Nakamura Akihiro, Komatsu Masaru
Department of Clinical Laboratory Science, Faculty of Health Care, Tenri Health Care University, Tenri, Japan.
Department of Clinical Laboratory Science, Faculty of Health Care, Tenri Health Care University, Tenri, Japan.
J Microbiol Methods. 2023 Mar;206:106688. doi: 10.1016/j.mimet.2023.106688. Epub 2023 Feb 9.
Recently, the human gut microbiota has been implicated in various diseases such as immunological and neuropsychiatric disorders, and comprehensive gut microbiota analysis by metagenomic analysis using next-generation sequencers has been attracting attention. In this study, we compared microbial communities of 16S rDNA metagenome sequencing (16S-meta) and whole genome metagenome sequencing (WG-meta) using the nanopore sequencer MinION and 16S-meta using the Illumina Miseq sequencer with simulated and fecal samples, and evaluated the ability of WG-meta to detect antimicrobial resistance genes. We used the commercial Microbial Community DNA Standard as the DNA standard and a simulated sample comprising 17 strains of 15 bacterial species. In the detection of antimicrobial resistance genes, we used a simulated sample and spiked fecal samples containing Escherichia coli carrying bla, Klebsiella pneumoniae carrying bla, and Staphylococcus aureus carrying mecA. WG-meta using MinION was superior to 16S-meta and could accurately analyze the microbial communities at the species level, but it underestimated or misidentified the Bacillus subtilis group, Cryptococcus neoformans, Shigella sonnei, and Campylobacter jejuni. WG-meta using MinION could analyze the microbial communities in 5 min, and antimicrobial resistance gene detection using WG-meta could be performed in >30 min in the simulated sample with fewer bacterial counts.
最近,人类肠道微生物群与多种疾病有关,如免疫和神经精神疾病,使用下一代测序仪通过宏基因组分析进行全面的肠道微生物群分析备受关注。在本研究中,我们使用纳米孔测序仪MinION对16S rDNA宏基因组测序(16S-meta)和全基因组宏基因组测序(WG-meta)的微生物群落进行了比较,并将使用Illumina Miseq测序仪的16S-meta与模拟样本和粪便样本进行了比较,同时评估了WG-meta检测抗菌药物耐药基因的能力。我们使用商业微生物群落DNA标准品作为DNA标准,并使用了一个包含15个细菌物种的17株菌株的模拟样本。在抗菌药物耐药基因检测中,我们使用了模拟样本和添加了携带bla的大肠杆菌、携带bla的肺炎克雷伯菌以及携带mecA的金黄色葡萄球菌的粪便样本。使用MinION的WG-meta优于16S-meta,能够在物种水平上准确分析微生物群落,但它低估或错误鉴定了枯草芽孢杆菌属、新型隐球菌、宋内志贺菌和空肠弯曲菌。使用MinION的WG-meta能够在5分钟内分析微生物群落,在细菌数量较少的模拟样本中,使用WG-meta进行抗菌药物耐药基因检测可以在30分钟以上完成。