rui P. Martins,Fred Spoor,Kenneth D. Angielczyk
出处
期刊:Nature [Springer Nature]
卷期号:607 (7920): 726-731 被引量:7
标识
DOI:10.1038/s41586-022-04963-z
摘要

Endothermy underpins the ecological dominance of mammals and birds in diverse environmental settings1,2. However, it is unclear when this crucial feature emerged during mammalian evolutionary history, as most of the fossil evidence is ambiguous3,4,5,6,7,8,9,10,11,12,13,14,15,16,17. Here we show that this key evolutionary transition can be investigated using the morphology of the endolymph-filled semicircular ducts of the inner ear, which monitor head rotations and are essential for motor coordination, navigation and spatial awareness18,19,20,21,22. Increased body temperatures during the ectotherm–endotherm transition of mammal ancestors would decrease endolymph viscosity, negatively affecting semicircular duct biomechanics23,24, while simultaneously increasing behavioural activity25,26 probably required improved performance27. Morphological changes to the membranous ducts and enclosing bony canals would have been necessary to maintain optimal functionality during this transition. To track these morphofunctional changes in 56 extinct synapsid species, we developed the thermo-motility index, a proxy based on bony canal morphology. The results suggest that endothermy evolved abruptly during the Late Triassic period in Mammaliamorpha, correlated with a sharp increase in body temperature (5–9 °C) and an expansion of aerobic and anaerobic capacities. Contrary to previous suggestions3,4,5,6,7,8,9,10,11,12,13,14, all stem mammaliamorphs were most probably ectotherms. Endothermy, as a crucial physiological characteristic, joins other distinctive mammalian features that arose during this period of climatic instability28.
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