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首页> 外文期刊>Environmental microbiology >The human gut microbiome in health: establishment and resilience of microbiota over a lifetime
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The human gut microbiome in health: establishment and resilience of microbiota over a lifetime

机译:健康中的人类肠道微生物组:一生中微生物群的建立和适应力

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摘要

With technological advances in culture-independent molecular methods, we are uncovering a new facet of our natural history by accounting for the vast diversity of microbial life which colonizes the human body. The human microbiome contributes functional genes and metabolites which affect human physiology and are, therefore, considered an important factor for maintaining health. Much has been described in the past decade based primarily on 16S rRNA gene amplicon sequencing regarding the diversity, structure, stability and dynamics of human microbiota in their various body habitats, most notably within the gastrointestinal tract (GIT). Relatively high levels of variation have been described across different stages of life and geographical locations for the GIT microbiome. These observations may prove helpful for the future contextualization of patterns in other body habitats especially in relation to identifying generalizable trends over human lifetime. Given the large degree of complexity and variability, a key challenge will be how to define baseline healthy microbiomes and how to identify features which reflect deviations therefrom in the future. In this context, metagenomics and functional omics will likely play a central role as they will allow resolution of microbiome-conferred functionalities associated with health. Such information will be vital for formulating therapeutic interventions aimed at managing microbiota-mediated health particularly in the GIT over the course of a human lifetime.
机译:随着不依赖文化的分子方法的技术进步,我们通过解释定居在人体中的微生物生命的广泛多样性,发现了自然历史的一个新方面。人类微生物组贡献了影响人类生理的功能基因和代谢产物,因此被认为是维持健康的重要因素。在过去的十年中,已经有很多关于16S rRNA基因扩增子测序的描述,涉及到人类微生物群在其各种体部生境中的多样性,结构,稳定性和动力学,尤其是在胃肠道(GIT)中。已针对GIT微生物组在生活的不同阶段和地理位置描述了相对较高的变异水平。这些观察结果可能会有助于其他身体栖息地的格局在未来的情境化,特别是在确定人类一生的普遍趋势方面。考虑到高度的复杂性和可变性,一个关键的挑战将是如何定义基线健康的微生物群,以及如何识别反映其未来差异的特征。在这种情况下,宏基因组学和功能组学将可能发挥核心作用,因为它们将允许解析与健康相关的微生物组赋予的功能。此类信息对于制定旨在管理微生物群介导的健康的治疗干预至关重要,特别是在人类一生中的GIT中。

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