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结构调制肠道微生物群揭示薏苡仁有助于小鼠减肥。

Structural modulation of gut microbiota reveals Coix seed contributes to weight loss in mice.

机构信息

BGI Education Center, University of Chinese Academy of Sciences, Main building, Beishan Industrial Zone, Yantian District, Shenzhen, 518083, China.

出版信息

Appl Microbiol Biotechnol. 2019 Jul;103(13):5311-5321. doi: 10.1007/s00253-019-09786-z. Epub 2019 Apr 16.

DOI:10.1007/s00253-019-09786-z
PMID:30993386
Abstract

Coix seed (CS) is widely used as food material and herbal medicine in Asian countries with hypolipidemic and anti-inflammatory properties. But whether CS takes effect by modulating the composition of the gut microbiota remains unknown. Here, three groups of mice were fed different diets for 5 weeks: standard chow, high fat (HF), and CS added to HF. As compared to chow, mice in HF group demonstrated a significant increase in body weight (BW), fat mass (FM), together with total cholesterol (TC), and they even developed impaired glucose tolerance. These HF-mediated deleterious metabolic effects were counteracted partly by complementing CS. 16S rRNA gene sequencing analysis revealed CS increased the abundance of genera Lactobacillus, Coprococcus, and Akkermansia in the gut microbita, and it also enriched species Akkermansia muciniphila and Lactobacillus agilis. A. muciniphila was reported to be inversely associated with obesity, diabetes and cardiometabolic diseases, while L. agilis was negatively associated with TC, BW, FM and blood glucose in our data. We identified CS-altered microbial metabolic pathways that were linked to Glycerolipid metabolism, Biosynthesis of unsaturated fatty acids, sulfur reduction, and glutathione transport system. Our results indicate CS may be used as prebiotic agents to lose weight and prevent obesity-related metabolic disorders.

摘要

薏苡仁(CS)作为一种药食同源的食品,在亚洲国家具有降脂和抗炎作用。然而,CS 是否通过调节肠道微生物群落的组成发挥作用尚不清楚。本研究将三组小鼠分别用三种不同的饮食喂养 5 周:标准饮食、高脂饮食和 CS 补充的高脂饮食。与标准饮食组相比,高脂饮食组小鼠的体重(BW)、脂肪量(FM)和总胆固醇(TC)显著增加,且糖耐量受损。CS 部分逆转了 HF 引起的这些有害代谢作用。16S rRNA 基因测序分析表明,CS 增加了肠道微生物群中乳杆菌属、毛螺菌属和阿克曼氏菌属的丰度,还富集了阿克曼氏菌属和活跃乳杆菌属。据报道,阿克曼氏菌与肥胖、糖尿病和心血管代谢疾病呈负相关,而在我们的数据中,活跃乳杆菌属与 TC、BW、FM 和血糖呈负相关。我们确定了 CS 改变的微生物代谢途径,这些途径与甘油酯代谢、不饱和脂肪酸的生物合成、硫还原和谷胱甘肽转运系统有关。我们的研究结果表明,CS 可以作为一种益生菌来减轻体重和预防肥胖相关的代谢紊乱。

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