首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Allometry for Sexual Size Dimorphism: Testing Two Hypotheses forRensch's Rule in the Water Strider Aquarius remigis
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Allometry for Sexual Size Dimorphism: Testing Two Hypotheses forRensch's Rule in the Water Strider Aquarius remigis

机译:性大小二态性的异构关系:在水Str水瓶座迁移试验中检验伦施法则的两个假设

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摘要

Within any given clade, male size and female size typically covary, but male size often varies more than female size. This generates a pattern of allometry for sexual size dimorphism (SSD) known as Rensch's rule. I use allometry for SSD among populations of the water strider Aquarius remigis (Hemiptera, Gerridae) to test the hypothesis that Rensch's rule evolves in response to sexual selection on male secondary sexual traits and an alternative hypothesis that it is caused by greater phenotypic plasticity of body size in males. Comparisons of three populations reared under two temperature regimes are combined with an analysis of allometry for genital and somatic components of body size among 25 field populations. Contrary to the sexual-selection hypothesis, genital length, the target of sexual selection, shows the lowest allometric slope of all the assayed traits. Instead, the results support a novel interpretation of the differential-plasticity hypothesis: that the traits most closely associated with reproductive fitness (abdomen length in females and genital length in males) are "adaptively canalized." While this hypothesis is unlikely to explain Rensch's rule among species or higher clades, it may explain widespread patterns of intraspecific variation in SSD recently documented for many insect species.
机译:在任何给定的进化枝中,雄性和雌性通常为子宫颈,但雄性的变化通常大于雌性。这会产生一种针对性大小二态性(SSD)的异度测量模式,称为伦施法则。我对水iderAquarius remigis(Hemiptera,Gerridae)的种群中的SSD使用了异速测量法,以检验Rensch规则是根据男性次生性特征的性选择而进化的假说以及另一种假说是由身体表型可塑性增强引起的男性尺寸。比较了在两种温度模式下饲养的三个种群的比较结果,并对25个田间种群的体表生殖器官和躯体成分进行了异速生长分析。与性别选择假设相反,生殖器长度(性别选择的目标)显示出所有已分析特征中最低的异位斜率。取而代之的是,结果支持了对差异可塑性假说的新颖解释:与生殖适应性最密切相关的特征(女性的腹部长度和男性的生殖器长度)被“自适应导管化”。尽管此假设不太可能解释伦施定律在物种或更高进化枝之间的规律,但可能可以解释最近针对许多昆虫物种记载的固态硬盘种内变异的广泛模式。

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