首页> 外文期刊>Proceedings of the Royal Society of London. Biological sciences >Sexual selection explains sex-specific growth plasticity and positive allometry for sexual size dimorphism in a reef fish.
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Sexual selection explains sex-specific growth plasticity and positive allometry for sexual size dimorphism in a reef fish.

机译:性选择可以解释珊瑚鱼中性大小二型性的特定性别生长可塑性和正异位性。

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In 1950, Rensch noted that in clades where males are the larger sex, sexual size dimorphism (SSD) tends to be more pronounced in larger species. This fundamental allometric relationship is now known as 'Rensch's rule'. While most researchers attribute Rensch's rule to sexual selection for male size, experimental evidence is lacking. Here, we suggest that ultimate hypotheses for Rensch's rule should also apply to groups of individuals and that individual trait plasticity can be used to test those hypotheses experimentally. Specifically, we show that in the sex-changing fish Parapercis cylindrica, larger males have larger harems with larger females, and that SSD increases with harem size. Thus, sexual selection for male body size is the ultimate cause of sexual size allometry. In addition, we experimentally illustrate a positive relationship between polygyny potential and individual growth rate during sex change from female to male. Thus, sexual selection is the ultimate cause of variation in growth rate, and variation in growth rate is the proximate cause of sexual size allometry. Taken together, our results provide compelling evidence in support of the sexual selection hypothesis for Rensch's rule and highlight the potential importance of individual growth modification in the shaping of morphological patterns in Nature.
机译:1950年,伦施(Rensch)注意到,在雄性较大的进化枝中,较大个体的性大小二态性(SSD)往往更为明显。这种基本的异形关系现在称为“伦施法则”。尽管大多数研究人员将伦施的规则归因于男性大小的性选择,但缺乏实验证据。在这里,我们建议针对伦施法则的最终假设也应适用于个人群体,并且可以使用个体性状可塑性来实验性地检验那些假设。具体而言,我们表明,在变性鱼中,超大男性的后宫较大,雌性较大,并且SSD随后宫大小而增加。因此,对男性体型进行性选择是性尺寸变态的最终原因。此外,我们通过实验说明了从女性到男性的性别变化期间,一夫多妻制潜力与个人成长率之间存在正相关关系。因此,性别选择是增长速度变化的最终原因,而增长速度的变化是性行为异度的最直接原因。综上所述,我们的研究结果提供了令人信服的证据来支持伦施法则的性选择假设,并突出了个体生长修饰对自然形态形态形成的潜在重要性。

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