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Full-length 16S rRNA gene amplicon analysis of human gut microbiota using MinION? nanopore sequencing confers species-level resolution

机译:使用碎片的人体肠道微生物的全长16S rRNA基因分析? 纳米孔测序赋予物种级分辨率

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Species-level genetic characterization of complex bacterial communities has important clinical applications in both diagnosis and treatment. Amplicon sequencing of the 16S ribosomal RNA (rRNA) gene has proven to be a powerful strategy for the taxonomic classification of bacteria. This study aims to improve the method for full-length 16S rRNA gene analysis using the nanopore long-read sequencer MinION?. We compared it to the conventional short-read sequencing method in both a mock bacterial community and human fecal samples. We modified our existing protocol for full-length 16S rRNA gene amplicon sequencing by MinION?. A new strategy for library construction with an optimized primer set overcame PCR-associated bias and enabled taxonomic classification across a broad range of bacterial species. We compared the performance of full-length and short-read 16S rRNA gene amplicon sequencing for the characterization of human gut microbiota with a complex bacterial composition. The relative abundance of dominant bacterial genera was highly similar between full-length and short-read sequencing. At the species level, MinION? long-read sequencing had better resolution for discriminating between members of particular taxa such as Bifidobacterium, allowing an accurate representation of the sample bacterial composition. Our present microbiome study, comparing the discriminatory power of full-length and short-read sequencing, clearly illustrated the analytical advantage of sequencing the full-length 16S rRNA gene.
机译:复杂细菌群落的物种级别遗传表征在诊断和治疗中具有重要的临床应用。 16S核糖体RNA(RRNA)基因的扩增子测序已被证明是细菌分类分类分类的强大策略。本研究旨在使用纳米孔长读序列碎片改善全长16S rRNA基因分析方法的方法。我们将其与嘲笑细菌群落和人粪便样本中的传统短读测序方法进行比较。我们修改了我们现有的肉型全长16S rRNA基因扩增子测序的现有协议?具有优化引物集的图书馆建设的新策略,优化的引物集越野相关的偏压,并通过各种细菌种类的分类分类分类。我们将全长和短读16S rRNA基因扩增子测序与复合细菌组合物进行了全长和短读16S rRNA基因扩增分子测序的性能。全长和短读取测序之间的显性细菌属性的相对丰度高度相似。在物种级别,矿物?长读取测序具有更好的分辨率,以区分特定征收的成员,例如双歧杆菌,允许准确地表示样品细菌组合物。我们目前的微生物组研究,比较全长和短读测序的歧视力,清楚地说明了测序全长16S rRNA基因的分析优势。

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