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Migration enhances adaptation in bacteriophage populations evolving in ecological sinks

机译:迁移增强了在生态库中进化的噬菌体种群的适应性

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Migration between populations can be a major evolutionary force. However, some disagreement exists as to precisely how migration affects population adaptation. Some theories emphasize the inhibitory effects of gene flow between locally adapted populations, whereas others propose that migration can enhance adaptation. Migration has also been theorized to rescue sink populations from extinction. In our experiments, we serially passaged bacteriophage Φ6 host range mutants under sink conditions on a novel host while manipulating the source and number of migrants into these experimental populations. Migrants from two sources were used: mutant Φ6 phage able to infect a novel host (treatment) and wild-type Φ6 phage unable to infect a novel host (control). We used quadratic regressions to determine the relationship between the number of migrants per passage and the absolute fitnesses of experimental populations following 30 passages. Our results showed that migration from a control population had no effect on absolute fitnesses of our serially passaged populations following 30 passages. By contrast, the relationship between migrants per passage and absolute fitnesses for populations receiving migrants able to infect the novel host was best described by an upwardly concave curve. These results suggest that intermediate levels of migration can have favorable impacts on evolutionary adaptation.
机译:人口之间的迁移可能是主要的进化力量。然而,在移民如何影响人口适应方面存在一些分歧。一些理论强调了局部适应群体之间基因流的抑制作用,而另一些理论则提出迁移可以增强适应性。从理论上讲,移民也可以使沉没的人口免于灭绝。在我们的实验中,我们在新宿主上的沉没条件下连续传代了噬菌体Φ6宿主范围突变体,同时操纵了进入这些实验群体的移民的来源和数量。使用了来自两个来源的移民:能够感染新型宿主(治疗)的突变型Φ6噬菌体和不能感染新型宿主(对照)的野生型Φ6噬菌体。我们使用二次回归确定每次传代的移民人数与30次传代后的实验人群绝对适应度之间的关系。我们的结果表明,从对照种群中迁移出来对经过30代的连续传代种群的绝对适应度没有影响。相比之下,每个通道的移民数与接收能够感染这种新型宿主的移民数的绝对适应度之间的关系最好用向上凹的曲线来描述。这些结果表明,中等水平的迁徙会对进化适应产生有利影响。

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