丙酸盐
益生元
肠道菌群
发酵
双歧杆菌
真细菌
多糖
拟杆菌
厚壁菌
生物化学
拟杆菌
乳酸菌
食品科学
化学
丁酸盐
微生物代谢
碳水化合物
生物
细菌
遗传学
16S核糖体RNA
基因
作者
Jiaxiong Wu,Chengxiao Yu,Sihuan Shen,Yanming Ren,Huan Cheng,Hang Xiao,Donghong Liu,Shiguo Chen,Xingqian Ye,Jianle Chen
标识
DOI:10.1021/acs.jafc.2c07675
摘要
In this study, the fermentation characteristics of high rhamnogalacturonan I pectic polysaccharides (RGI) and free-radical degraded RGI (DRGI) were evaluated by a human fecal batch-fermentation model, and their structural properties were also investigated. As a result, the Mw of RGI decreased from 246.8 to 11.6 kDa, and the branches were broken dramatically. Fermentation showed that RGI degraded faster and produced more acetate and propionate than DRGI. Both of them reduced the Firmicutes/Bacteroidetes ratio and promoted the development of Bacteroides, Bifidobacterium, and Lactobacillus, bringing benefits to the gut ecosystem. However, the composition and metabolic pathways of the microbiota in RGI and DRGI were different. Most of the dominant bacteria of RGI (such as [Eubacterium]_eligens_group) participated in carbohydrate utilization, leading to better performance in glucolipid metabolism and energy metabolism. This work elucidated that large molecular weight matters in the gut microbiota modulatory effect of RGI-type pectic polysaccharides in vitro.
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