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Functional Metabolic Map of Faecalibacterium prausnitzii, a Beneficial Human Gut Microbe

机译:Faecalibacterium prausnitzii,有益的人类肠道微生物的功能代谢图。

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摘要

The human gut microbiota plays a central role in human well-being and disease. In this study, we present an integrated, iterative approach of computational modeling, in vitro experiments, metabolomics, and genomic analysis to accelerate the identification of metabolic capabilities for poorly characterized (anaerobic) microorganisms. We demonstrate this approach for the beneficial human gut microbe Faecalibacterium prausnitzii strain A2-165. We generated an automated draft reconstruction, which we curated against the limited biochemical data. This reconstruction modeling was used to develop in silico and in vitro a chemically defined medium (CDM), which was validated experimentally. Subsequent metabolomic analysis of the spent medium for growth on CDM was performed. We refined our metabolic reconstruction according to in vitro observed metabolite consumption and secretion and propose improvements to the current genome annotation of F. prausnitzii A2-165. We then used the reconstruction to systematically characterize its metabolic properties. Novel carbon source utilization capabilities and inabilities were predicted based on metabolic modeling and validated experimentally. This study resulted in a functional metabolic map of F. prausnitzii, which is available for further applications. The presented workflow can be readily extended to other poorly characterized and uncharacterized organisms to yield novel biochemical insights about the target organism.
机译:人类肠道菌群在人类福祉和疾病中起着核心作用。在这项研究中,我们提出了一种集成的,迭代的计算模型,体外实验,代谢组学和基因组分析的方法,以加快鉴定不良特性(厌氧)微生物的代谢能力。我们证明了这种方法对有益的人类肠道微生物Faecalibacterium prausnitzii菌株A2-165。我们生成了自动草稿重构,并针对有限的生化数据进行了策划。此重建模型用于在计算机上和体外开发化学确定的介质(CDM),该介质已通过实验验证。随后对用过的培养基在CDM上生长的代谢组学进行了分析。我们根据体外观察到的代谢物消耗和分泌完善了代谢重建,并提出了对F. prausnitzii A2-165当前基因组注释的改进建议。然后,我们使用重建来系统地表征其代谢特性。基于代谢模型预测了新的碳源利用能力和能力,并进行了实验验证。这项研究产生了F. prausnitzii的功能性代谢图谱,该图谱可用于进一步的应用。提出的工作流程可以很容易地扩展到其他特征较差且特性不明的生物,以产生有关目标生物的新颖生化见解。

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