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Flash signal evolution in Photinus fireflies: Character displacement and signal exploitation in a visual communication system

机译:萤火虫萤火虫的闪光信号演变:视觉通信系统中的字符位移和信号利用

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摘要

Animal communication is an intriguing topic in evolutionary biology. In this comprehensive study of visual signal evolution, we used a phylogenetic approach to study the evolution of the flash communication system of North American fireflies. The North American firefly genus Photinus contains 35 described species with simple ON-OFF visual signals, and information on habitat types, sympatric congeners, and predators. This makes them an ideal study system to test hypotheses on the evolution of male and female visual signal traits. Our analysis of 34 Photinus species suggests two temporal pattern generators: one for flash duration and one for flash intervals. Reproductive character displacement was a main factor for signal divergence in male flash duration among sympatric Photinus species. Male flash pattern intervals (i.e., the duration of the dark periods between signals) were positively correlated with the number of sympatric Photuris fireflies, which include predators of Photinus. Females of different Photinus species differ in their response preferences to male traits. As in other communication systems, firefly male sexual signals seem to be a compromise between optimizing mating success (sexual selection) and minimizing predation risk (natural selection). An integrative model for Photinus signal evolution is proposed.
机译:动物交流是进化生物学中一个有趣的话题。在对视觉信号演化的全面研究中,我们使用了系统发育方法来研究北美萤火虫的闪光通信系统的演化。北美萤火虫属Photinus包含35个描述的物种,具有简单的开-关视觉信号,以及有关栖息地类型,同胞同族和掠食者的信息。这使它们成为检验关于男性和女性视觉信号特征演变的假设的理想研究系统。我们对34种P属物种的分析表明,有两种时间模式生成器:一种用于闪烁持续时间,另一种用于闪烁间隔。生殖性状位移是同胞Photinus种间雄性闪光持续时间信号发散的主要因素。雄性闪光模式间隔(即信号之间的暗期持续时间)与同胞Photuris萤火虫的数量呈正相关,其中包括Photinus的天敌。不同Photinus物种的雌性对男性性状的反应偏好不同。与其他通信系统一样,萤火虫的雄性信号似乎是在优化交配成功(性选择)和最小化捕食风险(自然选择)之间的折衷方案。提出了Photinus信号进化的集成模型。

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