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生态学和信号结构驱动同步显示的进化。

Ecology and signal structure drive the evolution of synchronous displays.

机构信息

Research School of Biology, The Australian National University, Canberra, ACT 0200, Australia.

Programa de Pós-Graduação em Ecologia e Conservação, Universidade Federal do Paraná, Curitiba, PR, 81531-990, Brazil.

出版信息

Evolution. 2020 Feb;74(2):434-446. doi: 10.1111/evo.13841. Epub 2019 Sep 20.

Abstract

Animal synchrony is found in phylogenetically distant animal groups, indicating behavioral adaptations to different selective pressures and in different signaling modalities. A notable example of synchronous display is found in fiddler crabs in that males wave their single enlarged claw during courtship. They present species-specific signals, which are composed of distinctive movement signatures. Given that synchronous waving has been reported for several fiddler crab species, the display pattern could influence the ability of a given species to sufficiently adjust wave timing to allow for synchrony. In this study, we quantified the wave displays of fiddler crabs to predict their synchronous behavior. We combined this information with the group's phylogenetic relationships to trace the evolution of display synchrony in an animal taxon. We found no phylogenetic signal in interspecific variation in predicted wave synchrony, which mirrors the general nonphylogenetic pattern of synchrony across animal taxa. Interestingly, our analyses show that the phenomenon of synchronization stems from the peculiarities of display pattern, mating systems, and the complexity of microhabitats. This is the first study to combine mathematical simulations and phylogenetic comparative methods to reveal how ecological factors and the mechanics of animal signals affect the evolution of the synchronous phenomena.

摘要

动物同步现象存在于亲缘关系较远的动物群体中,表明动物行为适应了不同的选择压力和不同的信号方式。在招潮蟹中,雄性在求偶时挥舞着单一的特化大螯,这是一个显著的同步展示例子。它们展示出具有物种特异性的信号,这些信号由独特的运动特征组成。鉴于已经报道了几种招潮蟹物种存在同步挥舞现象,这种展示模式可能会影响特定物种调整挥舞时间以实现同步的能力。在这项研究中,我们量化了招潮蟹的挥舞动作,以预测它们的同步行为。我们将这些信息与群体的系统发育关系相结合,以追踪动物分类群中展示同步性的进化。我们没有发现预测波同步性的种间变异存在系统发育信号,这与动物分类群中同步性的一般非系统发育模式相吻合。有趣的是,我们的分析表明,同步现象源于展示模式、交配系统和微生境复杂性的特殊性。这是首次结合数学模拟和系统发育比较方法来揭示生态因素和动物信号力学如何影响同步现象的进化。

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