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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Proximate causes of Rensch's rule: Does sexual size dimorphism in arthropods result from sex differences in development time?
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Proximate causes of Rensch's rule: Does sexual size dimorphism in arthropods result from sex differences in development time?

机译:Rensch规则的直接起因:节肢动物的性别大小二态性是否是由于发育时间的性别差异引起的?

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摘要

A prominent interspecific pattern of sexual size dimorphism (SSD) is Rensch's rule, according to which male body size is more variable or evolutionarily divergent than female body size. Assuming equal growth rates of males and females, SSD would be entirely mediated, and Rensch's rule proximately caused, by sexual differences in development times, or sexual bimaturism (SBM), with the larger sex developing for a proportionately longer time. Only a subset of the seven arthropod groups investigated in this study exhibits Rensch's rule. Furthermore, we found only a weak positive relationship between SSD and SBM overall, suggesting that growth rate differences between the sexes are more important than development time differences in proximately mediating SSD in a wide but by no means comprehensive range of arthropod taxa. Except when protandry is of selective advantage ( as in many butterflies, Hymenoptera, and spiders), male development time was equal to ( in water striders and beetles) or even longer than ( in drosophilid and sepsid flies) that of females. Because all taxa show female-biased SSD, this implies faster growth of females in general, a pattern markedly different from that of primates and birds (analyzed here for comparison). We discuss three potential explanations for this pattern based on life-history trade-offs and sexual selection.
机译:Rensch的定律是性大小二态性(SSD)的一个突出的种间模式,根据该规则,男性的身体大小比女性的身体大小更具可变性或进化差异。假设男性和女性的增长率相等,则SSD会完全由中介作用,并且伦施法则是由发育时间的性别差异或性双性恋(SBM)引起的,而较大的性别会在较长的时间内发展。在这项研究中调查的七个节肢动物群体中,只有一部分表现出伦施法则。此外,我们发现SSD和SBM总体之间的关系呈微弱的正向关系,这表明,在广泛但绝非全面的节肢动物类群中,性别之间的增长率差异比在接近调节SSD的发育时间差异更重要。除非protandry具有选择性优势(如许多蝴蝶,膜翅目和蜘蛛中的优势),否则男性的发育时间等于(在str类和甲虫中)甚至比(在果蝇和败血症中的蝇)更长。因为所有分类单元都显示雌性偏向的SSD,所以这通常意味着雌性的生长更快,这种模式与灵长类和鸟类明显不同(在此处进行分析比较)。我们基于生活史的权衡和性选择讨论了这种模式的三种可能的解释。

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