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探索泰国成年人肠道微生物群在益生元饮食作用下的功能多样性和代谢活性。

Exploring the functional diversity and metabolic activities of the human gut microbiome in Thai adults in response to a prebiotic diet.

作者信息

Kingkaw Amornthep, Patumcharoenpol Preecha, Suratannon Narissara, Nakphaichit Massalin, Roytrakul Sittiruk, Vongsangnak Wanwipa

机构信息

Interdisciplinary Graduate Program in Bioscience, Faculty of Science, Kasetsart University, Bangkok, Thailand.

Pediatric Allergy & Clinical Immunology Research Unit, Division of Allergy and Immunology, Department of Pediatrics, Faculty of Medicine, Chulalongkorn University, King Chulalongkorn Memorial Hospital, the Thai Red Cross Society, Bangkok, Thailand.

出版信息

Microbiol Spectr. 2025 Feb 4;13(2):e0159924. doi: 10.1128/spectrum.01599-24. Epub 2024 Dec 13.

Abstract

Exploring dietary methods to alter microbial communities and metabolic functions is becoming an increasingly fascinating strategy for improving health. Copra meal hydrolysate (CMH) is alternatively used as a gut health supplement. However, the functional diversity and metabolic activities in gut microbiome in relation to CMH treatment remain largely unknown. Therefore, this study aimed to identify key predominant groups of bacterial species toward diversified metabolic functions, activities, and routes using metaproteomics. As a result, the integrative analysis of metaproteomic data revealed that seven key families across 11 dominant gut bacterial species were concerted. Consistently, across 76,206 proteins assigned to the metabolism of the 255,964 annotated proteins, short-chain fatty acid (SCFA) biosynthesis, lipopolysaccharide (LPS) biosynthesis, and bile acid (BA) metabolism were positively associated with CMH. Further identification of cooperative metabolic routes promisingly highlighted the importance of glycolysis/gluconeogenesis, tricarboxylic acid (TCA) cycle, inositol phosphate metabolism, steroid hormone biosynthesis, O-antigen repeat unit biosynthesis, and chloroalkane and chloroalkene degradation. This work presents an initial study of metaproteomics associated with prebiotic diet in a Thai population-based cohort in a developing Southeast Asian country.IMPORTANCEStudies primarily focused on the impact of CMH on gastrointestinal symptoms and gut microbial compositions. However, as the field moves toward understanding the relationship between microbiome and diet in relation to gut health, it is critical to evaluate how changes in metabolic activities relate to cooperative metabolic routes in the gut microbiome for promoting human health. Through the use of metaproteomics, our findings highlighted the key predominant groups of bacterial species, potential proteins, and their metabolic routes involved in gut metabolism. This study provides comprehensive insights into the fundamental relationship between microbiome and dietary supplements and suggests that metaproteomics is a powerful method for monitoring metabolic functions, activities, and routes in the gut microbiome.

摘要

探索改变微生物群落和代谢功能的饮食方法正日益成为一种改善健康的极具吸引力的策略。椰粕水解物(CMH)可作为肠道健康补充剂使用。然而,与CMH治疗相关的肠道微生物群的功能多样性和代谢活性在很大程度上仍不清楚。因此,本研究旨在使用元蛋白质组学确定具有多样化代谢功能、活性和途径的关键优势细菌种类。结果,元蛋白质组学数据的综合分析表明,11种主要肠道细菌中的7个关键菌科协同作用。一致地,在255,964个注释蛋白质中,有76,206个蛋白质参与代谢,短链脂肪酸(SCFA)生物合成、脂多糖(LPS)生物合成和胆汁酸(BA)代谢与CMH呈正相关。对合作代谢途径的进一步鉴定突出了糖酵解/糖异生、三羧酸(TCA)循环、肌醇磷酸代谢、类固醇激素生物合成、O抗原重复单元生物合成以及氯代烷烃和氯代烯烃降解的重要性。这项工作是在一个发展中的东南亚国家基于泰国人群的队列中对与益生元饮食相关的元蛋白质组学进行的初步研究。重要性研究主要集中在CMH对胃肠道症状和肠道微生物组成的影响上。然而,随着该领域朝着理解微生物组与饮食在肠道健康方面的关系发展,评估代谢活性的变化如何与肠道微生物组中的合作代谢途径相关联以促进人类健康至关重要。通过使用元蛋白质组学,我们的研究结果突出了肠道代谢中关键的优势细菌种类、潜在蛋白质及其代谢途径。这项研究为微生物组与膳食补充剂之间的基本关系提供了全面的见解,并表明元蛋白质组学是监测肠道微生物组代谢功能、活性和途径的有力方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3910/11792504/8e4e8d8d9773/spectrum.01599-24.f001.jpg

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