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How can microbial population genomics inform community ecology?

机译:微生物种群基因组学如何告知社区生态学?

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Populations are fundamental units of ecology and evolution, but can we define them for bacteria and archaea in a biologically meaningful way? Here, we review why population structure is difficult to recognize in microbes and how recent advances in measuring contemporary gene flow allow us to identify clearly delineated populations among collections of closely related genomes. Such structure can arise from preferential gene flow caused by coexistence and genetic similarity, defining populations based on biological mechanisms. We show that such gene flow units are sufficiently genetically isolated for specific adaptations to spread, making them also ecological units that are differentially adapted compared to their closest relatives. We discuss the implications of these observations for measuring bacterial and archaeal diversity in the environment. We show that operational taxonomic units defined by 16S rRNA gene sequencing have woefully poor resolution for ecologically defined populations and propose monophyletic clusters of nearly identical ribosomal protein genes as an alternative measure for population mapping in community ecological studies employing metagenomics. These population-based approaches have the potential to provide much-needed clarity in interpreting the vast microbial diversity in human and environmental microbiomes. This article is part of the theme issue 'Conceptual challenges in microbial community ecology'.
机译:人群是生态和进化的基本单位,但我们可以以生物学上有意义的方式为细菌和古代定义它们吗?在这里,我们审查为什么人口结构在微生物中难以识别,以及测量当代基因流程的最新进步允许我们在密切相关基因组的收集中识别明确描绘的群体。这种结构可能来自由共存和遗传相似性引起的优先基因流动,基于生物机制定义群体。我们表明,这种基因流动单元足够遗传地分离出特定的适应来扩散,使它们也与其最接近的亲属相比差异化的生态单元。我们讨论这些观察结果对环境中的细菌和古代多样性的影响。我们表明,由16S rRNA基因测序定义的操作分类单位对生态定义群体的分辨率较差,并且提出了几乎相同的核糖体蛋白基因的单晶簇作为雇用Metagenomics群落生态学研究人口映射的替代措施。这些基于人群的方法有可能在解释人类和环境微生物体中的广泛微生物多样性方面提供急需的清晰度。本文是主题问题的一部分问题在微生物群落生态学中的概念挑战的一部分。

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