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首页> 外文期刊>Canadian journal of microbiology >Growth and bile tolerance of Lactobacillus brevis strains isolated from Japanese pickles in artificial digestive juices and contribution of cell-bound exopolysaccharide to cell aggregation
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Growth and bile tolerance of Lactobacillus brevis strains isolated from Japanese pickles in artificial digestive juices and contribution of cell-bound exopolysaccharide to cell aggregation

机译:在人工消化液中从日本泡菜中分离的短乳杆菌的生长和胆汁耐受性以及细胞结合的胞外多糖对细胞聚集的贡献

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Cell-bound exopolysaccharide (EPS) of the aggregable strain Lactobacillus brevis KB290 isolated from traditional Japanese pickles has been reported to protect against the effects of bile. However, there are no reports of bile tolerance mechanisms for other L. brevis strains that have aggregability. To elucidate the mechanism of bile tolerance of L. brevis KB290, we found 8 aggregable L. brevis strains out of 121 L. brevis strains isolated from traditional Japanese fermented pickles. We estimated their growth in artificial digestive juice and the amount of cell-bound EPS. We found 3 types of aggregation for these strains: filiform (<1 mm), medium floc (1-5 mm), or large floc (>5 mm). There was no significant difference in growth between nonaggregable and aggregable strains in the artificial digestive juice. The large floc strains selected from the aggregation strains showed significantly higher growth in the artificial digestive juice than nonaggregable strains. In medium and large floc strains, cell-bound EPS, mainly consisting of glucose, N-acetylglucosamine, and N-acetylmannosamine, were observed. The amount of EPS and each strain's growth index showed a positive correlation. We conclude that aggregable L. brevis strains were also protected by cell-bound EPS.
机译:据报道,从传统的日本泡菜中分离出的可凝集的短乳杆菌KB290的细胞结合胞外多糖(EPS)可防止胆汁感染。但是,没有关于其他具有凝集性的短乳杆菌菌株的胆汁耐受机制的报道。为了阐明短乳杆菌KB290的胆汁耐受性机制,我们从日本传统发酵泡菜中分离出121株短乳杆菌中发现了8种可凝集的短乳杆菌。我们估计了它们在人工消化液中的生长以及细胞结合的EPS的量。我们发现这些菌株的3种聚集类型:丝状(<1 mm),中等絮状物(1-5 mm)或大絮状物(> 5 mm)。人工消化液中不可凝集菌株和不可凝集菌株之间的生长没有显着差异。从聚集菌株中选出的大絮凝菌株在人工消化液中的生长明显高于不可凝集的菌株。在大中型絮凝株中,观察到细胞结合的EPS,主要由葡萄糖,N-乙酰氨基葡萄糖和N-乙酰甘露糖胺组成。 EPS量与各菌株的生长指数呈正相关。我们得出的结论是,可凝集的短乳杆菌菌株也受到细胞结合EPS的保护。

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