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Alarming features: birds use specific acoustic properties to identify heterospecific alarm calls

机译:警报功能:鸟类使用特定的声学特性来识别异种警报

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摘要

Vertebrates that eavesdrop on heterospecific alarm calls must distinguish alarms from sounds that can safely be ignored, but the mechanisms for identifying heterospecific alarm calls are poorly understood. While vertebrates learn to identify heterospecific alarms through experience, some can also respond to unfamiliar alarm calls that are acoustically similar to conspecific alarm calls. We used synthetic calls to test the role of specific acoustic properties in alarm call identification by superb fairy-wrens, Malurus cyaneus. Individuals fled more often in response to synthetic calls with peak frequencies closer to those of conspecific calls, even if other acoustic features were dissimilar to that of fairy-wren calls. Further, they then spent more time in cover following calls that had both peak frequencies and frequency modulation rates closer to natural fairy-wren means. Thus, fairy-wrens use similarity in specific acoustic properties to identify alarms and adjust a two-stage antipredator response. Our study reveals how birds respond to heterospecific alarm calls without experience, and, together with previous work using playback of natural calls, shows that both acoustic similarity and learning are important for interspecific eavesdropping. More generally, this study reconciles contrasting views on the importance of alarm signal structure and learning in recognition of heterospecific alarms.
机译:窃听异种警报呼叫的脊椎动物必须将警报与可以安全忽略的声音区分开,但是识别异种警报呼叫的机制却知之甚少。尽管脊椎动物通过经验学会识别异种警报,但有些脊椎动物也可以响应听觉上与同种警报相似的陌生警报。我们使用合成电话来测试特定声学特性在高超的童话-,Malurus cyaneus的警报电话识别中的作用。即使其他声学特征与童话般的呼声不一样,人们也会更多地逃避合成呼声,其峰值频率更接近特定呼声。此外,他们随后花了更多时间在掩护之后的呼叫上,这些呼叫的峰值频率和频率调制率都接近自然的means手段。因此,仙女在特定的声学特性中使用相似性来识别警报并调整两阶段反捕食者的响应。我们的研究揭示了鸟类如何在没有经验的情况下如何响应异种警报,并且与以前使用自然声音回放的工作一起显示,声学相似性和学习对于种间监听非常重要。更广泛地说,这项研究调和了关于警报信号结构和学习在识别异种警报方面的重要性的不同观点。

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