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拟杆菌属和双歧杆菌属的聚糖利用系统及其在肠道稳定性和健康中的作用。

Glycan utilisation system in Bacteroides and Bifidobacteria and their roles in gut stability and health.

机构信息

Food and Nutritional Biotechnology Division, National Agri-Food Biotechnology Institute (NABI), SAS, Nagar, Punjab, 140306, India.

出版信息

Appl Microbiol Biotechnol. 2019 Sep;103(18):7287-7315. doi: 10.1007/s00253-019-10012-z. Epub 2019 Jul 22.

Abstract

Gut residential hundred trillion microbial cells are indispensable for maintaining gut homeostasis and impact on host physiology, development and immune systems. Many of them have displayed excellence in utilising dietary- and host-derived complex glycans and are producing useful postbiotics including short-chain fatty acids to primarily fuel different organs of the host. Therefore, employing individual microbiota is nowadays becoming a propitious target in biomedical for improving gut dysbiosis conditions of the host. Among other gut microbial communities, Bacteroides and Bifidobacteria are coevolved to utilise diverse ranges of diet- and host-derived glycans through harmonising distinct glycan utilisation systems. These gut symbionts frequently share digested oligosaccharides, carbohydrate-active enzymes and fermentable intermediate molecules for sustaining gut microbial symbiosis and improving fitness of own or other communities. Genomics approaches have provided unprecedented insights into these functions, but their precise mechanisms of action have poorly known. Sympathetic glycan-utilising strategy of each gut commensal will provide overview of mechanistic dynamic nature of the gut environment and will then assist in applying aptly personalised nutritional therapy. Thus, the review critically summarises cutting edge understanding of major plant- and host-derived glycan-utilising systems of Bacteroides and Bifidobacteria. Their evolutionary adaptation to gut environment and roles of postbiotics in human health are also highlighted.

摘要

肠道内居住着数以万亿计的微生物细胞,这些细胞对于维持肠道内环境的稳定以及对宿主的生理、发育和免疫系统都有着重要的影响。其中许多微生物在利用膳食来源和宿主来源的复杂糖方面表现出色,并产生有用的后生元,包括短链脂肪酸,主要为宿主的不同器官提供燃料。因此,利用个体微生物群成为目前生物医学领域改善宿主肠道菌群失调的一个有前途的目标。在其他肠道微生物群落中,拟杆菌属和双歧杆菌属通过协调不同的聚糖利用系统,共同进化以利用各种饮食和宿主来源的聚糖。这些肠道共生菌经常共享消化的低聚糖、碳水化合物活性酶和可发酵的中间分子,以维持肠道微生物共生关系并提高自身或其他群落的适应性。基因组学方法为这些功能提供了前所未有的见解,但它们的确切作用机制尚不清楚。每种肠道共生菌的共生糖利用策略将提供对肠道环境的机械动态性质的概述,然后有助于应用适当的个性化营养疗法。因此,本文批判性地总结了拟杆菌属和双歧杆菌属利用主要植物和宿主来源聚糖的系统的最新理解。还强调了它们对肠道环境的进化适应以及后生元在人类健康中的作用。

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