首页> 外文期刊>Evolution: International Journal of Organic Evolution >GENETIC ARCHITECTURE AND POSTZYGOTIC REPRODUCTIVE ISOLATION: EVOLUTION OF BATESON-DOBZHANSKY-MULLER INCOMPATIBILITIES IN A POLYGENIC MODEL
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GENETIC ARCHITECTURE AND POSTZYGOTIC REPRODUCTIVE ISOLATION: EVOLUTION OF BATESON-DOBZHANSKY-MULLER INCOMPATIBILITIES IN A POLYGENIC MODEL

机译:遗传结构和后合生殖生殖隔离:多基因模型中Bateson-Dobzhansy-Muller不相容性的演化

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The Bateson-Dobzhansky-Muller model predicts that postzygotic isolation evolves due to the accumulation of incompatible epistatic interactions, but few studies have quantified the relationship between genetic architecture and patterns of reproductive divergence. We examined how the direction and magnitude of epistatic interactions in a polygenic trait under stabilizing selection influenced the evolution of hybrid incompatibilities. We found that populations evolving independently under stabilizing selection experienced suites of compensatory allelic changes that resulted in genetic divergence between populations despite the maintenance of a stable, high-fitness phenotype. A small number of loci were then incompatible with multiple alleles in the genetic background of the hybrid and the identity of these incompatibility loci changed over the evolution of the populations. For F-1 hybrids, reduced fitness evolved in a window of intermediate strengths of epistatic interactions, but F-2 and backcross hybrids evolved reduced fitness across weak and moderate strengths of epistasis due to segregation variance. Strong epistatic interactions constrained the allelic divergence of parental populations and prevented the development of reproductive isolation. Because many traits with varying genetic architectures must be under stabilizing selection, our results indicate that polygenetic drift is a plausible hypothesis for the evolution of postzygotic reproductive isolation.
机译:Bateson-Dobzhansky-Muller模型预测,由于不相容的上位性相互作用的积累,后合子隔离得以发展,但是很少有研究量化遗传结构与生殖分化模式之间的关系。我们研究了稳定选择下多基因性状中上位性相互作用的方向和强度如何影响杂种不相容性的进化。我们发现,在稳定选择下独立进化的种群经历了一系列补偿性等位基因变化,尽管维持了稳定的,高适应性表型,但这些变异导致了种群之间的遗传差异。然后,少数基因座在杂种的遗传背景中与多个等位基因不相容,并且这些不相容基因座的身份随着种群的进化而改变。对于F-1杂种,适应性在中间水平的上位相互作用的窗口中进化,但由于分离差异,F-2和回交杂种在上,中度弱的上位进化为适应性下降。强烈的上位性相互作用限制了父母群体的等位基因差异,并阻止了生殖隔离的发展。因为具有不同遗传结构的许多特征必须处于稳定的选择之下,所以我们的结果表明,多基因漂移是合子后生殖分离进化的合理假设。

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