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Sexual selection drives the evolution of antiaphrodisiac pheromones in butterflies

机译:性选择驱动蝴蝶抗春药信息素的进化

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Competition for mates has resulted in sophisticated mechanisms of male control over female reproduction. Antiaphrodisiacs are pheromones transferred from males to females during mating that reduce attractiveness of females to subsequent courting males. Antiaphrodisiacs generally help unreceptive females reduce male harassment. However, lack of control over pheromone release by females and male control over the amount transferred provides males an opportunity to use antiaphrodisiacs to delay remating by females that have returned to a receptive state. We propose a model for the evolution of antiaphrodisiacs under the influence of intrasexual selection, and determine whether changes in this signal in 11 species of Heliconius butterflies are consistent with two predictions of the model. First, we find that as predicted, male-contributed chemical mixtures are complex and highly variable across species, with limited phylogenetic signal. Second, differences in rates of evolution in pheromone composition between two major clades of Heliconius are as expected: the clade with a greater potential for male-male competition (polyandrous) shows a faster rate of divergence than the one with typically monoandrous mating system. Taken together, our results provide evidence that for females, antiaphrodisiacs can be both honest signals of receptivity (helping reduce harassment) and chastity belts (a male-imposed reduction in remating).
机译:对伴侣的竞争导致了男性控制女性生殖的复杂机制。壮阳药是在交配过程中从雄性转移到雌性的信息素,会降低雌性对随后求爱的雄性的吸引力。壮阳药通常可以帮助不易接受的女性减少男性的骚扰。然而,雌性对信息素释放的缺乏控制以及雄性对转移量的控制,为雄性提供了使用抗壮阳药来延迟已恢复到接受状态的雌性再交配的机会。我们提出了一种抗性欲在雌雄同体选择影响下进化的模型,并确定11种Heliconius蝴蝶中该信号的变化是否与该模型的两个预测一致。首先,我们发现,正如所预测的那样,雄性贡献的化学混合物在整个物种中是复杂且高度可变的,且系统发生信号有限。其次,Heliconius的两个主要进化枝之间信息素组成的进化速率差异是可以预料的:具有较强竞争潜力的进化枝(一夫多妻制)与典型一交配偶系统相比,具有更快的发散率。两者合计,我们的结果提供了证据,对于女性而言,抗壮阳药既可以是诚实的接受信号(有助于减少骚扰),也可以是贞操带(男性施加的减少交往)的诚实信号。

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