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Analysis of the effect of oat fl- glucan on gut microbiota and clarification of their interaction relationship

Journal of Cereal Science(2024)

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Abstract
Oat fl-glucan is catabolized by gut microbiota, however, the interaction relationship between fl-glucan and gut microbiota is unclear. We aim to investigate the primary intestinal microbial species responsible for oat fl-glucan degradation and explore their interaction. The result of in vitro fermentation showed that fl-glucan significantly altered gut microbiota composition and primary microbial species responding to fl-glucan was Lactobacillus . A total of 4 strains of Lactobacillus murinus were in vitro obtained and inoculated in the medium containing fl-glucan as the sole carbon source to verify their association with fl-glucan, and result showed that 4 strains of L. murinus could indeed degrade fl-glucan. Genome analysis suggested that 4 strains of L. murinus contained abundant carbohydrate enzymes -encoding genes, among which genes encoding glycoside hydrolases family 1 (GH1) were most likely associated with fl-glucan degradation. Further analysis revealed that GH1 could bind to fl-glucan units through hydrogen bonding. Our study provides a novel insight into the research on interplay between dietary components and gut microbiota, and strategy for the exploration of potential carbohydrate hydrolase from gut microbiota for cereal fl-glucan processing.
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Key words
beta-Glucan,Gut microbiota,Lactobacillus,Glycoside hydrolase
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