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Integrating Ontogeny of Echolocation and Locomotion Gives Unique Insights into the Origin of Bats

机译:整合了回声和运动的本体论,为蝙蝠的起源提供了独特的见解

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The evolutionary sequence of events that led to flight and echolocation in bats is a compelling question in biology. Fundamentally lacking from this discussion is the ontogeny of how these two systems become functionally integrated producing an evolutionary developmental model. We build such a model by integrating growth and development of the cochlea, larynx, and sound production with the ontogeny of locomotion in newborn bats. In addition, we use available fossil and molecular data along with patterns of high frequency vocalization in extant mammals to model probable evolutionary transitions in bats. We find clear evidence that the ability to hear high frequency echolocation-like sounds preceded the ability to produce it and that a simple echolocation system was likely inherited from a shrew-like ancestor and was not an in situ evolutionary innovation of bats. Refinement of this system coevolved with sustained flight, both ontogenetically and evolutionarily, leading to the sophisticated echolocation observed today.
机译:导致蝙蝠飞行和回声定位的事件的进化顺序是生物学中一个令人信服的问题。从这个讨论中根本缺乏的是这两个系统如何在功能上集成以产生进化发展模型的本体论。我们通过整合新生蝙蝠的耳蜗,喉和声音的产生与运动的个体来建立这样的模型。此外,我们使用现有的化石和分子数据以及现存哺乳动物的高频发声模式来模拟蝙蝠的可能进化过渡。我们找到了明确的证据,即听到高频回声定位样声音的能力先于它的产生能力,而且简单的回声定位系统很可能是从类似rew的祖先那里继承下来的,而不是蝙蝠的原位进化创新。该系统的完善与持续飞行相伴而生,无论是在本体上还是在进化上,都导致了当今观察到的复杂的回声定位。

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