Anderson Benjamin D, Bisanz Jordan E
Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA, United States.
The Penn State Microbiome Center, Huck Institutes of the Life Sciences, University Park, PA, United States.
Front Microbiol. 2023 Feb 17;14:1117122. doi: 10.3389/fmicb.2023.1117122. eCollection 2023.
Just because two things are related does not mean they are the same. In analyzing microbiome data, we are often limited to species-level analyses, and even with the ability to resolve strains, we lack comprehensive databases and understanding of the importance of strain-level variation outside of a limited number of model organisms. The bacterial genome is highly plastic with gene gain and loss occurring at rates comparable or higher than mutations. As such, the conserved portion of the genome is often a fraction of the pangenome which gives rise to significant phenotypic variation, particularly in traits which are important in host microbe interactions. In this review, we discuss the mechanisms that give rise to strain variation and methods that can be used to study it. We identify that while strain diversity can act as a major barrier in interpreting and generalizing microbiome data, it can also be a powerful tool for mechanistic research. We then highlight recent examples demonstrating the importance of strain variation in colonization, virulence, and xenobiotic metabolism. Moving past taxonomy and the species concept will be crucial for future mechanistic research to understand microbiome structure and function.
仅仅因为两件事相关并不意味着它们是相同的。在分析微生物组数据时,我们通常局限于物种水平的分析,即使有能力解析菌株,我们也缺乏全面的数据库,并且对有限数量的模式生物之外的菌株水平变异的重要性缺乏了解。细菌基因组具有高度可塑性,基因的获得和丢失发生率与突变相当或更高。因此,基因组的保守部分通常只是泛基因组的一小部分,这会导致显著的表型变异,特别是在宿主与微生物相互作用中重要的性状方面。在这篇综述中,我们讨论了导致菌株变异的机制以及可用于研究它的方法。我们发现,虽然菌株多样性可能成为解释和概括微生物组数据的主要障碍,但它也可以成为机制研究的有力工具。然后,我们强调了最近的一些例子,这些例子证明了菌株变异在定殖、毒力和异源生物代谢中的重要性。超越分类学和物种概念对于未来理解微生物组结构和功能的机制研究至关重要。