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The allometry between secondary sexual traits and body size is nonlinear among cervids

机译:子宫颈第二性征与体型之间的异速成因是非线性的

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摘要

Allometric relationships between sexually selected traits and body size have been extensively studied in recent decades. While sexually selected traits generally display positive allometry, a few recent reports have suggested that allometric relationships are not always linear. In male cervids, having both long antlers and large size provides benefits in terms of increased mating success. However, such attributes are costly to grow and maintain, and these costs might constrain antler length from increasing at the same rate as body mass in larger species if the quantity of energy that males can extract from their environment is limiting. We tested for possible nonlinearity in the relationship between antler size and body mass (on a log–log scale) among 31 cervids and found clear deviation from linearity in the allometry of antler length. Antler length increased linearly until a male body mass threshold at approximately 110 kg. Beyond this threshold, antler length did not change with increasing mass. We discuss this evidence of nonlinear allometry in the light of life-history theory and stress the importance of testing for nonlinearity when studying allometric relationships.
机译:近几十年来,对性选择的性状与体型之间的异形关系进行了广泛的研究。虽然性选择的性状通常表现出积极的异向性,但最近的一些报道表明异向性关系并不总是线性的。在雄性子宫颈中,既有长鹿角又有大尺寸的鹿角,可以增加交配成功率。但是,此类属性的生长和维持成本很高,如果雄性可从其环境中提取的能量数量有限,则这些成本可能会限制鹿角长度以与大型物种相同的速率增长。我们测试了31头鹿角的鹿角大小与体重之间的关系(按对数对数比例)是否存在非线性,并发现鹿角长度的异度线性关系存在明显偏差。鹿茸长度线性增加,直到男性体重阈值达到约110 kg。超过此阈值,鹿角长度不会随质量增加而变化。我们根据生活史理论讨论了非线性变态反应的这一证据,并在研究变态关系时强调了测试非线性的重要性。

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