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Evolutionary stasis of a heritable morphological trait in a wild fish population despite apparent directional selection

机译:尽管有明显的方向选择,但野生鱼类种群中可遗传形态特征的进化停滞

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Comparing observed versus theoretically expected evolutionary responses is important for our understanding of the evolutionary process, and for assessing how species may cope with anthropogenic change. Here, we document directional selection for larger female size in Atlantic salmon, using pedigree‐derived estimates of lifetime reproductive success as a fitness measure. We show the trait is heritable and, thus, capable of responding to selection. The Breeder's Equation, which predicts microevolution as the product of phenotypic selection and heritability, predicted evolution of larger size. This was at odds, however, with the observed lack of either phenotypic or genetic temporal trends in body size, a so‐called “paradox of stasis.” To investigate this paradox, we estimated the additive genetic covariance between trait and fitness, which provides a prediction of evolutionary change according to Robertson's secondary theorem of selection (STS) that is unbiased by missing variables. The STS prediction was consistent with the observed stasis. Decomposition of phenotypic selection gradients into genetic and environmental components revealed a potential upward bias, implying unmeasured factors that covary with trait and fitness. These results showcase the power of pedigreed, wild population studies—which have largely been limited to birds and mammals—to study evolutionary processes on contemporary timescales.
机译:比较观察到的和理论上预期的进化反应,对于我们理解进化过程,以及评估物种如何应对人为变化非常重要。在这里,我们使用家系得出的终生繁殖成功率的估计值作为适应性指标,记录了大西洋鲑中较大雌鱼的定向选择。我们显示出该特征是可遗传的,因此能够响应选择。繁殖者方程式预测微观进化是表型选择和遗传力的乘积,它预测了更大的进化。然而,这与观察到的体型缺乏表型或遗传性时间趋势不符,即所谓的“瘀滞悖论”。为了研究这种悖论,我们估计了性状和适应性之间的加和遗传协方差,根据罗伯逊的次要选择定理(STS),它为进化变化提供了预测,该定理不受缺失变量的影响。 STS预测与观察到的瘀滞相符。将表型选择梯度分解为遗传和环境成分显示出潜在的向上偏差,这暗示着无法测量的因素会随性状和适应性而变化。这些结果展示了纯种的野生种群研究(在很大程度上仅限于鸟类和哺乳动物)在当代时间尺度上研究进化过程的力量。

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