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A portable system for rapid bacterial composition analysis using a nanopore-based sequencer and laptop computer

机译:使用基于纳米孔的测序仪和便携式计算机进行细菌成分快速分析的便携式系统

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摘要

We developed a portable system for 16S rDNA analyses consisting of a nanopore technology-based sequencer, the MinION, and laptop computers, and assessed its potential ability to determine bacterial compositions rapidly. We tested our protocols using a mock bacterial community that contained equimolar 16S rDNA and a pleural effusion from a patient with empyema, for time effectiveness and accuracy. MinION sequencing targeting 16S rDNA detected all 20 of the bacterial species present in the mock bacterial community. Time course analysis indicated that the sequence data obtained during the first 5 minutes of sequencing (1,379 bacterial reads) were enough to detect all 20 bacteria in the mock sample and to determine species composition, consistent with results of those obtained from 4 hours of sequencing (24,202 reads). Additionally, using a clinical sample extracted from the empyema patient’s pleural effusion, we could identify major bacterial pathogens in that effusion using our rapid sequencing and analysis protocol. All results are comparable to conventional 16S rDNA sequencing results using an IonPGM sequencer. Our results suggest that rapid sequencing and bacterial composition determination are possible within 2 hours after obtaining a DNA sample.
机译:我们开发了一种用于16S rDNA分析的便携式系统,该系统由基于纳米孔技术的测序仪,MinION和便携式计算机组成,并评估了其快速确定细菌成分的潜在能力。我们使用包含等摩尔16S rDNA和脓胸患者胸腔积液的模拟细菌群落测试了实验方案的时间有效性和准确性。针对16S rDNA的MinION测序检测到模拟细菌群落中存在的所有20种细菌。时程分析表明,在测序的前5分钟(1,379条细菌读数)中获得的序列数据足以检测模拟样品中的所有20种细菌并确定物种组成,与从4小时的测序中获得的结果一致( 24,202次读取)。此外,使用从脓胸患者胸腔积液中提取的临床样本,我们可以使用我们的快速测序和分析方案来鉴定出积液中的主要细菌病原体。所有结果均与使用IonPGM测序仪的常规16S rDNA测序结果相当。我们的结果表明,在获得DNA样品后2小时之内就可以进行快速测序和细菌组成测定。

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