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基因座内的性冲突与环境压力。

Intralocus sexual conflict and environmental stress.

作者信息

Berger David, Grieshop Karl, Lind Martin I, Goenaga Julieta, Maklakov Alexei A, Arnqvist Göran

机构信息

Animal Ecology at Department of Ecology and Genetics, Evolutionary Biology Centre, Uppsala University, Norbyvägen 18d, SE-75236, Uppsala, Sweden.

出版信息

Evolution. 2014 Aug;68(8):2184-96. doi: 10.1111/evo.12439. Epub 2014 May 22.

Abstract

Intralocus sexual conflict (IaSC) occurs when selection at a given locus favors different alleles in males and females, placing a fundamental constraint on adaptation. However, the relative impact of IaSC on adaptation may become reduced in stressful environments that expose conditionally deleterious mutations to selection. The genetic correlation for fitness between males and females (rMF ) provides a quantification of IaSC across the genome. We compared IaSC at a benign (29°C) and a stressful (36°C) temperature by estimating rMF s in two natural populations of the seed beetle Callosobruchus maculatus using isofemale lines. In one population, we found substantial IaSC under benign conditions signified by a negative rMF (-0.51) and, as predicted, a significant reduction of IaSC under stress signified by a reversed and positive rMF (0.21). The other population displayed low IaSC at both temperatures (rMF : 0.38; 0.40). In both populations, isofemale lines harboring alleles beneficial to males but detrimental to females at benign conditions tended to show overall low fitness under stress. These results offer support for low IaSC under stress and suggest that environmentally sensitive and conditionally deleterious alleles that are sexually selected in males mediate changes in IaSC. We discuss implications for adaptive evolution in sexually reproducing populations.

摘要

当某一基因座上的选择在雄性和雌性中青睐不同的等位基因时,就会发生基因座内性冲突(IaSC),这对适应性构成了根本性的限制。然而,在使条件性有害突变暴露于选择的应激环境中,IaSC对适应性的相对影响可能会降低。雄性和雌性之间适合度的遗传相关性(rMF)提供了全基因组范围内IaSC的量化指标。我们通过使用单雌系在绿豆象Callosobruchus maculatus的两个自然种群中估计rMF,比较了在良性温度(29°C)和应激温度(36°C)下的IaSC。在一个种群中,我们发现在良性条件下存在大量的IaSC,表现为负的rMF(-0.51),并且正如预测的那样,在应激条件下IaSC显著降低,表现为反转的正rMF(0.21)。另一个种群在两个温度下都表现出低IaSC(rMF:0.38;0.40)。在两个种群中,在良性条件下携带对雄性有益但对雌性有害的等位基因的单雌系在应激条件下往往表现出总体适合度较低。这些结果为应激条件下的低IaSC提供了支持,并表明在雄性中进行性选择的环境敏感且条件性有害的等位基因介导了IaSC的变化。我们讨论了对有性繁殖种群适应性进化的影响。

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