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Vitamin Biosynthesis by Human Gut Butyrate-Producing Bacteria and Cross-Feeding in Synthetic Microbial Communities

机译:维生素生物合成的人体肠道丁酸盐产生的细菌和合成微生物群落的交叉喂养

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We investigated the requirement of 15 human butyrate-producing gut bacterial strains for eight B vitamins and the proteinogenic amino acids by a combination of genome sequence analysis and in vitro growth experiments. The Ruminococcaceae species Faecalibacterium prausnitzii and Subdoligranulum variabile were auxotrophic for most of the vitamins and the amino acid tryptophan. Within the Lachnospiraceae , most species were prototrophic for all amino acids and several vitamins, but biotin auxotrophy was widespread. In addition, most of the strains belonging to Eubacterium rectale and Roseburia spp., but few of the other Lachnospiraceae strains, were auxotrophic for thiamine and folate. Synthetic coculture experiments of five thiamine or folate auxotrophic strains with different prototrophic bacteria in the absence and presence of different vitamin concentrations were carried out. This demonstrated that cross-feeding between bacteria does take place and revealed differences in cross-feeding efficiency between prototrophic strains. Vitamin-independent growth stimulation in coculture compared to monococulture was also observed, in particular for F. prausnitzii A2-165, suggesting that it benefits from the provision of other growth factors from community members. The presence of multiple vitamin auxotrophies in the most abundant butyrate-producing Firmicutes species found in the healthy human colon indicates that these bacteria depend upon vitamins supplied from the diet or via cross-feeding from other members of the microbial community.
机译:通过组合基因组序列分析和体外生长实验,我们调查了八族维生素和蛋白质氨基酸的15人丁酸肠道细菌菌株的要求。喇叭杆菌菌属FACALIBALACTIUMSPRAUSNITZII和Subdolaranulum变形是大多数维生素和氨基酸色氨酸的滋巢营养性。在Lachnospiraceae内,大多数物种是所有氨基酸和几种维生素的原型,但生物素滋巢营养素很普遍。此外,大多数属于细胞直肠和Roseburia SPP的菌株。但其他的其他Lachnospireae菌株中很少是辅助营养营养素的血液植物和叶酸。进行了在不存在和存在不同的维生素浓度的情况下具有不同原型细菌的五种硫胺素或叶子疾动营养菌株的合成共培养株。这证明了细菌之间的交叉喂养确实发生并揭示了原型菌株之间的交叉喂养效率的差异。还观察到与单一缔和生相比的维生素无关的生长刺激,特别是对于F.Prausnitzii A2-165,这表明它从提供社区成员的其他增长因素中受益。在健康人结肠中发现的最丰富的丁酸丁酸的多种物种中存在多种维生素滋巢营的存在表明这些细菌依赖于饮食中提供的维生素或通过微生物群落的其他成员的交叉饲喂。

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