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双歧杆菌对益生元菊粉型果聚糖发酵的体外动力学分析揭示了四种不同表型。

In vitro kinetic analysis of fermentation of prebiotic inulin-type fructans by Bifidobacterium species reveals four different phenotypes.

作者信息

Falony Gwen, Lazidou Katerina, Verschaeren An, Weckx Stefan, Maes Dominique, De Vuyst Luc

机构信息

Research Group of Industrial Microbiology and Food Biotechnology, Department of Applied Biological Sciences and Engineering, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium.

出版信息

Appl Environ Microbiol. 2009 Jan;75(2):454-61. doi: 10.1128/AEM.01488-08. Epub 2008 Nov 14.

Abstract

Kinetic analyses of bacterial growth, carbohydrate consumption, and metabolite production of 18 Bifidobacterium strains grown on fructose, oligofructose, or inulin were performed. A principal component analysis of the data sets, expanded with the results of a genetic screen concerning the presence of a beta-fructofuranosidase gene previously encountered in Bifidobacterium animalis subsp. lactis DSM 10140(T), revealed the existence of four clusters among the bifidobacteria tested. Strains belonging to a first cluster could not degrade oligofructose or inulin. Strains in a second cluster could degrade oligofructose, displaying a preferential breakdown mechanism, but did not grow on inulin. Fructose consumption was faster than oligofructose degradation. A third cluster was composed of strains that degraded all oligofructose fractions simultaneously and could partially break down inulin. Oligofructose degradation was substantially faster than fructose consumption. A fourth, smaller cluster consisted of strains that shared high fructose consumption and oligofructose degradation rates and were able to perform partial breakdown of inulin. For all strains, a metabolic shift toward more acetate, formate, and ethanol production, at the expense of lactate production, was observed during growth on less readily fermentable energy sources. No correlation between breakdown patterns and the presence of the beta-fructofuranosidase gene could be detected. These variations indicate niche-specific adaptation of bifidobacteria and could have in vivo implications on the strain specificity of the stimulatory effect of inulin-type fructans on bifidobacteria.

摘要

对18株双歧杆菌在果糖、低聚果糖或菊粉上生长时的细菌生长、碳水化合物消耗和代谢产物生成进行了动力学分析。利用先前在动物双歧杆菌亚种乳酸双歧杆菌DSM 10140(T)中发现的β-呋喃果糖苷酶基因存在情况的基因筛选结果对数据集进行主成分分析,结果显示在所测试的双歧杆菌中存在四个聚类。属于第一个聚类的菌株不能降解低聚果糖或菊粉。第二个聚类中的菌株能够降解低聚果糖,表现出优先分解机制,但不能在菊粉上生长。果糖消耗速度比低聚果糖降解速度快。第三个聚类由同时降解所有低聚果糖组分并能部分分解菊粉的菌株组成。低聚果糖降解速度明显快于果糖消耗速度。第四个较小的聚类由果糖消耗和低聚果糖降解率高且能够对菊粉进行部分分解的菌株组成。对于所有菌株,在以较难发酵的能量源为底物生长期间,观察到代谢转变为更多地产生乙酸、甲酸和乙醇,同时乳酸生成减少。未检测到分解模式与β-呋喃果糖苷酶基因存在之间的相关性。这些差异表明双歧杆菌具有特定生态位适应性,并且可能对菊粉型果聚糖对双歧杆菌刺激作用的菌株特异性在体内产生影响。

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