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Innate recognition of water bodies in echolocating bats

机译:回声定位蝙蝠中水体的先天识别

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In the course of their lives, most animals must find different specific habitat and microhabitat types for survival and reproduction. Yet, in vertebrates, little is known about the sensory cues that mediate habitat recognition. In free flying bats the echolocation of insect-sized point targets is well understood, whereas how they recognize and classify spatially extended echo targets is currently unknown. In this study, we show how echolocating bats recognize ponds or other water bodies that are crucial for foraging, drinking and orientation. With wild bats of 15 different species (seven genera from three phylogenetically distant, large bat families), we found that bats perceived any extended, echo-acoustically smooth surface to be water, even in the presence of conflicting information from other sensory modalities. In addition, naive juvenile bats that had never before encountered a water body showed spontaneous drinking responses from smooth plates. This provides the first evidence for innate recognition of a habitat cue in a mammal.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:在生活中,大多数动物必须找到不同的特定生境和微生境类型才能生存和繁殖。然而,在脊椎动物中,关于介导栖息地识别的感觉线索知之甚少。在自由飞行的蝙蝠中,昆虫大小的点目标的回声定位已广为人知,而它们如何识别和分类空间扩展回声目标却是未知的。在这项研究中,我们显示了回声蝙蝠如何识别池塘或其他对觅食,饮水和定向至关重要的水体。使用15种不同物种(来自三个距离较远的大型蝙蝠科的七个属)的野生蝙蝠,我们发现,即使存在其他感官方式相矛盾的信息,蝙蝠也能感知到任何扩展的,回声听觉上光滑的表面都是水。此外,以前从未遇到过水体的幼稚蝙蝠表现出自光滑盘子的自发饮水反应。这为先天识别哺乳动物中的栖息地线索提供了第一个证据。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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