生物
基因组
微生物群
拟杆菌
失调
肠道菌群
厚壁菌
生态系统
进化生物学
生态学
细菌
遗传学
计算生物学
生物化学
基因
16S核糖体RNA
作者
Sara Vieira‐Silva,Gwen Falony,Youssef Darzi,Gipsi Lima-Mendez,Roberto Garcia Yunta,Shujiro Okuda,Doris Vandeputte,Mireia Vallés-Colomer,Falk Hildebrand,Samuel Chaffron,Jeroen Raes
出处
期刊:Nature microbiology
日期:2016-06-13
卷期号:1 (8)
被引量:333
标识
DOI:10.1038/nmicrobiol.2016.88
摘要
Despite recent progress, the organization and ecological properties of the intestinal microbial ecosystem remain under-investigated. Here, using a manually curated metabolic module framework for (meta-)genomic data analysis, we studied species-function relationships in gut microbial genomes and microbiomes. Half of gut-associated species were found to be generalists regarding overall substrate preference, but we observed significant genus-level metabolic diversification linked to bacterial life strategies. Within each genus, metabolic consistency varied significantly, being low in Firmicutes genera and higher in Bacteroides. Differentiation of fermentable substrate degradation potential contributed to metagenomic functional repertoire variation between individuals, with different enterotypes showing distinct saccharolytic/proteolytic/lipolytic profiles. Finally, we found that module-derived functional redundancy was reduced in the low-richness Bacteroides enterotype, potentially indicating a decreased resilience to perturbation, in line with its frequent association to dysbiosis. These results provide insights into the complex structure of gut microbiome-encoded metabolic properties and emphasize the importance of functional and ecological assessment of gut microbiome variation in clinical studies.
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