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Ultrasonic hearing and echolocation in the earliest toothed whales

机译:最早的齿鲸中的超声波听力和回声

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The evolution of biosonar (production of high-frequency sound and reception of its echo) was a key innovation of toothed whales and dolphins (Odontoceti) that facilitated phylogenetic diversification and rise to ecological predominance. Yet exactly when high-frequency hearing first evolved in odontocete history remains a fundamental question in cetacean biology. Here, we show that archaic odontocetes had a cochlea specialized for sensing high-frequency sound, as exemplified by an Oligocene xenorophid, one of the earliest diverging stem groups. This specialization is not as extreme as that seen in the crown Glade. Paired with anatomical correlates for high-frequency signal production in Xenorophidae, this is strong evidence that the most archaic toothed whales possessed a functional biosonar system, and that this signature adaptation of odontocetes was acquired at or soon after their origin.
机译:Biosonar的演变(其高频声音和接收到的回声)是齿鲸和海豚(Odontoceti)的关键创新,促进了系统发育多样化并升高了生态优势。 然而,当在Odontocete历史中首次发展的高频听力仍然是鲸类生物学中的基本问题。 在这里,我们表明,古代odontocetes具有专门用于感测高频声音的耳蜗,如寡聚蛋白突发,最早发散的茎组中的一个。 这种专业化并不像皇冠林间隙所看到的那么极端。 与卵毒素的高频信号产生配对,这是最有力的证据表明,最古老的齿鲸具有功能性生物系统,并且在原产地之后或不久地获得了这种签名适应Odontocetes。

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