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Exploring the hidden landscape of female preferences for complex signals

机译:探索复杂信号的女性偏好隐藏景观

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A major challenge in evolutionary biology is explaining the origins of complex phenotypic diversity. In animal communication, complex signals may evolve from simpler signals because novel signal elements exploit preexisting biases in receivers’ sensory systems. Investigating the shape of female preference functions for novel signal characteristics is a powerful, but underutilized, method to describe the adaptive landscape potentially guiding complex signal evolution.We measured female preference functions for characteristics of acoustic appendages added to male calling songs in the grasshopper Chorthippus biguttulus, which naturally produces only simple songs. We discovered both hidden preferences for and biases against novel complex songs, and identified rules governing song attractiveness based on multiple characteristics of both the base song and appendage. The appendage’s temporal position and duration were especially important: long appendages preceding the song often made songs less attractive, while following appendages were neutral or weakly attractive. Appendages had stronger effects on songs of shorter duration, but did not restore the attractiveness of very unattractive songs. We conclude that sensory biases favor, within predictable limits, the evolution of complex songs in grasshoppers. The function-valued approach is an important tool in determining the generality of these limits in other taxa and signaling modalities.
机译:进化生物学的主要挑战是解释复杂表型多样性的起源。在动物通信中,复杂信号可能从更简单的信号演变,因为新颖的信号元件在接收器感官系统中利用预先存在的偏差。研究新型信号特性的女性偏好功能的形状是一种强大而未化的方法,用于描述潜在引导复杂信号演进的自适应景观。我们测量的女性偏好函数,用于添加到蚱蜢的男性呼叫歌曲中的声学附属物的特征,它自然产生简单的歌曲。我们发现了针对新型复杂歌曲的隐藏和偏见,并根据基础歌曲和附件的多种特征确定了歌曲吸引力的规则。附属的时间位置和持续时间尤为重要:在这首歌之前的长篇内容经常使歌曲减少吸引力,而在后面的附属物中是中性的或弱吸引力。附属物对较短持续时间的歌曲具有更强的影响,但没有恢复非常没有吸引力的歌曲的吸引力。我们得出结论,感官偏见有利于可预测的限制,蚱蜢中复杂歌曲的演变。功能值方法是确定其他分类群和信令模式中这些限制的一般性的重要工具。

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