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Characterizing the endometrial microbiome by analyzing the ultra-low bacteria from embryo transfer catheter tips in IVF cycles: Next generation sequencing (NGS) analysis of the 16S ribosomal gene

机译:通过分析IVF周期中来自胚胎移植导管尖端的超低细菌来表征子宫内膜微生物组:16S核糖体基因的下一代测序(NGS)分析

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There is growing interest in the microbiome of the reproductive tract. The vaginal and placental microbiome has been partially characterized and shown to be related to obstetric outcomes. In this study, we developed a sensitive method to analyze 16S ribosomal RNA profiling from ultra-low bacteria counts, then studied the endometrial microbial environment by analyzing catheter tips after embryo transfers during in vitro fertilization (IVF). An extensive validation was performed on extracted DNA and culture lysates without DNA isolation from the single- or poly-microbial samples of Escherichia coli , Proteus vulgaris , Staphylococcus epidermidis , and Bacillus cereus by Illumina 16S V4 metagenomics workflows. The direct lysis method can reliably detect the genus or species taxonomic level for both single- and poly-microbial samples when there were more than 60 bacterial cells in the culture lysates. Over 99% total operational taxonomic units (OTUs) were assigned to correct genus or species. The endometrial microbiome at the time of embryo transfer was characterized by analyzing catheter tips with Illumina V4 metagenomics for 70 patients who underwent IVF cycles. Lactobacillus spp. were detected in all 70 samples. Other vaginal bacteria ( Corynebacterium , Bifidobacterium , Staphylococcus , and Streptococcus ) were also detected. The Illumina V4 metagenomics workflow with preamplification provided a rapid and sensitive method for the identification of bacterial genus or species in single- or poly-microbial samples and clinical embryo transfer specimens. Ongoing work will illuminate the relationship between endometrial microbiome and reproductive success.
机译:人们对生殖道的微生物组越来越感兴趣。阴道和胎盘微生物组已得到部分表征,并显示与产科预后相关。在这项研究中,我们开发了一种灵敏的方法,可从超低细菌数分析16S核糖体RNA谱,然后通过分析体外受精(IVF)后胚胎移植后的导管尖端来研究子宫内膜微生物环境。 Illumina 16S V4宏基因组学工作流程对提取的DNA和培养物裂解物进行了广泛的验证,而没有从大肠杆菌,寻常变形杆菌,表皮葡萄球菌和蜡状芽孢杆菌的单微生物或多微生物样品中分离DNA。当培养物裂解物中有60个以上的细菌细胞时,直接裂解方法可以可靠地检测单微生物样品和多微生物样品的属或种分类标准。超过99%的总操作分类单位(OTU)被分配给正确的属或物种。胚胎移植时的子宫内膜微生物组的特征是使用Illumina V4宏基因组学分析了70名接受IVF周期的患者的导管尖端。乳杆菌属。在所有70个样品中均检测到。还检测到其他阴道细菌(棒状杆菌,双歧杆菌,葡萄球菌和链球菌)。具有预扩增功能的Illumina V4元基因组学工作流程提供了一种快速灵敏的方法,用于鉴定单微生物或多微生物样品和临床胚胎移植样品中的细菌属或菌种。正在进行的工作将阐明子宫内膜微生物组与生殖成功之间的关系。

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