de Lannoy Carlos, de Ridder Dick, Risse Judith
Plant Sciences, Wageningen University & Research, Wageningen, 6700AP, Netherlands.
Faculty of Bioscience Engineering, KU Leuven, Leuven, 3001, Belgium.
F1000Res. 2017 Jul 7;6:1083. doi: 10.12688/f1000research.12012.2. eCollection 2017.
Nanopore technology provides a novel approach to DNA sequencing that yields long, label-free reads of constant quality. The first commercial implementation of this approach, the MinION, has shown promise in various sequencing applications. This review gives an up-to-date overview of the MinION's utility as a sequencing device. It is argued that the MinION may allow for portable and affordable sequencing of even complex genomes in the near future, despite the currently error-prone nature of its reads. Through continuous updates to the MinION hardware and the development of new assembly pipelines, both sequencing accuracy and assembly quality have already risen rapidly. However, this fast pace of development has also lead to a lack of overview of the expanding landscape of analysis tools, as performance evaluations are outdated quickly. As the MinION is approaching a state of maturity, its user community would benefit from a thorough comparative benchmarking effort of de novo assembly pipelines in the near future. An earlier version of this article can be found on bioRxiv.
纳米孔技术为DNA测序提供了一种新方法,可产生长度长、无标记且质量恒定的读数。该方法的首个商业应用产品MinION已在各种测序应用中展现出前景。本综述对MinION作为测序设备的实用性进行了最新概述。有人认为,尽管目前MinION的读数容易出错,但在不久的将来,它可能允许对甚至复杂的基因组进行便携式且经济实惠的测序。通过对MinION硬件的持续更新以及新组装流程的开发,测序准确性和组装质量都已迅速提高。然而,这种快速的发展速度也导致了对不断扩展的分析工具领域缺乏全面了解,因为性能评估很快就过时了。随着MinION接近成熟状态,其用户群体将在不久的将来受益于对从头组装流程进行全面的比较基准测试。本文的早期版本可在bioRxiv上找到。