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Selection for predation, not female fecundity, explains sexual size dimorphism in the orchid mantises

机译:选择捕食而不是雌性繁殖力可以解释兰花螳螂的性别大小二态性

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Here we reconstruct the evolutionary shift towards floral simulation in orchid mantises and suggest female predatory selection as the likely driving force behind the development of extreme sexual size dimorphism. Through analysis of body size data and phylogenetic modelling of trait evolution, we recovered an ancestral shift towards sexual dimorphisms in both size and appearance in a lineage of flower-associated praying mantises. Sedentary female flower mantises dramatically increased in size prior to a transition from camouflaged, ambush predation to a floral simulation strategy, gaining access to, and visually attracting, a novel resource: large pollinating insects. Male flower mantises, however, remained small and mobile to facilitate mate-finding and reproductive success, consistent with ancestral male life strategy. Although moderate sexual size dimorphisms are common in many arthropod lineages, the predominant explanation is female size increase for increased fecundity. However, sex-dependent selective pressures acting outside of female fecundity have been suggested as mechanisms behind niche dimorphisms. Our hypothesised role of predatory selection acting on females to generate both extreme sexual size dimorphism coupled with niche dimorphism is novel among arthropods.
机译:在这里,我们重建了兰花螳螂向花卉模拟的进化转变,并建议女性掠食性选择作为极端性大小二态性发展的可能驱动力。通过对人体大小数据的分析和性状进化的系统进化模型,我们发现了与花朵相关的螳螂谱系中祖先向大小和外观上的性二态性转变。久坐的雌花螳螂在从伪装的伏击捕食过渡到花卉模拟策略之前,其大小急剧增加,从而获得并视觉吸引了一种新颖的资源:大型授粉昆虫。然而,雄花螳螂仍然很小且可以移动,以促进寻找配偶和繁殖成功,这与祖先的雄性生活策略一致。尽管在许多节肢动物世系中普遍存在中等的性别大小二态性,但主要的解释是雌性大小增加以增加生殖力。然而,已经提出了在女性生殖力之外起作用的依赖性别的选择性压力是利基二态性背后的机制。在节肢动物中,我们假设掠食性选择作用于女性以产生极端的性大小双态和生态位双态的作用在节肢动物中是新颖的。

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