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Oxygen isotopes suggest elevated thermometabolism within multiple Permo-Triassic therapsid clades

机译:氧同位素表明多个Permo-Triassic治疗性进化枝内的热代谢增加

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摘要

The only true living endothermic vertebrates are birds and mammals, which produce and regulate their internal temperature quite independently from their surroundings. For mammal ancestors, anatomical clues suggest that endothermy originated during the Permian or Triassic. Here we investigate the origin of mammalian thermoregulation by analysing apatite stable oxygen isotope compositions (δ18Op) of some of their Permo-Triassic therapsid relatives. Comparing of the δ18Op values of therapsid bone and tooth apatites to those of co-existing non-therapsid tetrapods, demonstrates different body temperatures and thermoregulatory strategies. It is proposed that cynodonts and dicynodonts independently acquired constant elevated thermometabolism, respectively within the Eucynodontia and Lystrosauridae + Kannemeyeriiformes clades. We conclude that mammalian endothermy originated in the Epicynodontia during the middle-late Permian. Major global climatic and environmental fluctuations were the most likely selective pressures on the success of such elevated thermometabolism.>DOI:
机译:唯一真正存在的吸热脊椎动物是鸟类和哺乳动物,它们与周围环境完全独立地产生和调节其内部温度。对于哺乳动物的祖先,解剖学线索表明吸热起源于二叠纪或三叠纪。在这里,我们通过分析其一些Permo-Triassic治疗性亲戚的磷灰石稳定氧同位素组成(δ 18 Op),来研究哺乳动物体温调节的起源。比较治疗性骨骼和牙齿磷灰石的δ 18 Op值与共存的非治疗性四足动物的δ 18 Op值,发现了不同的体温和体温调节策略。有人提出,犬齿龙和双齿犬齿分别在真齿龙科和纤毛龙科+ Kannemeyeriiformes进化枝中独立获得恒定的升高的热代谢。我们得出的结论是,哺乳动物的吸热起源于二叠纪中晚期的上裸露齿。全球主要的气候和环境波动是此类热代谢成功的最可能的选择压力。> DOI:

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