动物双歧杆菌
长双歧杆菌
菊粉
鼠李糖乳杆菌
合生元
副干酪乳杆菌
益生菌
干酪乳杆菌
嗜酸乳杆菌
双歧杆菌
罗伊乳杆菌
低聚糖
微生物学
短双歧杆菌
食品科学
益生元
生物
乳酸菌
化学
细菌
生物化学
发酵
遗传学
作者
Yao Dong,Mei Han,Teng Fei,Huan Liu,Zhonghui Gai
标识
DOI:10.1007/s10123-023-00446-x
摘要
Abstract Various approaches have been used to study the relationship between prebiotics and probiotics. The utilization of different carbohydrates by probiotics depends on the biochemical properties of the enzymes and substrates required by the microbial strain. However, few studies have systematically analyzed the ability of probiotics to utilize different prebiotics. Here, we investigated the effects of prebiotics from different manufacturers on the proliferation of 13 strains of the Lactobacillus group and the genus Bifidobacterium co-cultured in vitro. Inulin, fructose-oligosaccharide (FOS), and galactose-oligosaccharide (GOS) had broad growth-promoting effects. FOS significantly promoted the proliferation of B. longum . When strains from Lactobacillus group and Bifidobacterium were co-cultured, FOS caused each strain to proliferate cooperatively. GOS was effectively used by L. rhamnosus and L. reuteri for energy and growth promotion. L. casei and L. paracasei fully metabolized inulin; these strains performed better than other strains from Lactobacillus group and Bifidobacterium . Media containing a mixture of oligosaccharides had stronger effects on the growth of B. animalis subsp. lactis , L. acidophilus , and L. rhamnosus than media containing single oligosaccharides. Thus, different oligosaccharides had different effects on the growth of probiotics, providing a scientific basis for the use of synbiotics in health and related fields.
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