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新工具提示哺乳动物恒温起源于中侏罗世:最先进技术的进步揭示了哺乳动物恒温进化模式随时间的变化:最先进技术的进步揭示了哺乳动物恒温进化模式随时间的变化。

New tools suggest a middle Jurassic origin for mammalian endothermy: Advances in state-of-the-art techniques uncover new insights on the evolutionary patterns of mammalian endothermy through time: Advances in state-of-the-art techniques uncover new insights on the evolutionary patterns of mammalian endothermy through time.

机构信息

School of Engineering and Materials Science, Queen Mary University of London, London, UK.

Department of Palaeontology, Institute for Geosciences, University of Bonn, Bonn, Germany.

出版信息

Bioessays. 2022 Apr;44(4):e2100060. doi: 10.1002/bies.202100060. Epub 2022 Feb 16.

Abstract

We suggest that mammalian endothermy was established amongst Middle Jurassic crown mammals, through reviewing state-of-the-art fossil and living mammal studies. This is considerably later than the prevailing paradigm, and has important ramifications for the causes, pattern, and pace of physiological evolution amongst synapsids. Most hypotheses argue that selection for either enhanced aerobic activity, or thermoregulation was the primary driver for synapsid physiological evolution, based on a range of fossil characters that have been linked to endothermy. We argue that, rather than either alternative being the primary selective force for the entirety of endothermic evolution, these characters evolved quite independently through time, and across the mammal family tree, principally as a response to shifting environmental pressures and ecological opportunities. Our interpretations can be tested using closely linked proxies for both factors, derived from study of fossils of a range of Jurassic and Cretaceous mammaliaforms and early mammals.

摘要

我们通过回顾最先进的化石和现生哺乳动物研究,提出哺乳动物的温血特征是在中侏罗世的哺乳动物冠群中确立的。这比流行的观点要晚得多,对合弓类动物的生理进化的原因、模式和速度有重要影响。大多数假说认为,无论是增强有氧活动还是体温调节的选择,都是合弓类动物生理进化的主要驱动力,这基于一系列与温血特征相关的化石特征。我们认为,这些特征不是温血进化的全部的主要选择力量,而是随着时间的推移和哺乳动物家族树的发展,相当独立地进化的,主要是作为对环境压力和生态机会变化的反应。我们的解释可以通过使用从一系列侏罗纪和白垩纪哺乳形类和早期哺乳动物的化石研究中得出的这两个因素的紧密相关的替代指标来检验。

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