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双歧杆菌和拟杆菌属在共发酵中的相互作用受碳源的影响,包括双歧杆菌产生的胞外多糖。

Interactions between Bifidobacterium and Bacteroides species in cofermentations are affected by carbon sources, including exopolysaccharides produced by bifidobacteria.

机构信息

Department of Microbiology and Biochemistry of Dairy Products, Instituto de Productos Lácteos de Asturias, Consejo Superior de Investigaciones Científicas (IPLA-CSIC), Villaviciosa, Asturias, Spain.

出版信息

Appl Environ Microbiol. 2013 Dec;79(23):7518-24. doi: 10.1128/AEM.02545-13. Epub 2013 Sep 27.

Abstract

Cocultures of strains from two Bifidobacterium and two Bacteroides species were performed with exopolysaccharides (EPS) previously purified from bifidobacteria, with inulin, or with glucose as the carbon source. Bifidobacterium longum NB667 and Bifidobacterium breve IPLA20004 grew in glucose but showed poor or no growth in complex carbohydrates (inulin, EPS E44, and EPS R1), whereas Bacteroides grew well in the four carbon sources tested. In the presence of glucose, the growth of Bacteroides thetaiotaomicron DSM-2079 was inhibited by B. breve, whereas it remained unaffected in the presence of B. longum. Ba. fragilis DSM-2151 contributed to a greater survival of B. longum, promoting changes in the synthesis of short-chain fatty acids (SCFA) and organic acids in coculture with respect to monocultures. In complex carbohydrates, cocultures of bifidobacterium strains with Ba. thetaiotaomicron did not modify the behavior of Bacteroides nor improve the poor growth of bifidobacteria. The metabolic activity of Ba. fragilis in coculture with bifidobacteria was not affected by EPS, but greater survival of bifidobacteria at late stages of incubation occurred in cocultures than in monocultures, leading to a higher production of acetic acid than in monocultures. Therefore, cocultures of Bifidobacterium and Bacteroides can behave differently against fermentable carbohydrates as a function of the specific characteristics of the strains from each species. These results stress the importance of considering specific species and strain interactions and not simply higher taxonomic divisions in the relationship among intestinal microbial populations and their different responses to probiotics and prebiotics.

摘要

将先前从双歧杆菌中纯化的胞外多糖 (EPS)、菊粉或葡萄糖作为碳源,与两种双歧杆菌和两种拟杆菌的菌株进行共培养。长双歧杆菌 NB667 和短双歧杆菌 IPLA20004 在葡萄糖中生长,但在复杂碳水化合物(菊粉、EPS E44 和 EPS R1)中生长不良或无法生长,而拟杆菌在四种测试碳源中生长良好。在葡萄糖存在的情况下,Bacteroides thetaiotaomicron DSM-2079 的生长受到短双歧杆菌的抑制,而在长双歧杆菌存在的情况下,其不受影响。脆弱拟杆菌 DSM-2151 有助于长双歧杆菌更好地存活,促进了与单培养相比在共培养中短链脂肪酸 (SCFA) 和有机酸的合成变化。在复杂碳水化合物中,双歧杆菌菌株与 Bacteroides thetaiotaomicron 的共培养并未改变拟杆菌的行为,也没有改善双歧杆菌的不良生长。脆弱拟杆菌在与双歧杆菌共培养中的代谢活性不受 EPS 影响,但在共培养中双歧杆菌在培养后期的存活更好,导致共培养中产生的乙酸比单培养中更多。因此,双歧杆菌和拟杆菌的共培养对可发酵碳水化合物的行为可能因每种物种的菌株的特定特征而异。这些结果强调了在肠道微生物群及其对益生菌和益生元的不同反应的关系中考虑特定物种和菌株相互作用而不仅仅是更高的分类学划分的重要性。

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