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非靶向代谢组学能够灵敏地区分单培养和共培养系统中的肠道细菌种类。

Untargeted Metabolomics Sensitively Differentiates Gut Bacterial Species in Single Culture and Co-Culture Systems.

作者信息

Zhang Shiqi, Zhu Jiangjiang

机构信息

Human Nutrition Program, Department of Human Sciences, The Ohio State University, Columbus, Ohio 43210, United States.

James Comprehensive Cancer Center, The Ohio State University, Columbus, Ohio 43210, United States.

出版信息

ACS Omega. 2022 Apr 22;7(17):14643-14652. doi: 10.1021/acsomega.1c07114. eCollection 2022 May 3.

Abstract

Gut microbiome plays a vital role in human health, and its characteristic has been widely identified through next-generation sequencing techniques. Although with great genomic insights into gut microbiome, its functional information is not clearly elaborated through metagenomic techniques. On the other hand, it is suggested that fecal metabolome can be used as a functional readout of the microbiome composition; therefore, we designed a proof-of-concept study to first characterize the metabolome of different gut microbes and then investigate the relationship between bacterial metabolomes and their compositions in co-culture systems. We selected eight representative bacteria species from (2), (1), (4), and (1) genera as our model microbes. Liquid chromatography coupled mass spectrometry-based untargeted metabolomics was utilized to explore the microbial metabolome of bacteria single cultures and co-culture systems. Through spectral comparisons, our results showed that untargeted metabolomics could capture the similarity and differences in metabolic profiles from eight representative gut bacteria. Also, untargeted metabolomics could sensitively differentiate gut bacterial species based on our statistical analyses. For example, citrulline and histamine levels were significantly different among four species. In addition, in the co-culture systems with different bacteria population ratios, gut bacterial metabolomes can be used to quantitatively reflect bacterial population in a mixed culture. For instance, the relative abundance of 2-hydroxybutyric acid changed proportionately with the changed population ratio of in the co-culture system. In summary, we proposed a workflow that could demonstrate the capability of untargeted metabolomics in differentiating gut bacterial species and detecting their characteristic metabolites proportionally to the microbial population in co-culture systems.

摘要

肠道微生物群在人类健康中起着至关重要的作用,其特征已通过下一代测序技术得到广泛识别。尽管对肠道微生物群有了深入的基因组学认识,但通过宏基因组技术对其功能信息的阐述仍不清晰。另一方面,有人提出粪便代谢组可作为微生物群组成的功能读数;因此,我们设计了一项概念验证研究,首先对不同肠道微生物的代谢组进行表征,然后研究共培养系统中细菌代谢组与其组成之间的关系。我们从(2)属、(1)属、(4)属和(1)属中选择了八种代表性细菌作为我们的模型微生物。利用基于液相色谱-质谱联用的非靶向代谢组学来探索细菌单培养和共培养系统的微生物代谢组。通过光谱比较,我们的结果表明,非靶向代谢组学可以捕捉八种代表性肠道细菌代谢谱的异同。此外,基于我们的统计分析,非靶向代谢组学可以灵敏地区分肠道细菌种类。例如,四种(此处原文未明确细菌属名)细菌中的瓜氨酸和组胺水平存在显著差异。此外,在具有不同细菌种群比例的共培养系统中,肠道细菌代谢组可用于定量反映混合培养中的细菌种群。例如,在共培养系统中,2-羟基丁酸的相对丰度随(此处原文未明确细菌属名)种群比例的变化而成比例变化。总之,我们提出了一种工作流程,该流程可以证明非靶向代谢组学在区分肠道细菌种类以及按比例检测其与共培养系统中微生物种群相关的特征代谢物方面的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5298/9088763/92dcb662eb46/ao1c07114_0002.jpg

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