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Rapid reversal of a potentially constraining genetic covariance between leaf and flower traits in Silene latifolia

机译:在硅拉脱陆叶和花状特征之间潜在约束遗传协方差的快速逆转

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Genetic covariance between two traits generates correlated responses to selection, and may either enhance or constrain adaptation. Silene latifolia exhibits potentially constraining genetic covariance between specific leaf area (SLA) and flower number in males. Flower number is likely to increase via fecundity selection but the correlated increase in SLA increases mortality, and SLA is under selection to decrease in dry habitats. We selected on trait combinations in two selection lines for four generations to test whether genetic covariance could be reduced without significantly altering trait means. In one selection line, the genetic covariance changed sign and eigenstructure changed significantly, while in the other selection line eigenstructure remained similar to the control line. Changes in genetic variance–covariance structure are therefore possible without the introduction of new alleles, and the responses we observed suggest that founder effects and changes in frequency of alleles of major effect may be acting to produce the changes.
机译:两个特征之间的遗传协方差产生与选择的相关响应,并且可以增强或约束适应。 Silene Latifolia表现出特定叶面积(SLA)和雄性花序之间的潜在限制遗传协方差。花序可能会通过繁殖力选择增加,但SLA的相关性增加增加了死亡率,并且SLA是在选择中降低干燥栖息地。我们在两个选择线上选择了四个代的特征组合,以测试是否可以减少遗传协方差而不会显着改变特征手段。在一种选择线中,遗传协方差改变了标志和特征结构显着变化,而在其他选择线上,特征仍然类似于控制线。因此,在未引入新等位基因的情况下,可以进行遗传方差 - 协方差结构的变化,以及我们观察到的反应表明,主要效应的等位基因频率的创始效果和变化可能是作用的,以产生改变。

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