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Antagonistic evolution in an aposematic predator–prey signaling system

机译:惯性捕食-被捕食信号系统中的对立演化

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Warning signals within species, such as the bright colors of chemically defended animals, are usually considered mutualistic, monomorphic traits. Such a view is however increasingly at odds with the growing empirical literature, showing nontrivial levels of signal variation within prey populations. Key to understanding this variation, we argue, could be a recognition that toxicity levels frequently vary within populations because of environmental heterogeneity. Inequalities in defense may undermine mutualistic monomorphic signaling, causing evolutionary antagonism between loci that determine appearance of less well-defended and better defended prey forms within species. In this article, we apply a stochastic model of evolved phenotypic plasticity to the evolution of prey signals. We show that when toxicity levels vary, then antagonistic interactions can lead to evolutionary conflict between alleles at different signaling loci, causing signal evolution, "red queen-like" evolutionary chase, and one or more forms of signaling equilibria. A key prediction is that variation in the way that predators use information about toxicity levels in their attack behaviors profoundly affects the evolutionary characteristics of the prey signaling systems. Environmental variation is known to cause variation in many qualities that organisms signal; our approach may therefore have application to other signaling systems.
机译:物种内的警告信号,例如化学防御动物的鲜艳颜色,通常被认为是互惠的,单态的特征。然而,这种观点与越来越多的经验文献相矛盾,后者显示了猎物种群中信号变化的非平凡水平。我们认为,理解这种变化的关键可能是认识到,由于环境异质性,种群中的毒性水平经常变化。防御中的不平等可能会破坏互惠的单态信号,从而导致基因座之间的进化拮抗作用,从而决定物种中防御不力和防御性更好的猎物形式的出现。在本文中,我们将演化表型可塑性的随机模型应用于猎物信号的演化。我们表明,当毒性水平发生变化时,拮抗作用会导致不同信号传导基因座之间的等位基因之间发生进化冲突,从而导致信号进化,“红色皇后样”进化追赶和一种或多种形式的信号传导平衡。一个关键的预测是,捕食者在其攻击行为中使用有关毒性水平信息的方式的变化会深刻影响猎物信号系统的进化特征。已知环境变化会导致生物体发出多种信号,从而导致质量变化。因此,我们的方法可能适用于其他信令系统。

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