Zheng Peijie, Zhou Chuntao, Ding Yuemin, Liu Bin, Lu Liuyi, Zhu Feng, Duan Shiwei
Department of Clinical Medicine School of Medicine Zhejiang University City College Hangzhou China.
Institute of Translational Medicine, School of Medicine Zhejiang University City College Hangzhou China.
MedComm (2020). 2023 Jul 10;4(4):e316. doi: 10.1002/mco2.316. eCollection 2023 Aug.
Since the development of Sanger sequencing in 1977, sequencing technology has played a pivotal role in molecular biology research by enabling the interpretation of biological genetic codes. Today, nanopore sequencing is one of the leading third-generation sequencing technologies. With its long reads, portability, and low cost, nanopore sequencing is widely used in various scientific fields including epidemic prevention and control, disease diagnosis, and animal and plant breeding. Despite initial concerns about high error rates, continuous innovation in sequencing platforms and algorithm analysis technology has effectively addressed its accuracy. During the coronavirus disease (COVID-19) pandemic, nanopore sequencing played a critical role in detecting the severe acute respiratory syndrome coronavirus-2 virus genome and containing the pandemic. However, a lack of understanding of this technology may limit its popularization and application. Nanopore sequencing is poised to become the mainstream choice for preventing and controlling COVID-19 and future epidemics while creating value in other fields such as oncology and botany. This work introduces the contributions of nanopore sequencing during the COVID-19 pandemic to promote public understanding and its use in emerging outbreaks worldwide. We discuss its application in microbial detection, cancer genomes, and plant genomes and summarize strategies to improve its accuracy.
自1977年桑格测序技术发展以来,测序技术通过解读生物遗传密码,在分子生物学研究中发挥了关键作用。如今,纳米孔测序是领先的第三代测序技术之一。凭借其长读长、便携性和低成本,纳米孔测序在包括疫情防控、疾病诊断以及动植物育种等多个科学领域得到广泛应用。尽管最初人们担心其错误率较高,但测序平台和算法分析技术的不断创新有效解决了其准确性问题。在冠状病毒病(COVID-19)大流行期间,纳米孔测序在检测严重急性呼吸综合征冠状病毒2病毒基因组和遏制疫情方面发挥了关键作用。然而,对该技术缺乏了解可能会限制其推广和应用。纳米孔测序有望成为预防和控制COVID-19及未来疫情的主流选择,同时在肿瘤学和植物学等其他领域创造价值。这项工作介绍了纳米孔测序在COVID-19大流行期间所做的贡献,以促进公众了解及其在全球新出现疫情中的应用。我们讨论了其在微生物检测、癌症基因组和植物基因组中的应用,并总结了提高其准确性的策略。