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Probing the ecological and evolutionary history of a thermophilic cyanobacterial population via statistical properties of its microdiversity

机译:通过其微多样性的统计特性探究嗜热蓝细菌种群的生态和进化史

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摘要

Despite extensive DNA sequencing data derived from natural microbial communities, it remains a major challenge to identify the key evolutionary and ecological forces that shape microbial populations. We have focused on the extensive microdiversity of the cyanobacterium Synechococcus sp., which is a dominant member of the dense phototrophic biofilms in the hot springs of Yellowstone National Park. From deep amplicon sequencing of many loci and statistical analyses of these data, we showed previously that the population has undergone an unexpectedly high degree of homologous recombination, unlinking synonymous SNP-pair correlations even on intragenic length scales. Here, we analyze the genic amino acid diversity, which provides new evidence of selection and insights into the evolutionary history of the population. Surprisingly, some features of the data, including the spectrum of distances between genic-alleles, appear consistent with primarily asexual neutral drift. Yet the non-synonymous site frequency spectrum has too large an excess of low-frequency polymorphisms to result from negative selection on deleterious mutations given the distribution of coalescent times that we infer. And our previous analyses showed that the population is not asexual. Taken together, these apparently contradictory data suggest that selection, epistasis, and hitchhiking all play essential roles in generating and stabilizing the diversity. We discuss these as well as potential roles of ecological niches at genomic and genic levels. From quantitative properties of the diversity and comparative genomic data, we infer aspects of the history and inter-spring dispersal of the meta-population since it was established in the Yellowstone Caldera. Our investigations illustrate the need for combining multiple types of sequencing data and quantitative statistical analyses to develop an understanding of microdiversity in natural microbial populations.
机译:尽管从天然微生物群落获得了广泛的DNA测序数据,但鉴定构成微生物种群的关键进化力和生态力仍然是一项重大挑战。我们集中研究了蓝细菌Synechococcus sp。的广泛的微生物多样性,该物种是黄石国家公园温泉中致密的光养生物膜的主要成员。通过对许多基因座的深度扩增子测序以及对这些数据的统计分析,我们先前表明,该种群经历了意想不到的高度同源重组,即使在基因内长度尺度上,也没有同义的SNP对关联。在这里,我们分析了基因氨基酸的多样性,这为选择和了解种群进化史提供了新的证据。令人惊讶的是,数据的某些特征,包括基因等位基因之间的距离谱,似乎主要与无性中性漂移一致。然而,鉴于我们推断的合并时间分布,非同义站点频谱具有过多的低频多态性,无法从有害突变的负选择中得出。我们以前的分析表明,该人群并非无性。综上所述,这些显然矛盾的数据表明,选择,上位性和搭便车都在产生和稳定多样性方面起着至关重要的作用。我们将讨论这些以及生态位在基因组和基因水平上的潜在作用。从多样性的定量特性和比较的基因组数据,我们可以推断出该自居种群在黄石破火山口中建立以来的历史和春天之间的分布。我们的研究表明,需要将多种类型的测序数据和定量统计分析相结合,以加深对自然微生物种群中微生物多样性的了解。

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