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Cross-Feeding between Bifidobacterium longum BB536 and Acetate-Converting, Butyrate-Producing Colon Bacteria during Growth on Oligofructose▿

机译:长果双歧杆菌BB536与低聚果糖生长过程中乙酸转化,产生丁酸的结肠细菌之间的交叉饲养

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摘要

In vitro coculture fermentations of Bifidobacterium longum BB536 and two acetate-converting, butyrate-producing colon bacteria, Anaerostipes caccae DSM 14662 and Roseburia intestinalis DSM 14610, with oligofructose as the sole energy source, were performed to study interspecies interactions. Two clearly distinct types of cross-feeding were identified. A. caccae DSM 14662 was not able to degrade oligofructose but could grow on the fructose released by B. longum BB536 during oligofructose breakdown. R. intestinalis DSM 14610 could degrade oligofructose, but only after acetate was added to the medium. Detailed kinetic analyses of oligofructose breakdown by the last strain revealed simultaneous degradation of the different chain length fractions, in contrast with the preferential degradation of shorter fractions by B. longum BB536. In a coculture of both strains, initial oligofructose degradation and acetate production by B. longum BB536 took place, which in turn also allowed oligofructose breakdown by R. intestinalis DSM 14610. These and similar cross-feeding mechanisms could play a role in the colon ecosystem and contribute to the combined bifidogenic/butyrogenic effect observed after addition of inulin-type fructans to the diet.
机译:以低聚果糖为唯一能源,进行了长双歧杆菌BB536和两种转化乙酸盐,产生丁酸盐的结肠细菌Anaerostipes caccae DSM 14662和Roseburia intestinalis DSM 14610的体外共培养发酵,以研究种间相互作用。确定了两种明显不同的交叉进纸类型。 A. caccae DSM 14662不能降解低聚果糖,但可以在低聚果糖分解过程中在长双歧杆菌BB536释放的果糖上生长。小肠念珠菌DSM 14610可以降解低聚果糖,但仅在将乙酸盐添加到培养基中后才能降解。最终菌株对低聚果糖分解的详细动力学分析显示,不同链长部分同时降解,而长双歧杆菌BB536优先降解较短部分。在两个菌株的共培养中,长双歧杆菌BB536发生了最初的低聚果糖降解和乙酸生成,这反过来也使得肠道果蝇(R. intestinalis)DSM 14610分解了低聚果糖。这些和类似的交叉喂养机制可能在结肠生态系统中起作用并向日粮中添加菊粉型果聚糖后,促进了双歧/丁生成的综合作用。

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