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在回声定位中性别很重要:Phyllostomus discolor(小尖吻蝠)中使用声学地标存在性别差异。

Sex matters in echoacoustic orientation: gender differences in the use of acoustic landmarks in Phyllostomus discolor (lesser spear-nosed bat).

机构信息

Auditory Neuroethology and Neurobiology, Institute of Zoology, University of Veterinary Medicine Hannover, Buenteweg 17, 30559, Hannover, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2011 May;197(5):531-9. doi: 10.1007/s00359-010-0573-x. Epub 2010 Aug 28.

Abstract

Sex-specific differences in orientation strategies are well known for several rodent and primate species with females relying more on landmarks when it comes to visually guided orientation, whereas males preferentially use Euclidean cues. We used the echolocating bat Phyllostomus discolor for a behavioural study on gender differences in the use of acoustic landmarks. The experimental animals (6 males, 6 females) had to learn and perform a simple orientational task, firstly in the absence of landmarks and subsequently in the presence of four acoustic landmarks of which one was occasionally removed during the critical experiment. The results presented here show that gender differences in the use of acoustic landmarks exist in P. discolor, which supports our hypothesis that the phenomenon is independent of the modality that is used to sense the environment during orientation. Therefore, our findings allow for the prediction of similar phenomena in other acoustically orienting mammals. Interestingly, due to the specific ecology of P. discolor, our results partially contradict the evolutionary theories on gender-specific orientation, as will be discussed. Finally, we consider our finding as being one of several important steps toward establishing bats as a new model organism in neuroscientific studies on allocentric spatial cognition in mammals.

摘要

性别的定向策略差异在几种啮齿动物和灵长类动物中是众所周知的,雌性在视觉导向定向时更依赖地标,而雄性则优先使用欧几里得线索。我们使用回声定位蝙蝠 Phyllostomus discolor 进行了一项关于使用声学地标时性别差异的行为研究。实验动物(6 只雄性,6 只雌性)必须学习并执行一个简单的定向任务,首先是在没有地标物的情况下,然后是在四个声学地标物的情况下进行,其中一个地标物在关键实验期间偶尔会被移除。这里呈现的结果表明,在 P. discolor 中存在使用声学地标物的性别差异,这支持了我们的假设,即这种现象独立于在定向过程中用于感知环境的模态。因此,我们的发现可以预测其他声学定向哺乳动物中类似的现象。有趣的是,由于 P. discolor 的特定生态,我们的结果部分与关于性别特定定向的进化理论相矛盾,我们将在讨论中进行阐述。最后,我们认为我们的发现是将蝙蝠确立为哺乳动物的一种新的模型生物在关于无参照空间认知的神经科学研究中的几个重要步骤之一。

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