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首页> 外文期刊>Frontiers in Neuroscience >Rhythm Generation and Rhythm Perception in Insects: The Evolution of Synchronous Choruses
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Rhythm Generation and Rhythm Perception in Insects: The Evolution of Synchronous Choruses

机译:昆虫的节奏产生和节奏感知:同步合唱的演变

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摘要

Insect sounds dominate the acoustic environment in many natural habitats such as rainforests or meadows on a warm summer day. Among acoustic insects, usually males are the calling sex; they generate signals that transmit information about the species-identity, sex, location, or even sender quality to conspecific receivers. Males of some insect species generate signals at distinct time intervals, and other males adjust their own rhythm relative to that of their conspecific neighbors, which leads to fascinating acoustic group displays. Although signal timing in a chorus can have important consequences for the calling energetics, reproductive success and predation risk of individuals, still little is known about the selective forces that favor the evolution of insect choruses. Here, we review recent advances in our understanding of the neuronal network responsible for acoustic pattern generation of a signaler, and pattern recognition in receivers. We also describe different proximate mechanisms that facilitate the synchronous generation of signals in a chorus and provide examples of suggested hypotheses to explain the evolution of chorus synchrony in insects. Some hypotheses are related to sexual selection and inter-male cooperation or competition, whereas others refer to the selection pressure exerted by natural predators. In this article, we summarize the results of studies that address chorus synchrony in the tropical katydid Mecopoda elongata , where some males persistently signal as followers although this reduces their mating success.
机译:在温暖的夏日,昆虫的声音主导着许多自然栖息地(如雨林或草地)的声学环境。在声昆虫中,通常是雄性。它们产生信号,将有关物种身份,性别,位置甚至发送者质量的信息发送给特定的接收者。某些昆虫的雄性会在不同的时间间隔内产生信号,而其他雄性会相对于同种邻居调整自己的节奏,从而引起迷人的声群显示。尽管合唱中的信号时机可能对个体的呼唤能量,生殖成功和捕食风险产生重要影响,但对促进昆虫合唱进化的选择力知之甚少。在这里,我们回顾了对神经元网络的理解方面的最新进展,这些神经元网络负责信号发声器的声学模式生成以及接收器中的模式识别。我们还描述了不同的邻近机制,这些机制有助于在合唱中同步生成信号,并提供建议的假设示例来解释昆虫中合唱同步的演变。一些假设与性选择和男性间的合作或竞争有关,而另一些则指自然掠食者施加的选择压力。在本文中,我们总结了针对热带长吻鳄Mecopoda elongata中合唱同步性的研究结果,其中一些雄性持续发出跟随者的信号,尽管这降低了他们的交配成功率。

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