甲壳素通过人体粪便培养物中的正乙酰葡糖胺促进等醇的产生。

IF 2.5 3区 生物学 Q3 MICROBIOLOGY
Miyuki Kodera, Kohei Nakamura, S Yokoyama
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引用次数: 0

摘要

目标等醇是异黄酮的代谢产物。方法:将人类粪便置于含有 1 mg/L 地屈孕酮、辅以 1%(w/v)膳食纤维(果胶、甲壳素或抗性淀粉 [RS])的岐阜厌氧培养基(GAM)中进行厌氧培养。粪便培养物中的等醇转化率、等醇产生菌数量、pH值、短链脂肪酸(SCFAs)和微生物组成都得到了测定:结果:与对照组相比,甲壳素组的等醇转化率明显提高了 2.7 倍。相反,果胶组的转化率降至十分之一,RS 组降至三分之一。与对照组相比,甲壳素组产生马钱子醇的细菌数量也明显增加。与对照组相比,果胶组和 RS 组的 pH 值和乙酸盐/丙酸盐浓度均有所下降,而甲壳素组则无明显差异。微生物群分析表明,在果胶组和 RS 组中,双歧杆菌和乳酸杆菌的相对丰度增加了,而 Dorea、Lachnoclostridium 和 Eggerthella 的相对丰度降低了。相比之下,甲壳素组中的这些丰度保持稳定。Adlercreutzia 和 Slackia 的相对丰度在所有组中都保持不变。Eggerthella sp. 菌株 YY7918 和 Adlercreutzia equolifaicens JCM14793 的体外培养结果表明,添加 0.5-1%(w/v)的正乙酰葡糖胺(几丁质的分解产物)可刺激由 Daidzein 转化为赤藓糖醇,但几丁质本身不会:我们的研究结果表明,在某些产生等醇的细菌中,分解甲壳素的正乙酰葡糖胺会刺激等醇的产生,而不会影响它们的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chitin promotes equol production via n-acetylglucosamine in human fecal cultures.

Objectives: Equol is a metabolite of isoflavone. Here, we investigated the effect of dietary fiber on equol-producing microbiota.

Methods: Human feces was anaerobically cultured in Gifu Anaerobic Medium (GAM) containing 1 mg/L daidzein supplemented with 1 % (w/v) dietary fiber (pectin, chitin, or resistant starch [RS]). The equol conversion rate, number of equol-producing bacteria, pH, short-chain fatty acids (SCFAs), and microbial composition were measured in fecal cultures.

Results: Equol conversion significantly increased by 2.7-fold in the chitin group compared with the control group. Conversely, the conversion rate decreased to one-tenth in the pectin group and one-third in the RS group. The number of equol-producing bacteria also significantly increased in the chitin group compared with the control group. Whereas pH values and acetate/propionate concentrations decreased in the pectin and RS groups compared with the control group, no significant differences were observed in the chitin group. Microbiota analysis indicated that the relative abundances of Bifidobacterium and Lactobacillus increased, whereas those of Dorea, Lachnoclostridium, and Eggerthella decreased in the pectin and RS groups. In contrast, these abundances remained stable in the chitin group. The relative abundances of Adlercreutzia and Slackia remained unchanged across all groups. In vitro cultures of Eggerthella sp. strain YY7918 and Adlercreutzia equolifaicens JCM14793 demonstrated that equol conversion from daidzein was stimulated by the addition of 0.5-1% (w/v) n-acetylglucosamine, a breakdown product of chitin, but not chitin itself.

Conclusions: Our findings suggest that equol production is stimulated by n-acetylglucosamine, derived from decomposed chitin, in certain equol-producing bacteria without affecting their growth.

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来源期刊
Anaerobe
Anaerobe 生物-微生物学
CiteScore
5.20
自引率
8.70%
发文量
137
审稿时长
76 days
期刊介绍: Anaerobe is essential reading for those who wish to remain at the forefront of discoveries relating to life processes of strictly anaerobes. The journal is multi-disciplinary, and provides a unique forum for those investigating anaerobic organisms that cause infections in humans and animals, as well as anaerobes that play roles in microbiomes or environmental processes. Anaerobe publishes reviews, mini reviews, original research articles, notes and case reports. Relevant topics fall into the broad categories of anaerobes in human and animal diseases, anaerobes in the microbiome, anaerobes in the environment, diagnosis of anaerobes in clinical microbiology laboratories, molecular biology, genetics, pathogenesis, toxins and antibiotic susceptibility of anaerobic bacteria.
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