Meta-analysis of metagenomics reveals the signatures of vaginal microbiome in preterm birth

Yingfang Huo, Qingru Jiang, Wenjing Zhao
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引用次数: 3

Abstract

Preterm birth (PTB) is the main cause of perinatal incidence rate and mortality worldwide and seriously threatens lives of newborns. In order to improve the understanding of PTB etiology, this study aimed to investigate associations between vaginal microbiome and PTB. We conducted an in-depth meta-analysis on publicly available shotgun metagenomics datasets of vaginal microbiome, including comparisons of microbial composition, metabolic pathways, biosynthetic gene clusters (BGCs), and virulence factors (VFs) between PTB and Healthy groups. Our results showed that 113 species existed in PTB group and 161 species in Healthy group, and their species compositions were significantly different. PTB group was associated with six species, namely Lactobacillus crispatus, Atopobium vaginae, Prevotella bivia, Neisseria subflava, Corynebacterium sp. HMSC078H07 and Capnocytophaga leadbetteri. Between the two groups exhibited 314 significantly different KEGG orthologys. The distribution of BGCs in PTB group were significantly different from that in Healthy group. The total amount of BGCs in PTB group was 95 and they were divided into 12 types, in Healthy group 300 BGCs into 16 types. We also obtained 7080 types of VF genes in PTB group, and 10,748 in Healthy group. The virulence gene with the highest proportion in both groups was ssrA. To conclude, this meta-analysis indicated that significant differences of microbial relative abundance were observed between PTB and Healthy groups. PTB group carried less total amount and types of BGCs, and less types of VFs than those in Healthy group, and PTB group showed significantly different metabolic pathways from Healthy group. We also provided new hypotheses related to vaginal microbiome and PTB.

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元基因组学的荟萃分析揭示了早产阴道微生物组的特征
早产是全世界围产期发病率和死亡率的主要原因,严重威胁着新生儿的生命。为了提高对PTB病因学的认识,本研究旨在探讨阴道微生物组与PTB的关系。我们对公开可用的阴道微生物组霰弹枪宏基因组学数据集进行了深入的荟萃分析,包括比较PTB组和健康组之间的微生物组成、代谢途径、生物合成基因簇(BGCs)和毒力因子(VFs)。结果表明,PTB组有113种,健康组有161种,物种组成差异显著。PTB组与crispatbacillus、Atopobium vaginae、provotella bivia、Neisseria subflava、Corynebacterium sp. HMSC078H07、Capnocytophaga leadbetteri 6种细菌相关。两组间存在314个显著不同的KEGG同源性。PTB组BGCs分布与健康组有显著性差异。PTB组BGCs总数为95个,分为12种类型,健康组BGCs总数为300个,分为16种类型。我们还在PTB组获得了7080个VF基因,在健康组获得了10748个VF基因。两组中占比最高的毒力基因均为ssrA。综上所述,本荟萃分析表明,PTB组和健康组之间的微生物相对丰度存在显著差异。PTB组BGCs总量、类型、VFs类型均少于健康组,代谢途径与健康组有显著差异。我们还提出了与阴道微生物组和PTB有关的新假设。
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来源期刊
Medicine in Microecology
Medicine in Microecology Medicine-Gastroenterology
CiteScore
5.60
自引率
0.00%
发文量
16
审稿时长
76 days
期刊最新文献
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