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首页> 外文期刊>Evolutionary Biology >The Role of Sex-specific Plasticity in Shaping Sexual Dimorphism in a Long-lived Vertebrate, the Snapping Turtle Chelydra serpentina
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The Role of Sex-specific Plasticity in Shaping Sexual Dimorphism in a Long-lived Vertebrate, the Snapping Turtle Chelydra serpentina

机译:特定性别可塑性在塑造长寿脊椎动物鳄龟Chelydra serpentina的性二态性中的作用

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摘要

Sex-specific plasticity, the differential response that the genome of males and females may have to different environments, is a mechanism that can affect the degree of sexual dimorphism. Two adaptive hypotheses have been proposed to explain how sex-specific plasticity affects the evolution of sexual size dimorphism. The adaptive canalization hypothesis states that the larger sex exhibits lesser plasticity compared to the smaller sex due to strong directional selection for a large body size, which penalizes individuals attaining sub-optimal body sizes. The condition-dependence hypothesis states that the larger sex exhibits greater plasticity than the smaller sex due to strong directional selection for a large body size favoring a greater sensitivity as an opportunistic mechanism for growth enhancement under favorable conditions. While the relationship between sex-specific plasticity and sexual dimorphism has been studied mainly in invertebrates, its role in long-lived vertebrates has received little attention. In this study we tested the predictions derived from these two hypotheses by comparing the plastic responses of body size and shape of males and females of the snapping turtle (Chelydra serpentina) raised under common garden conditions. Body size was plastic, sexually dimorphic, and the plasticity was also sex-specific, with males exhibiting greater body size plasticity relative to females. Because snapping turtle males are larger than females, sexual size dimorphism in this species appears to be driven by an increased plasticity of the larger sex over the smaller sex as predicted by the condition-dependent hypothesis. However, male body size was enhanced under relatively limited resources, in contrast to expectations from this model. Body shape was also plastic and sexually dimorphic, however no sex by environment interaction was found in this case. Instead, plasticity of sexual shape dimorphism seems to evolve in parallel for males and females as both sexes responded similarly to different environments.
机译:性别特异性可塑性是男女基因组对不同环境可能具有的差异反应,是一种可影响性二态性程度的机制。已经提出了两个适应性假设来解释性别特异性可塑性如何影响性别大小二态性的演变。适应性渠化假说指出,由于较大的身材有力的方向选择,较大的性别比较小的性别表现出较小的可塑性,这会惩罚达到次佳身材的个体。条件依赖假说指出,较大的性别比较小的性别表现出更大的可塑性,这是由于针对大尺寸的身体有力的方向选择,有利于作为在有利条件下促进生长的机会机制的更高的敏感性。尽管主要在无脊椎动物中研究了特定于性别的可塑性和性二态性之间的关系,但其在长寿脊椎动物中的作用却鲜为人知。在这项研究中,我们通过比较在普通花园条件下饲养的鳄龟(Chelydra serpentina)的雄性和雌性的体型和大小对形状的塑性响应,检验了从这两个假设得出的预测。体型是可塑性的,具有两性性,并且可塑性也是特定于性别的,男性相对于女性表现出更大的体型可塑性。由于鳄龟的雄性比雌性大,因此该物种的性别大小二态性似乎是由条件依赖性假说所预测的,这是由于较大性别对较小性别的可塑性增加所致。但是,与该模型的预期相反,在相对有限的资源下,男性的体型有所增加。身体形状也是可塑性的,具有两性性,但是在这种情况下,未发现因环境相互作用而发生性行为。取而代之的是,男性和女性的性形状二态性的可塑性似乎并行发展,因为两种性别对不同环境的反应相似。

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