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Inferring Speciation Processes from Patterns of Natural Variation in Microbial Genomes

机译:从微生物基因组的自然变异模式推断物种形成过程

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摘要

Microbial species concepts have long been the focus of contentious debate, fueled by technological limitations to the genetic resolution of species, by the daunting task of investigating phenotypic variation among individual microscopic organisms, and by a lack of understanding of gene flow in reproductively asexual organisms that are prone to promiscuous horizontal gene transfer. Population genomics, the emerging approach of analyzing the complete genomes of a multitude of closely related organisms, is poised to overcome these limitations by providing a window into patterns of genome variation revealing the evolutionary processes through which species diverge. This new approach is more than just an extension of previous multilocus sequencing technologies, in that it provides a comprehensive view of interacting evolutionary processes. Here we argue that the application of population genomic tools in a rigorous population genetic framework will help to identify the processes of microbial speciation and ultimately lead to a general species concept based on the unique biology and ecology of microorganisms.
机译:长期以来,微生物物种概念一直是引起争议的争论焦点,其原因是物种遗传分辨率的技术局限性,研究单个微观生物之间表型变异的艰巨任务以及对生殖性无性生物中基因流缺乏了解导致容易发生混杂的水平基因转移。人口基因组学是一种分析众多密切相关生物完整基因组的新兴方法,它通过提供一个揭示基因组变异模式的窗口来克服这些局限,从而克服了这些限制。这种新方法不仅仅是对以前的多基因座测序技术的扩展,它还提供了相互作用的进化过程的全面视图。在这里,我们认为,在严格的种群遗传框架中应用种群基因组学工具将有助于识别微生物的形成过程,并最终导致基于微生物独特的生物学和生态学的一般物种概念。

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