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首页> 外文期刊>BMC Evolutionary Biology >The impact of population size on the evolution of asexual microbes on smooth versus rugged fitness landscapes
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The impact of population size on the evolution of asexual microbes on smooth versus rugged fitness landscapes

机译:人口规模对平滑与崎fitness健身环境中无性微生物进化的影响

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Background It is commonly thought that large asexual populations evolve more rapidly than smaller ones, due to their increased rate of beneficial mutations. Less clear is how population size influences the level of fitness an asexual population can attain. Here, we simulate the evolution of bacteria in repeated serial passage experiments to explore how features such as fitness landscape ruggedness, the size of the mutational target under selection, and the mutation supply rate, interact to affect the evolution of microbial populations of different sizes. Results We find that if the fitness landscape has many local peaks, there can be a trade-off between the rate of adaptation and the potential to reach high fitness peaks. This result derives from the fact that whereas large populations evolve mostly deterministically and often become trapped on local fitness peaks, smaller populations can follow more stochastic evolutionary paths and thus locate higher fitness peaks. We also find that the target size of adaptation and the mutation rate interact with population size to influence the trade-off between rate of adaptation and final fitness. Conclusion Our study suggests that the optimal population size for adaptation depends on the details of the environment and on the importance of either the ability to evolve rapidly or to reach high fitness levels.
机译:背景技术人们普遍认为,由于无性繁殖种群的有益突变率提高,因此其进化速度要快于无性繁殖种群。人口规模如何影响无性人口的适应水平尚不清楚。在这里,我们在重复的连续传代实验中模拟细菌的进化,以探索适应度景观的坚固性,所选择的突变目标的大小以及突变供应率等特征如何相互作用以影响不同大小的微生物种群的进化。结果我们发现,如果健身景观具有许多局部峰,则适应速度与达到高健身峰的潜力之间可能会进行权衡。该结果源于以下事实:尽管大型种群大多数情况下都是确定性的,并且经常被困在局部适应峰上,但是较小种群可以遵循更多随机的进化路径,从而定位较高适应峰。我们还发现适应的目标大小和突变率与种群大小相互作用,以影响适应率和最终适应度之间的权衡。结论我们的研究表明,适应的最佳种群规模取决于环境的细节以及快速进化或达到高适应水平的能力的重要性。

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