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Aerobic performance in tinamous is limited by their small heart. A novel hypothesis in the evolution of avian flight

机译:他们的小心脏限制了有氧运动的表现。鸟类飞行进化的新假设

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摘要

Some biomechanical studies from fossil specimens suggest that sustained flapping flight of birds could have appeared in their Mesozoic ancestors. We challenge this idea because a suitable musculoskeletal anatomy is not the only requirement for sustained flapping flight. We propose the “heart to fly” hypothesis that states that sustained flapping flight in modern birds required an enlargement of the heart for the aerobic performance of the flight muscles and test it experimentally by studying tinamous, the living birds with the smallest hearts. The small ventricular size of tinamous reduces cardiac output without limiting perfusion pressures, but when challenged to fly, the heart is unable to support aerobic metabolism (quick exhaustion, larger lactates and post-exercise oxygen consumption and compromised thermoregulation). At the same time, cardiac growth shows a crocodilian-like pattern and is correlated with differential gene expression in MAPK kinases. We integrate this physiological evidence in a new evolutionary scenario in which the ground-up, short and not sustained flapping flight displayed by tinamous represents an intermediate step in the evolution of the aerobic sustained flapping flight of modern birds.
机译:来自化石标本的一些生物力学研究表明,鸟类的持续拍打飞行可能已经出现在其中生代祖先中。我们挑战这个想法是因为合适的肌肉骨骼解剖并不是持续扑动的唯一要求。我们提出了“飞翔的心”假说,该假说指出,现代鸟类持续拍打飞行需要心脏扩大才能使飞行肌肉有氧运动,并通过研究心脏最小的活体鸟类来试验性地进行测试。较小的心室大小可在不限制灌注压力的情况下降低心输出量,但是当受到飞行挑战时,心脏无法支持有氧代谢(快速衰竭,较大的乳酸盐和运动后的氧气消耗以及体温调节受损)。同时,心脏生长显示出类似鳄鱼的模式,并且与MAPK激酶中的差异基因表达相关。我们将这种生理学证据整合到一个新的进化场景中,其中由皮毛动物显示的地面向上,短暂且不持续的拍打飞行代表了现代鸟类有氧持续拍打飞行进化的中间步骤。

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