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Genetic signature of adaptive peak shift in threespine stickleback

机译:三脊椎棘背棘返自适应峰移的遗传特征

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Transition of an evolving population to a new adaptive optimum is predicted to leave a signature in the distribution of effect sizes of fixed mutations. If they affect many traits (are pleiotropic), large effect mutations should contribute more when a population evolves to a farther adaptive peak than to a nearer peak. We tested this prediction in wild threespine stickleback fish (Gasterosteus aculeatus) by comparing the estimated frequency of large effect genetic changes underlying evolution as the same ancestor adapted to two lake types since the end of the ice age. A higher frequency of large effect genetic changes (quantitative trait loci) contributed to adaptive evolution in populations that adapted to lakes representing a more distant optimum than to lakes in which the optimum phenotype was nearer to the ancestral state. Our results also indicate that pleiotropy, not just optimum overshoot, contributes to this difference. These results suggest that a series of adaptive improvements to a new environment leaves a detectable mark in the genome of wild populations. Although not all assumptions of the theory are likely met in natural systems, the prediction may be robust enough to the complexities of natural environments to be useful when forecasting adaptive responses to large environmental changes.
机译:进化的种群向新的适应性最优的过渡预计将在固定突变的效应大小分布中留下特征。如果它们影响许多特征(多效性),则当种群进化到更远的适应峰而不是更近的峰时,大的效应突变应起更大的作用。我们通过比较自冰河时代结束以来适应于两种湖泊类型的相同祖先的进化所产生的巨大影响遗传变化的估计频率,在野生三脊背棘鱼(Gasterosteus aculeatus)中测试了这一预测。较大影响的遗传变化(定量性状基因座)的频率较高,导致种群的适应性进化,适应于比最佳表型更接近祖先状态的湖泊的最优距离更远的最优。我们的结果还表明,多效性,不仅是最佳的过冲,也是造成这种差异的原因。这些结果表明,对新环境的一系列适应性改进在野生种群的基因组中留下了可检测的标记。尽管并非所有理论假设都可能在自然系统中得到满足,但该预测可能对自然环境的复杂性足够鲁棒,从而在预测对大环境变化的自适应响应时很有用。

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