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Fitness effects of advantageous mutations in evolving Escherichia coli populations

机译:有利突变对不断发展的大肠杆菌种群的适应性影响

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摘要

The central role of beneficial mutations for adaptive processes in natural populations is well established. Thus, there has been a long-standing interest to study the nature of beneficial mutations. Their low frequency, however, has made this class of mutations almost inaccessible for systematic studies. In the absence of ex- perimental data. the distribution of the fitness effects of beneficial mutations was assumed to resemble that of deleterious mutations. For an experimental proof of this assumption, we used a novel marker system to trace adaptive events in an evolving Escherichia coli culture and to determine the selective advantage of those beneficial mutations. Ten parallel cultures were propagated for about 1,000 generations by serial transfer, and 66 adaptive events' were identified. From this data set, we estimate the rate of beneficial mutations to be 4×10_-9 per cell and generation. Consistent with an exponential distribution of the fitness effects, we observed a large fraction of advantageous mutations with a small effect and only few with large effect. The mean selection coefficient of advantageous mutations in our experiment was 0.02.
机译:有益突变对于自然种群适应过程的核心作用已得到充分确立。因此,长期以来一直有兴趣研究有益突变的性质。然而,它们的低频率使得这类突变几乎无法用于系统研究。在没有实验数据的情况下。假定有益突变的适应性效应分布类似于有害突变。为了对此假设进行实验证明,我们使用了新型标记系统来追踪进化的大肠杆菌培养物中的适应性事件,并确定这些有益突变的选择性优势。通过串行转移将十种平行培养物传播了约1,000代,并鉴定出66个适应性事件。根据该数据集,我们估计每个细胞和每个代的有益突变率为4×10_-9。与适应性效应的指数分布一致,我们观察到大部分有益突变的影响很小,只有少数突变效果很大。在我们的实验中,有利突变的平均选择系数为0.02。

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