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The distribution of fitness effects caused by single-nucleotide substitutions in an RNA virus.

机译:RNA病毒中单核苷酸取代引起的适应性效应分布。

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Little is known about the mutational fitness effects associated with single-nucleotide substitutions on RNA viral genomes. Here, we used site-directed mutagenesis to create 91 single mutant clones of vesicular stomatitis virus derived from a common ancestral cDNA and performed competition experiments to measure the relative fitness of each mutant. The distribution of nonlethal deleterious effects was highly skewed and had a long, flat tail. As expected, fitness effects depended on whether mutations were chosen at random or reproduced previously described ones. The effect of random deleterious mutations was well described by a log-normal distribution, with -19% reduction of average fitness; the effects distribution of preobserved deleterious mutations was better explained by a beta model. The fit of both models was improved when combined with a uniform distribution. Up to 40% of random mutations were lethal. The proportion of beneficial mutations was unexpectedly high. Beneficial effects followed a gamma distribution, with expected fitness increases of 1% for random mutations and 5% for preobserved mutations.
机译:关于单核苷酸替代对RNA病毒基因组的突变适应性影响知之甚少。在这里,我们使用定点诱变创建了一个来自共同祖先cDNA的水泡性口炎病毒的91个单个突变体克隆,并进行了竞争实验以测量每个突变体的相对适应性。非致命有害影响的分布高度偏斜,尾巴较长且平坦。如预期的那样,适应性效果取决于是随机选择突变还是复制先前描述的突变。对数正态分布很好地描述了随机有害突变的影响,平均适应性降低了-19%; Beta模型可以更好地解释预先观察到的有害突变的影响分布。当结合均匀分布时,两个模型的拟合度得到了改善。高达40%的随机突变是致命的。有益突变的比例出乎意料地高。伽马分布会产生有益的影响,随机突变的预期适应度增加1%,预观察到的突变增加5%。

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