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Bacteroides and related species: The keystone taxa of the human gut microbiota

生物 脆弱类杆菌 拟杆菌 肠道菌群 拟杆菌 微生物学 殖民抵抗 人体胃肠道 微生物群 人体微生物群 胃肠道 殖民地化 细菌 免疫学 生物信息学 抗生素 遗传学 生物化学
作者
Jae Hyun Shin,Glenn Tillotson,Tiffany N. MacKenzie,Cirle A. Warren,Hannah M. Wexler,Ellie J. C. Goldstein
出处
期刊:Anaerobe [Elsevier BV]
卷期号:85: 102819-102819 被引量:43
标识
DOI:10.1016/j.anaerobe.2024.102819
摘要

Microbial communities play a significant role in maintaining ecosystems in a healthy homeostasis. Presently, in the human gastrointestinal tract, there are certain taxonomic groups of importance, though there is no single species that plays a keystone role. Bacteroides spp. are known to be major players in the maintenance of eubiosis in the human gastrointestinal tract. Here we review the critical role that Bacteroides play in the human gut, their potential pathogenic role outside of the gut, and their various methods of adapting to the environment, with a focus on data for B. fragilis and B. thetaiotaomicron. Bacteroides are anaerobic non-sporing Gram negative organisms that are also resistant to bile acids, generally thriving in the gut and having a beneficial relationship with the host. While they are generally commensal organisms, some Bacteroides spp. can be opportunistic pathogens in scenarios of GI disease, trauma, cancer, or GI surgery, and cause infection, most commonly intra-abdominal infection. B. fragilis can develop antimicrobial resistance through multiple mechanisms in large part due to its plasticity and fluid genome. Bacteroidota (formerly, Bacteroidetes) have a very broad metabolic potential in the GI microbiota and can rapidly adapt their carbohydrate metabolism to the available nutrients. Gastrointestinal Bacteroidota species produce short-chain fatty acids such as succinate, acetate, butyrate, and occasionally propionate, as the major end-products, which have wide-ranging and many beneficial influences on the host. Bacteroidota, via bile acid metabolism, also play a role in in colonization-resistance of other organisms, including Clostridioides difficile, and maintenance of gut integrity.
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