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首页> 外文期刊>Evolution: International Journal of Organic Evolution >THE EVOLUTIONARY STABILITY OF CROSS-SEX, CROSS-TRAIT GENETIC COVARIANCES
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THE EVOLUTIONARY STABILITY OF CROSS-SEX, CROSS-TRAIT GENETIC COVARIANCES

机译:性别,性状遗传变异性的进化稳定性

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摘要

Although knowledge of the selective agents behind the evolution of sexual dimorphism has advanced considerably in recent years, we still lack a clear understanding of the evolutionary durability of cross-sex genetic covariances that often constrain its evolution. We tested the relative stability of cross-sex genetic covariances for a suite of homologous contact pheromones of the fruit fly Drosophila serrata, along a latitudinal gradient where these traits have diverged in mean. Using a Bayesian framework, which allowed us to account for uncertainty in all parameter estimates, we compared divergence in the total amount and orientation of genetic variance across populations, finding divergence in orientation but not total variance. We then statistically compared orientation divergence of within-sex (G) to cross-sex (B) covariance matrices. In line with a previous theoretical prediction, we find that the cross-sex covariance matrix, B, is more variable than either within-sex G matrix. Decomposition of B matrices into their symmetrical and nonsymmetrical components revealed that instability is linked to the degree of asymmetry. We also find that the degree of asymmetry correlates with latitude suggesting a role for spatially varying natural selection in shaping genetic constraints on the evolution of sexual dimorphism.
机译:尽管近年来对性二态性进化背后的选择剂的了解已大大提高,但我们仍然对跨性别遗传协方差的进化持久性缺乏清晰的了解,而跨性别遗传协变通常会限制其进化。我们测试了一组性状果蝇果蝇锯齿状的同源接触信息素的跨性别遗传协方差的相对稳定性,沿着这些特征的均值在纬度梯度上变化。使用贝叶斯框架,该框架使我们能够考虑所有参数估计中的不确定性,我们比较了群体间遗传方差的总量和方向的差异,发现方向差异而不是总方差。然后,我们对性别内(G)与跨性别(B)协方差矩阵的方向差异进行了统计比较。与先前的理论预测一致,我们发现跨性别协方差矩阵B比性别内部G矩阵的可变性更大。将B矩阵分解为对称和不对称成分表明,不稳定性与不对称程度有关。我们还发现,不对称程度与纬度相关,这暗示了空间变化的自然选择在塑造性二态性进化的遗传约束中的作用。

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