首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Adaptation through genetic time travel? Fluctuating selection can drive the evolution of bacterial transformation
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Adaptation through genetic time travel? Fluctuating selection can drive the evolution of bacterial transformation

机译:通过基因时间旅行适应吗?波动的选择可以推动细菌转化的进化

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Natural transformation is a process whereby bacteria actively take up DNA from the surrounding environment and incorporate it into their genome. Natural transformation is widespread in bacteria, but its evolutionary significance is still debated. Here, we hypothesize that transformation may confer a fitness advantage in changing environments through a process we term 'genetic time travel': by taking up old genes that were retained in the environment, the bacteria may revert to a past genotypic state that proves advantageous in the present or a future environment. We scrutinize our hypothesis by means of a mathematical model involving two bacterial types (transforming and non-transforming), a single locus under natural selection and a free DNA pool. The two bacterial types were competed in environments with changing selection regimes. We demonstrate that for a wide range of parameter values for the DNA turnover rate, the transformation rate and the frequency of environmental change, the transforming type outcompetes the non-transforming type. We discuss the empirical plausibility of our hypothesis, as well as its relationship to other hypotheses for the evolution of transformation in bacteria and sex more generally, speculating that 'genetic time travel' may also be relevant in eukaryotes that undergo horizontal gene transfer.
机译:自然转化是细菌主动从周围环境吸收DNA并将其整合到基因组中的过程。自然转化在细菌中很普遍,但其进化意义仍存在争议。在这里,我们假设转化可以通过我们称为“遗传时间旅行”的过程在变化的环境中赋予适应性优势:通过吸收保留在环境中的旧基因,细菌可以恢复到过去的基因型状态,证明其在环境中具有优势。当前或未来的环境。我们通过涉及两种细菌类型(转化和非转化),自然选择下的单个基因座和自由DNA池的数学模型来审查我们的假设。两种细菌在选择机制不断变化的环境中竞争。我们证明,对于DNA转换率,转化率和环境变化频率的各种参数值,转化类型胜过非转化类型。我们讨论了我们的假设的经验上的合理性,以及它与其他假设之间更普遍的细菌和性别转化演变的关系,推测“遗传时间旅行”也可能与经历水平基因转移的真核生物有关。

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