Zhang Tianyuan, Li Hanzhou, Jiang Mian, Hou Huiyu, Gao Yunyun, Li Yali, Wang Fuhao, Wang Jun, Peng Kai, Liu Yong-Xin
Genome Analysis Laboratory of the Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, Guangdong 518120, China; Wuhan Benagen Technology Co., Ltd, Wuhan, Hubei 430000, China.
Wuhan Benagen Technology Co., Ltd, Wuhan, Hubei 430000, China.
J Genet Genomics. 2024 Dec;51(12):1361-1374. doi: 10.1016/j.jgg.2024.09.007. Epub 2024 Sep 16.
Over the past decade, nanopore sequencing has experienced significant advancements and changes, transitioning from an initially emerging technology to a significant instrument in the field of genomic sequencing. However, as advancements in next-generation sequencing technology persist, nanopore sequencing also improves. This paper reviews the developments, applications, and outlook on nanopore sequencing technology. Currently, nanopore sequencing supports both DNA and RNA sequencing, making it widely applicable in areas such as telomere-to-telomere (T2T) genome assembly, direct RNA sequencing (DRS), and metagenomics. The openness and versatility of nanopore sequencing have established it as a preferred option for an increasing number of research teams, signaling a transformative influence on life science research. As the nanopore sequencing technology advances, it provides a faster, more cost-effective approach with extended read lengths, demonstrating the significant potential for complex genome assembly, pathogen detection, environmental monitoring, and human disease research, offering a fresh perspective in sequencing technologies.
在过去十年中,纳米孔测序技术取得了重大进展和变革,从最初的新兴技术发展成为基因组测序领域的重要工具。然而,随着下一代测序技术的持续进步,纳米孔测序技术也在不断改进。本文综述了纳米孔测序技术的发展、应用及前景。目前,纳米孔测序技术支持DNA和RNA测序,在端粒到端粒(T2T)基因组组装、直接RNA测序(DRS)和宏基因组学等领域具有广泛应用。纳米孔测序技术的开放性和通用性已使其成为越来越多研究团队的首选,对生命科学研究产生了变革性影响。随着纳米孔测序技术的不断发展,它提供了一种更快、更具成本效益的方法,读长更长,在复杂基因组组装、病原体检测、环境监测和人类疾病研究等方面展现出巨大潜力,为测序技术带来了新的视角。