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MetGEMs Toolbox: Metagenome-scale models as integrative toolbox for uncovering metabolic functions and routes of human gut microbiome

机译:Metgems Toolbox:MetageNole-Scale模型作为综合工具箱,用于揭示代谢功能和人体肠道微生物组的路由

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Investigating metabolic functional capability of a human gut microbiome enables the quantification of microbiome changes, which can cause a phenotypic change of host physiology and disease. One possible way to estimate the functional capability of a microbial community is through inferring metagenomic content from 16S rRNA gene sequences. Genomescale models (GEMs) can be used as scaffold for functional estimation analysis at a systematic level, however up to date, there is no integrative toolbox based on GEMs for uncovering metabolic functions. Here, we developed the MetGEMs (metagenome-scale models) toolbox, an open-source application for inferring metabolic functions from 16S rRNA gene sequences to facilitate the study of the human gut microbiome by the wider scientific community. The developed toolbox was validated using shotgun metagenomic data and shown to be superior in predicting functional composition in human clinical samples compared to existing state-of-the-art tools. Therefore, the MetGEMs toolbox was subsequently applied for annotating putative enzyme functions and metabolic routes related in human disease using atopic dermatitis as a case study.
机译:人类肠道微生物的代谢调查功能能力使得微生物的定量变化,这可能会导致宿主生理和疾病的表型改变。以估计微生物群落的功能性的一种可能的方式是通过从推断的16S rRNA基因序列的宏基因组的内容。 Genomescale模型(GEMS)可以作为支架用于在系统级功能的估计分析,但是最新的,有根据的宝石揭示代谢功能没有综合工具箱。在这里,我们开发了MetGEMs(宏基因组规模的模式)的工具箱,用于推断从16S rRNA基因序列的代谢功能被更广泛的科学界,以促进人体肠道微生物组研究中的一个开放源代码的应用程序。使用宏基因组鸟枪数据的发达工具箱进行了验证和证明是在比现有状态的最先进的工具的人临床样品中的预测功能组合物优异。因此,工具箱被随后施加用于注释使用特应性人类疾病相关的推定酶功能和代谢路由MetGEMs皮炎作为案例研究。

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