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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Cell Wall Integrity of Pulse Modulates the in Vitro Fecal Fermentation Rate and Microbiota Composition
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Cell Wall Integrity of Pulse Modulates the in Vitro Fecal Fermentation Rate and Microbiota Composition

机译:脉冲细胞壁完整性调节体外粪便发酵率和微生物酵母组合物

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摘要

The physical structure of type 1 resistant starch (RS 1) could influence the metabolite production and stimulate the growth of specific bacteria in the human colon. In the present study, we isolated intact cotyledon cells from pinto bean seeds as whole pulse food and RS 1 model and obtained a series of cell wall integrities through controlled enzymolysis. In vitro human fecal fermentation performance and microbiota responses were tested, and we reported that the cell wall integrity controls the in vitro fecal fermentation rate of heat-treated pinto bean cells. The concentration of butyrate produced by pinto bean cell fermentation enhanced with weakened cell wall integrity, and certain beneficial bacterial groups such as Blautia and Roseburia genera were remarkably promoted by pinto bean cells with damaged cell wall integrity. However, the intact cell sample had a shape more similar to microbiota composition with the purified cell wall polysaccharides, rather than the damaged cells.
机译:1型抗性淀粉(Rs 1)的物理结构可以影响代谢物生产并刺激人结肠中特定细菌的生长。 在本研究中,我们将完整的子叶细胞分离为整个脉冲食物和Rs 1模型,并通过受控酶解获得一系列细胞壁完整性。 测试体外人类粪便发酵性能和微生物消毒反应,并据报道,细胞壁完整性控制了热处理的泛孔细胞的体外粪便发酵速率。 通过削弱细胞壁完整性增强了甲豆细胞发酵产生的丁酸盐的浓度,并且通过损坏的细胞壁完整性,泛塔豆细胞显着促进了某些有益的细菌基团如Blautia和Roseburia属。 然而,完整的细胞样品具有与微生物生物组合物更类似于纯化的细胞壁多糖的形状,而不是受损细胞。

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