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Identifying Currents in the Gene Pool for Bacterial Populations Using an Integrative Approach

机译:使用综合方法识别细菌种群的基因库中的电流

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摘要

The evolution of bacterial populations has recently become considerably better understood due to large-scale sequencing of population samples. It has become clear that DNA sequences from a multitude of genes, as well as a broad sample coverage of a target population, are needed to obtain a relatively unbiased view of its genetic structure and the patterns of ancestry connected to the strains. However, the traditional statistical methods for evolutionary inference, such as phylogenetic analysis, are associated with several difficulties under such an extensive sampling scenario, in particular when a considerable amount of recombination is anticipated to have taken place. To meet the needs of large-scale analyses of population structure for bacteria, we introduce here several statistical tools for the detection and representation of recombination between populations. Also, we introduce a model-based description of the shape of a population in sequence space, in terms of its molecular variability and affinity towards other populations. Extensive real data from the genus Neisseria are utilized to demonstrate the potential of an approach where these population genetic tools are combined with an phylogenetic analysis. The statistical tools introduced here are freely available in BAPS 5.2 software, which can be downloaded from http://web.abo.fi/fak/mnf/mate/jc/software/baps.html.
机译:由于人口样本的大规模测序,细菌种群的进化最近已被更好地理解。显然,需要从众多基因中获得的DNA序列以及目标人群的广泛样本覆盖率,才能相对公正地了解其遗传结构和与菌株相关的祖先模式。然而,在如此广泛的采样情况下,尤其是当预期发生大量重组时,用于进化推理的传统统计方法(例如系统发育分析)会带来一些困难。为了满足对细菌种群结构进行大规模分析的需要,我们在这里介绍了几种统计工具,用于检测和表征种群之间的重组。此外,我们介绍了序列空间中种群形状的基于模型的描述,即其分子变异性和对其他种群的亲和力。来自奈瑟氏球菌属的大量真实数据被用于证明将这些种群遗传工具与系统发育分析相结合的方法的潜力。 BAPS 5.2软件免费提供此处介绍的统计工具,可以从http://web.abo.fi/fak/mnf/mate/jc/software/baps.html下载。

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