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Diminishing-returns epistasis among random beneficial mutations in a multicellular fungus

机译:多细胞真菌随机有益突变中的递减回归上位

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摘要

Adaptive evolution ultimately is fuelled by mutations generating novel genetic variation. Non-additivity of fitness effects of mutations (called epistasis) may affect the dynamics and repeatability of adaptation. However, understanding the importance and implications of epistasis is hampered by the observation of substantial variation in patterns of epistasis across empirical studies. Interestingly, some recent studies report increasingly smaller benefits of beneficial mutations once genotypes become better adapted (called diminishing-returns epistasis) in unicellular microbes and single genes. Here, we use Fisher's geometric model (FGM) to generate analytical predictions about the relationship between the effect size of mutations and the extent of epistasis. We then test these predictions using the multicellular fungus Aspergillus nidulans by generating a collection of 108 strains in either a poor or a rich nutrient environment that each carry a beneficial mutation and constructing pairwise combinations using sexual crosses. Our results support the predictions from FGM and indicate negative epistasis among beneficial mutations in both environments, which scale with mutational effect size. Hence, our findings show the importance of diminishing-returns epistasis among beneficial mutations also for a multicellular organism, and suggest that this pattern reflects a generic constraint operating at diverse levels of biological organization.
机译:适应性进化最终由产生新的遗传变异的突变推动。突变的适应性效应(称为上位性)的非可加性可能会影响适应的动力学和可重复性。然而,在整个实证研究中观察到上位模式的实质性变化会妨碍对上位性的重要性和意义的理解。有趣的是,一些最近的研究报告说,一旦基因型更好地适应单细胞微生物和单个基因,有益突变的益处就会越来越小。在这里,我们使用Fisher几何模型(FGM)生成有关突变的影响大小与上位程度之间关系的分析预测。然后,我们通过在贫瘠或富营养的环境中生成108个菌株的集合来测试使用多细胞真菌构巢曲霉的这些预测,每个菌株均携带有益的突变并使用性杂交构建成对组合。我们的结果支持FGM的预测,并表明在两种环境下的有益突变中,阴性上位率均与突变效应大小成正比。因此,我们的发现表明,对于多细胞生物而言,有益突变之间的递减回归表位的重要性也很重要,并且表明该模式反映了在生物组织的不同水平上起作用的一般性约束。

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