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与生殖器感染相关的计算机功能代谢途径。

In-Silico Functional Metabolic Pathways Associated to Genital Infection.

机构信息

Department of Public Health and Infectious Diseases, Microbiology Section, University of Rome "Sapienza", 00185 Rome, Italy.

Department of Maternal and Child Health and Urology, University of Rome "Sapienza", 00185 Rome, Italy.

出版信息

Int J Mol Sci. 2022 Dec 13;23(24):15847. doi: 10.3390/ijms232415847.

Abstract

The advent of high-throughput technologies, such as 16s rDNA sequencing, has significantly contributed to expanding our knowledge of the microbiota composition of the genital tract during infections such as . The growing body of metagenomic data can be further exploited to provide a functional characterization of microbial communities via several powerful computational approaches. Therefore, in this study, we investigated the predicted metabolic pathways of the cervicovaginal microbiota associated with genital infection in relation to the different Community State Types (CSTs), via PICRUSt2 analysis. Our results showed a more rich and diverse mix of predicted metabolic pathways in women with a CST-IV microbiota as compared to all the other CSTs, independently from infection status. genital infection further modified the metabolic profiles in women with a CST-IV microbiota and was characterized by increased prevalence of the pathways for the biosynthesis of precursor metabolites and energy, biogenic amino-acids, nucleotides, and tetrahydrofolate. Overall, predicted metabolic pathways might represent the starting point for more precisely designed future metabolomic studies, aiming to investigate the actual metabolic pathways characterizing genital infection in the cervicovaginal microenvironment.

摘要

高通量技术的出现,如 16s rDNA 测序,极大地促进了我们对生殖道感染期间微生物群落组成的认识,如 。越来越多的宏基因组数据可以通过几种强大的计算方法进一步用于对微生物群落进行功能特征描述。因此,在这项研究中,我们通过 PICRUSt2 分析,研究了与 生殖器感染相关的宫颈阴道微生物群落的预测代谢途径与不同社区状态类型(CST)之间的关系。我们的结果表明,与所有其他 CST 相比,具有 CST-IV 微生物群落的女性具有更丰富和多样化的预测代谢途径组合,而与感染状态无关。 生殖器感染进一步改变了具有 CST-IV 微生物群落的女性的代谢特征,表现为前体代谢物和能量、生物合成氨基酸、核苷酸和四氢叶酸生物合成途径的流行率增加。总的来说,预测代谢途径可能代表未来更精确设计的代谢组学研究的起点,旨在研究宫颈阴道微环境中 生殖器感染的实际代谢途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d958/9781786/1420030c4acd/ijms-23-15847-g001.jpg

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