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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Performance is no proxy for genetic quality: trade-offs between locomotion, attractiveness, and life history in crickets
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Performance is no proxy for genetic quality: trade-offs between locomotion, attractiveness, and life history in crickets

机译:性能不能替代遗传质量:lo的运动,吸引力和生活史之间的权衡

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摘要

The genetic relationships among traits contributing to overall fitness are an important subject of inquiry because such relationships influence how suites of traits respond to selection. Within the field of sexual selection, these relationships are also of interest for assessing whether any given trait can be used as a proxy for total fitness. A growing number of studies have demonstrated close links between whole-organism performance traits and determinants of individual fitness; however, an understanding of the genetic relationships between performance and important aspects of genetic quality is currently lacking. We present the results of a quantitative genetic study in which we estimate covariation between a locomotor performance trait (maximal jumping ability), calling effort, sexual attractiveness, and life-history traits in male Teleogryllus commodus crickets. We show that the major axis of genetic variation (gmax) is characterized by a contrast between jump performance and lifehistory traits associated with mating success. Moreover, two additional axes of significant multivariate genetic variation exist, each characterized by strong contrasts among traits. These results argue against the existence of a single axis representing genetic quality, favoring instead the idea that resource allocation strategies shape multiple dimensions of genetic quality through trade-offs among key life-history traits, including performance.
机译:有助于整体适应的性状之间的遗传关系是一个重要的研究课题,因为这种关系会影响一系列性状对选择的反应。在性选择领域,这些关系对于评估是否可以将任何给定的性状用作整体适应性的代名词也很重要。越来越多的研究表明,整个生物体的性能特征与个体适应性的决定因素之间有着密切的联系。然而,目前缺乏对性能与遗传质量重要方面之间遗传关系的理解。我们提出了一项定量遗传研究的结果,其中我们估计了雄性斜尾cri的运动表现特征(最大跳跃能力),呼唤努力,性吸引力和生活史特征之间的协变。我们表明,遗传变异的主轴(gmax)的特征是跳跃表现和与交配成功相关的生活史特征之间的对比。而且,存在两个明显的多变量遗传变异的附加轴,每个轴的特征在于性状之间的强烈对比。这些结果反对了代表遗传质量的单一轴的存在,相反,主张资源分配策略通过关键生命历史特征(包括性能)之间的权衡来塑造遗传质量的多个维度的观点。

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