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在斑胸草雀中识别异性的叫声。

Individual recognition of opposite sex vocalizations in the zebra finch.

机构信息

Max Planck Institute for Ornithology, Department Gahr - Behavioural Neurobiology, Seewiesen, 82319, Germany.

出版信息

Sci Rep. 2017 Jul 17;7(1):5579. doi: 10.1038/s41598-017-05982-x.

Abstract

Individual vocal recognition plays an important role in the social lives of many vocally active species. In group-living songbirds the most common vocalizations during communal interactions are low-intensity, soft, unlearned calls. Being able to tell individuals apart solely from a short call would allow a sender to choose a specific group member to address, resulting in the possibility to form complex communication networks. However, little research has yet been carried out to discover whether soft calls contain individual identity. In this study, males and females of zebra finch pairs were tested with six vocalization types - four different soft calls, the distance call and the male song - to investigate whether they are able to distinguish individuals of the opposite sex. For both sexes, we provide the first evidence of individual vocal recognition for a zebra finch soft unlearned call. Moreover, while controlling for habituation and testing for repeatability of the findings, we quantify the effects of hitherto little studied variables such as partners' vocal exchange previous to the experiment, spectral content of playback calls and quality of the answers. We suggest that zebra finches can recognize individuals via soft vocalizations, therefore allowing complex directed communication within vocalizing flocks.

摘要

个体发声识别在许多发声活跃物种的社会生活中起着重要作用。在群体生活的鸣禽中,在社交互动中最常见的是低强度、柔和、非习得的叫声。仅从一个简短的叫声就能分辨出个体,这将允许发送者选择特定的群体成员进行交流,从而有可能形成复杂的沟通网络。然而,目前还很少有研究发现柔和的叫声是否包含个体身份。在这项研究中,雌雄斑马雀对六种发声类型进行了测试——四种不同的柔和叫声、距离叫声和雄性歌声——以调查它们是否能够分辨出异性个体。对于雌雄两性,我们首次提供了对斑马雀柔和非习得叫声的个体发声识别的证据。此外,在控制习惯化和测试发现的可重复性的同时,我们量化了迄今为止研究较少的变量的影响,如实验前伴侣的发声交换、回放叫声的频谱内容和回答的质量。我们认为,斑马雀可以通过柔和的叫声来识别个体,从而允许在鸣叫的鸟群中进行复杂的定向交流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db08/5514125/1d87d4ad3c37/41598_2017_5982_Fig1_HTML.jpg

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