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首页> 外文期刊>Evolution: International Journal of Organic Evolution >SELECTION AND EVOLUTION OF CAUSALLY COVARYING TRAITS
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SELECTION AND EVOLUTION OF CAUSALLY COVARYING TRAITS

机译:因果性状的选择和进化

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摘要

When traits cause variation in fitness, the distribution of phenotype, weighted by fitness, necessarily changes. The degree to which traits cause fitness variation is therefore of central importance to evolutionary biology. Multivariate selection gradients are the main quantity used to describe components of trait-fitness covariation, but they quantify the direct effects of traits on (relative) fitness, which are not necessarily the total effects of traits on fitness. Despite considerable use in evolutionary ecology, path analytic characterizations of the total effects of traits on fitness have not been formally incorporated into quantitative genetic theory. By formally defining "extended" selection gradients, which are the total effects of traits on fitness, as opposed to the existing definition of selection gradients, a more intuitive scheme for characterizing selection is obtained. Extended selection gradients are distinct quantities, differing from the standard definition of selection gradients not only in the statistical means by which they may be assessed and the assumptions required for their estimation from observational data, but also in their fundamental biological meaning. Like direct selection gradients, extended selection gradients can be combined with genetic inference of multivariate phenotypic variation to provide quantitative prediction of microevolutionary trajectories.
机译:当性状导致适应度变化时,以适应度加权的表型分布必然发生变化。因此,特质导致适应性变化的程度对于进化生物学至关重要。多元选择梯度是用于描述特征-适应度协变量组成部分的主要量,但它们量化了特征对(相对)适应度的直接影响,而不一定是特征对适应度的总影响。尽管在进化生态学中有大量应用,但特征对适应性的总体影响的路径分析表征尚未正式纳入定量遗传理论。通过正式定义“扩展的”选择梯度,这是特征对适应性的总影响,与现有的选择梯度定义相反,获得了用于表征选择的更直观的方案。扩展的选择梯度是不同的数量,与选择梯度的标准定义不同,不仅在统计学上可以评估选择梯度,而且从观测数据进行估计所需的假设也从基本生物学意义上有所不同。像直接选择梯度一样,扩展选择梯度可以与多元表型变异的遗传推论相结合,以提供对微进化轨迹的定量预测。

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