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首页> 外文期刊>Applied and Environmental Microbiology >Mutual Cross-Feeding Interactions between Bifidobacterium longum subsp. longum NCC2705 and Eubacterium rectale ATCC 33656 Explain the Bifidogenic and Butyrogenic Effects of Arabinoxylan Oligosaccharides
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Mutual Cross-Feeding Interactions between Bifidobacterium longum subsp. longum NCC2705 and Eubacterium rectale ATCC 33656 Explain the Bifidogenic and Butyrogenic Effects of Arabinoxylan Oligosaccharides

机译:长双歧杆菌亚种之间的相互交叉进食相互作用。长粒NCC2705和真细菌真细菌ATCC 33656解释了阿拉伯木聚糖寡糖的双歧化和产丁效应

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Arabinoxylan oligosaccharides (AXOS) are a promising class of prebiotics that have the potential to stimulate the growth of bifidobacteria and the production of butyrate in the human colon, known as the bifidogenic and butyrogenic effects, respectively. Although these dual effects of AXOS are considered beneficial for human health, their underlying mechanisms are still far from being understood. Therefore, this study investigated the metabolic interactions between Bifidobacterium longum subsp. longum NCC2705 (B. longum NCC2705), an acetate producer and arabinose substituent degrader of AXOS, and Eubacterium rectale ATCC 33656, an acetate-converting butyrate producer. Both strains belong to prevalent species of the human colon microbiota. The strains were grown on AXOS during mono- and coculture fermentations, and their growth, AXOS consumption, metabolite production, and expression of key genes were monitored. The results showed that the growth of both strains and gene expression in both strains were affected by cocultivation and that these effects could be linked to changes in carbohydrate consumption and concomitant metabolite production. The consumption of the arabinose substituents of AXOS by B. longum NCC2705 with the concomitant production of acetate allowed E. rectale ATCC 33656 to produce butyrate (by means of a butyryl coenzyme A [CoA]:acetate CoA-transferase), explaining the butyrogenic effect of AXOS. Eubacterium rectale ATCC 33656 released xylose from the AXOS substrate, which favored the B. longum NCC2705 production of acetate, explaining the bifidogenic effect of AXOS. Hence, those interactions represent mutual cross-feeding mechanisms that favor the coexistence of bifidobacterial strains and butyrate producers in the same ecological niche. In conclusion, this study provides new insights into the bifidogenic and butyrogenic effects of AXOS.
机译:阿拉伯木聚糖低聚糖(AXOS)是一类有前途的益生元,它们有潜力刺激双歧杆菌的生长和人结肠中丁酸的产生,分别称为双歧作用和丁生成作用。尽管AXOS的这些双重作用被认为对人体健康有益,但其潜在机制仍远未得到了解。因此,本研究调查了长双歧杆菌亚种之间的代谢相互作用。 Longum NCC2705(B. longum NCC2705)是AXOS的乙酸盐生产商和阿拉伯糖取代基降解剂,而Eubacter rectale ATCC 33656是乙酸盐转化型丁酸酯生产商。两种菌株都属于人类结肠微生物群的普遍物种。该菌株在单培养和共培养发酵过程中在AXOS上生长,并监测其生长,AXOS消耗,代谢产物的产生以及关键基因的表达。结果表明,这两种菌株的生长和基因表达都受到共培养的影响,这些作用可能与碳水化合物消耗量的变化和伴随的代谢产物的产生有关。长双歧杆菌NCC2705消耗了AXOS的阿拉伯糖取代基,同时产生了乙酸盐,这使直肠艾美球菌ATCC 33656产生丁酸酯(通过丁酰辅酶A [CoA]:乙酸酯CoA-转移酶),从而解释了产热效应AXOS。真核双歧杆菌ATCC 33656从AXOS底物中释放出木糖,这有利于长双歧杆菌NCC2705产生乙酸盐,从而解释了AXOS的双歧化作用。因此,这些相互作用代表了相互交叉进给的机制,这种机制有利于双歧杆菌菌株和丁酸酯生产者在同一生态位中共存。总而言之,这项研究为AXOS的双歧和丁生成作用提供了新的见解。

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