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Rapid bacterial identification by direct PCR amplification of 16S rRNA genes using the MinION? nanopore sequencer

机译:使用MinION?通过直接PCR扩增16S rRNA基因快速鉴定细菌。纳米孔测序仪

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摘要

Rapid identification of bacterial pathogens is crucial for appropriate and adequate antibiotic treatment, which significantly improves patient outcomes. 16S ribosomal RNA (rRNA) gene amplicon sequencing has proven to be a powerful strategy for diagnosing bacterial infections. We have recently established a sequencing method and bioinformatics pipeline for 16S rRNA gene analysis utilizing the Oxford Nanopore Technologies MinION? sequencer. In combination with our taxonomy annotation analysis pipeline, the system enabled the molecular detection of bacterial DNA in a reasonable time frame for diagnostic purposes. However, purification of bacterial DNA from specimens remains a rate‐limiting step in the workflow. To further accelerate the process of sample preparation, we adopted a direct PCR strategy that amplifies 16S rRNA genes from bacterial cell suspensions without DNA purification. Our results indicate that differences in cell wall morphology significantly affect direct PCR efficiency and sequencing data. Notably, mechanical cell disruption preceding direct PCR was indispensable for obtaining an accurate representation of the specimen bacterial composition. Furthermore, 16S rRNA gene analysis of mock polymicrobial samples indicated that primer sequence optimization is required to avoid preferential detection of particular taxa and to cover a broad range of bacterial species. This study establishes a relatively simple workflow for rapid bacterial identification via MinION? sequencing, which reduces the turnaround time from sample to result, and provides a reliable method that may be applicable to clinical settings.
机译:快速鉴定细菌病原体对于适当和适当的抗生素治疗至关重要,这可以显着改善患者的预后。 16S核糖体RNA(rRNA)基因扩增子测序已被证明是诊断细菌感染的有力策略。我们最近建立了一种利用牛津纳米孔技术公司的MinION?进行16S rRNA基因分析的测序方法和生物信息学流水线。定序器。结合我们的分类学注释分析管道,该系统可以在合理的时间范围内对细菌DNA进行分子检测,以进行诊断。但是,从标本中纯化细菌DNA仍然是工作流程中的限速步骤。为了进一步加速样品制备过程,我们采用了直接PCR策略,无需从DNA纯化即可扩增细菌细胞悬液中的16S rRNA基因。我们的结果表明,细胞壁形态的差异会显着影响直接PCR效率和测序数据。值得注意的是,直接PCR之前的机械细胞破坏对于获得标本细菌组成的准确表示是必不可少的。此外,模拟微生物样品的16S rRNA基因分析表明,需要进行引物序列优化,以避免优先检测特定分类群并涵盖广泛的细菌种类。这项研究建立了一个相对简单的工作流程,可以通过MinION快速鉴定细菌。测序,减少了从样品到结果的周转时间,并提供了可应用于临床环境的可靠方法。

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