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Cross-sex genetic correlations and the evolution of sex-specific local adaptation: Insights from classical trait clines in Drosophila melanogaster

机译:交叉性遗传相关与性别特异性局部适应的演变:奇节油奇氏菌癌症的见解

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摘要

Natural selection varies widely among locations of a species' range, favoring population divergence and adaptation to local environmental conditions. Selection also differs between females and males, favoring the evolution of sexual dimorphism. Both forms of within-species evolutionary diversification are widely studied, though largely in isolation, and it remains unclear whether environmental variability typically generates similar or distinct patterns of selection on each sex. Studies of sex-specific local adaptation are also challenging because they must account for genetic correlations between female and male traits, which may lead to correlated patterns of trait divergence between sexes, whether or not local selection patterns are aligned or differ between the sexes. We quantified sex-specific divergence in five clinally variable traits in Drosophila melanogaster that individually vary in their magnitude of cross-sex genetic correlation (i.e., from moderate to strongly positive). In all five traits, we observed parallel male and female clines, regardless of the magnitude of their genetic correlation. These patterns imply that parallel spatial divergence of female and male traits is a reflection of sexually concordant directional selection imposed by local environmental conditions. In such contexts, genetic correlations between the sexes promote, rather than constrain, local adaptation to a spatially variable environment.
机译:自然选择在物种范围内的位置各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地各种各样地差异,并对地方环境条件的适应性。选择的雌性和雄性之间也有利于性二形态的演变。在物种内的内部进化多样化的两种形式都被广泛研究,但很大程度上是分离,并且仍然尚不清楚环境变异性是否通常在每种性别上产生类似或不同的选择模式。性别特异性本地适应的研究也是具有挑战性的,因为它们必须考虑女性和雄性特征之间的遗传相关性,这可能导致性别之间的特质不同模式,无论局部选择模式是否在性别之间对齐或不同。我们在果蝇的果蝇中的五个菌胎可变性状中量化了性别特异性分歧,其在其横角遗传相关的程度上单独变化(即,从中度至强烈阳性)。在所有五个特征中,我们观察到平行的雄性和雌性癌,无论其遗传相关的程度如何。这些模式暗示,雌性和男性特征的并行空间分歧是当地环境条件施加的性交作的方向选择的反映。在这种情况下,性别之间的遗传相关性促进,而不是约束,局部适应在空间可变的环境中。

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