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Quantifying fitness distributions and phenotypic relationships in recombinant yeast populations

机译:定量重组酵母种群中的适应度分布和表型关系

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摘要

Studies of the role of sex in evolution typically involve a longitudinal comparison of a single ancestor to several intermediate descendants and to one terminally evolved descendant after many generations of adaptation under a given selective regime. Here we take a complementary, statistical approach to sex in evolution, by describing the distribution of phenotypic similarity in a population of yeast F1 meiotic recombinants. By applying graph theory to fitness measurements of thousands of Saccharomyces cerevisiae recombinants treated with 10 mechanistically distinct, growth-inhibitory small-molecule perturbagens (SMPs), we show that the network of phenotypic similarity among F1 recombinants exhibits a scale-free degree distribution. F1 recombinants are often phenotypically unique and sometimes exceptional, and their fitness strengths are unevenly distributed across the 10 compound treatments. By contrast, highly phenotypically similar F1 recombinants constitute failing hubs that display below-average fitness across all compound treatments and are candidate substrates for purifying selection. Comparison of the F1 generation with the parental strains reveals that (i) there is a specialist more fit in any given single condition than any of the parents but (ii) only rarely are there generalists that exhibit greater fitness than both parental strains across a majority of conditions. This analysis allows us to evaluate and to gain better theoretical understanding of the costs and benefits of sex in the F1 generation.
机译:对性别在进化中的作用的研究通常涉及在给定的选择体制下经过多代适应后,将单个祖先与几个中间后代和一个最终进化的后代进行纵向比较。在这里,我们通过描述酵母F1减数分裂重组子群体中表型相似性的分布,对进化中的性别采取补充的统计方法。通过将图论应用到成千上万的酿酒酵母重组体的适应性测量中,这些重组酵母经过10种机械学上不同的,抑制生长的小分子微扰(SMPs)处理,我们表明F1重组体之间的表型相似性网络表现出无标度的度分布。 F1重组体通常在表型上是独特的,有时甚至是优异的,并且它们的适应强度在10种复合疗法中分布不均。相反,在表型上高度相似的F1重组体构成了失效的中枢,这些中枢在所有化合物处理中均显示出低于平均水平的适应性,并且是纯化选择的候选底物。 F1代与亲本菌株的比较显示(i)在任何给定的单一条件下,专家比任何亲本更适合,但(ii)在大多数情况下,通才比两种亲本菌株都更适合的通才条件。这种分析使我们能够评估F1代中性的成本和收益并获得更好的理论理解。

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