Deciphering bifidobacterial-mediated metabolic interactions and their impact on gut microbiota by a multi-omics approach

被引:142
|
作者
Turroni, Francesca [1 ,2 ,3 ]
Milani, Christian [3 ]
Duranti, Sabrina [3 ]
Mancabelli, Leonardo [3 ]
Mangifesta, Marta [4 ]
Viappiani, Alice [4 ]
Lugli, Gabriele Andrea [3 ]
Ferrario, Chiara [3 ]
Gioiosa, Laura [5 ]
Ferrarini, Alberto [6 ]
Li, Jia [7 ]
Palanza, Paola [5 ]
Delledonne, Massimo [6 ]
van Sinderen, Douwe [1 ,2 ]
Ventura, Marco [3 ]
机构
[1] Natl Univ Ireland, APC Microbiome Inst, Cork, Ireland
[2] Natl Univ Ireland, Sch Microbiol, Cork, Ireland
[3] Univ Parma, Dept Life Sci, Lab Probiogen, Parco Area Sci 11-A, I-43124 Parma, Italy
[4] GenProbio Srl, Parma, Italy
[5] Univ Parma, Dept Neurosci, Parco Area Sci 11-A, I-43124 Parma, Italy
[6] Univ Verona, Dept Biotechnol, I-37100 Verona, Italy
[7] Univ London Imperial Coll Sci Technol & Med, Dept Surg & Canc, Fac Med, London, England
来源
ISME JOURNAL | 2016年 / 10卷 / 07期
基金
爱尔兰科学基金会;
关键词
BUTYRATE-PRODUCING BACTERIA; HUMAN INTESTINAL-TRACT; CHAIN FATTY-ACIDS; BIFIDUM PRL2010; GENOME SEQUENCE; BREVE UCC2003; HOST; HEALTH; DIET; DIVERSITY;
D O I
10.1038/ismej.2015.236
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The intricacies of cooperation and competition between microorganisms are poorly investigated for particular components of the gut microbiota. In order to obtain insights into the manner by which different bifidobacterial species coexist in the mammalian gut, we investigated possible interactions between four human gut commensals, Bifidobacterium bifidum PRL2010, Bifidobacterium adolescentis 22L, Bifidobacterium breve 12L and Bifidobacterium longum subsp. infantis ATCC15697, in the intestine of conventional mice. The generated information revealed various ecological/metabolic strategies, including glycan-harvesting, glycan-breakdown and cross-feeding behavior, adopted by bifidobacteria in the highly competitive environment of the mammalian intestine. Introduction of two or multiple bifidobacterial strains caused a clear shift in the microbiota composition of the murine cecum. Whole-genome transcription profiling coupled with metagenomic analyses of single, dual or multiple associations of bifidobacterial strains revealed an expansion of the murine gut glycobiome toward enzymatic degradation of plant-derived carbohydrates, such as xylan, arabinoxylan, starch and host-derived glycan substrates. Furthermore, these bifidobacterial communities evoked major changes in the metabolomic profile of the microbiota as observed by shifts in short chain fatty acid production and carbohydrate availability in the murine cecum. Overall, these data support an ecological role of bifidobacteria acting directly or through cross-feeding activities in shaping the gut murine microbiome to instigate an enrichment of saccharolytic microbiota.
引用
收藏
页码:1656 / 1668
页数:13
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