【2h】

Mutator dynamics in fluctuating environments.

机译:波动环境中的突变体动力学。

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摘要

Populations with high mutation rates (mutator clones) are being found in increasing numbers of species, and a clear link is being established between the presence of mutator clones and drug resistance. Mutator clones exist despite the fact that in a constant environment most mutations are deleterious, with the spontaneous mutation rate generally held at a low value. This implies that mutator clones have an important role in the adaptation of organisms to changing environments. Our study examines how mutator dynamics vary according to the frequency of environmental fluctuations. Although recent studies have considered a single environmental switch, here we investigate mutator dynamics in a regularly varying environment, seeking to mimic conditions present, for example, under certain drug or pesticide regimes. Our model provides four significant new insights. First, the results demonstrate that mutators are most prevalent under intermediate rates of environmental change. When the environment oscillates more rapidly, mutators are unable to provide sufficient adaptability to keep pace with the frequent changes in selection pressure and, instead, a population of 'environmental generalists' dominates. Second, our findings reveal that mutator dynamics may be complex, exhibiting limit cycles and chaos. Third, we demonstrate that when each beneficial mutation provides a greater gain in fitness, mutators achieve higher densities in more rapidly fluctuating environments. Fourth, we find that mutators of intermediate strength reach higher densities than very weak or strong mutators.
机译:发现具有高突变率的种群(突变体克隆)的物种数量越来越多,并且在突变体克隆的存在与耐药性之间建立了明确的联系。尽管存在突变体克隆,尽管事实是,在恒定的环境中大多数突变都是有害的,而自发突变率通常保持在较低的水平。这意味着突变克隆在生物适应不断变化的环境中具有重要作用。我们的研究检查了变幅器动力学如何根据环境波动的频率而变化。尽管最近的研究已经考虑了单个环境转换,但是在这里我们研究在规则变化的环境中的突变体动力学,试图模仿例如某些药物或农药制度下的当前条件。我们的模型提供了四个重要的新见解。首先,结果表明突变体在中等环境变化速率下最为普遍。当环境振荡得更快时,变异者将无法提供足够的适应性来跟上选择压力的频繁变化,而是由“环境通才”群体主导。其次,我们的发现表明,突变体动力学可能很复杂,表现出极限环和混沌。第三,我们证明了当每个有益的突变提供更大的适应性时,变异子在更迅速波动的环境中获得更高的密度。第四,我们发现中等强度的变体比非常弱或很强的变体达到更高的密度。

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