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The Effect of Bacterial Recombination on Adaptation on Fitness Landscapes with Limited Peak Accessibility

机译:细菌重组对峰值可达性受限的健身景观适应的影响

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摘要

There is ample empirical evidence revealing that fitness landscapes are often complex: the fitness effect of a newly arisen mutation can depend strongly on the allelic state at other loci. However, little is known about the effects of recombination on adaptation on such fitness landscapes. Here, we investigate how recombination influences the rate of adaptation on a special type of complex fitness landscapes. On these landscapes, the mutational trajectories from the least to the most fit genotype are interrupted by genotypes with low relative fitness. We study the dynamics of adapting populations on landscapes with different compositions and numbers of low fitness genotypes, with and without recombination. Our results of the deterministic model (assuming an infinite population size) show that recombination generally decelerates adaptation on these landscapes. However, in finite populations, this deceleration is outweighed by the accelerating Fisher-Muller effect under certain conditions. We conclude that recombination has complex effects on adaptation that are highly dependent on the particular fitness landscape, population size and recombination rate.
机译:有大量的经验证据表明,适应度景观通常很复杂:新出现的突变的适应性效应可能在很大程度上取决于其他基因座的等位基因状态。然而,关于重组对这种适应性景观适应的影响知之甚少。在这里,我们研究了重组如何影响特殊类型的复杂健身景观的适应率。在这些景观中,从最小到最适合的基因型的突变轨迹被相对适应性低的基因型打断。我们研究了在具有和不具有重组的情况下,具有不同组成和数量的低适应性基因型的景观上的适应种群动态。我们的确定性模型的结果(假设种群数量无穷大)表明,重组通常会降低对这些景观的适应性。但是,在有限的人口中,某些条件下加速的Fisher-Muller效应抵消了这种减速度。我们得出结论,重组对适应具有复杂的影响,高度依赖于特定的适应环境,种群数量和重组率。

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