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Neutral evolution of mutational robustness

机译:突变鲁棒性的中性进化

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摘要

We introduce and analyze a general model of a population evolving over a network of selectively neutral genotypes. We show that the population's limit distribution on the neutral network is solely determined by the network topology and given by the principal eigenvector of the net- work's adjacency matrix. Moreover, the average number of neutral mutant neighbors per individual is given by the matrix spectral radius. These results quantify the extent to which populations evolve mutational robustness-the insensitivity of the phenotype to mutations-and thus reduce genetic load. Because the average neutrality is independent of evolutionary parameters-such as mutation rate, population size, and selective advantage-one can infer global statistics of neutral network topology by using simple population data available from in vitro or in vivo evolution. Populations evolving on neutral networks of RNA secondary structures show excellent agreement with our theoretical predictions.
机译:我们介绍并分析了通过选择性中性基因型网络进化的种群的一般模型。我们表明,中立网络上的人口极限分布完全由网络拓扑决定,并由网络邻接矩阵的主要特征向量给出。此外,每个个体的中性突变体邻居的平均数由矩阵光谱半径给出。这些结果量化了种群进化突变鲁棒性的程度(表型对突变的不敏感性),从而降低了遗传负荷。由于平均中性与进化参数(例如突变率,种群规模和选择性优势)无关,因此可以使用可从体外或体内进化获得的简单种群数据来推断中性网络拓扑的全局统计数据。在RNA二级结构的中性网络上进化的种群显示出与我们的理论预测极好的一致性。

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