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THE COST OF BEING COMMON: EVIDENCE FROM NATURAL DAPHNIA POPULATIONS

机译:成为普通人的代价:来自自然蚤的证据

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The Red Queen coevolutionary hypothesis predicts that parasites drive oscillations in host genotype frequencies due to frequencydependent selection where common hosts are at disadvantage. However, examples of this phenomenon in natural populations are scarce. To examine if the Red Queen theory operates in the wild, we studied the genetic structure of populations of the crustacean waterflea (Daphnia), in relation to their infection levels, for which we collected multiple samples from a variety of lakes. The most common clone in a given population was often underinfected. This advantage, however, did not remain stable over time. Instead, the most common clone decreased in frequency over subsequent generations, indicating that parasites can track common clones. Such decreases were not observed in uninfected populations. Moreover, host clonal evenness was higher across the set of infected lakes compared to uninfected lakes; suggesting that any common clone is selected against when parasites are present. These results strongly suggest that Red Queen dynamics do operate in the wild.
机译:Red Queen协同进化假说预测,寄生虫会导致宿主基因型频率发生振荡,这是由于常见宿主处于不利地位而依赖于频率的选择。但是,在自然种群中这种现象的例子很少。为了检查红皇后理论是否在野外运作,我们研究了甲壳类水蚤(水蚤)种群的遗传结构及其感染水平,为此我们从多个湖泊中收集了多个样本。在给定人群中最常见的克隆常常感染不足。但是,随着时间的推移,这种优势并没有保持稳定。相反,最常见的克隆在随后的世代中频率降低,这表明寄生虫可以跟踪常见的克隆。在未感染人群中未观察到这种减少。此外,与未感染的湖泊相比,在被感染的湖泊中宿主的克隆均匀度更高。提示在存在寄生虫的情况下,可以针对任何常见克隆进行选择。这些结果强烈表明,红皇后的动力确实在野外起作用。

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