4.2 Review

Applications and potentials of nanopore sequencing in the (epi)genome and (epi)transcriptome era

期刊

INNOVATION
卷 2, 期 4, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.xinn.2021.100153

关键词

nanopore sequencing; direct DNA sequencing; direct RNA sequencing; base modification; base-calling; long-read sequencing; tools and algorithms

资金

  1. Key-Areas Research and Development Program of Guangdong Province [2020B020220004]
  2. Youth Innovation Promotion Association, Chinese Academy of Sciences [2017399]
  3. Science and Technology Program of Guangzhou [202002030097]
  4. Hong Kong Research Grants Council Area of Excellence Scheme [AoE/M-403/16]
  5. TRS of the HKSAR government [T21-705/20-N]
  6. ECS [27204518]

向作者/读者索取更多资源

The Human Genome Project has led to the development of new sequencing technologies, with Oxford Nanopore technology being one of the most popular methods for direct DNA and RNA sequencing. This technology allows for sequencing of native DNA and RNA molecules without the need for conversion of mRNA to cDNA, enabling the documentation of modifications to these molecules.
The Human Genome Project opened an era of (epi)genomic research, and also provided a platform for the development of new sequencing technologies. During and after the project, several sequencing technologies continue to dominate nucleic acid sequencing markets. Currently, Illumina (short-read), PacBio (long-read), and Oxford Nanopore (long-read) are the most popular sequencing technologies. Unlike PacBio or the popular short-read sequencers before it, which, as examples of the second or so-called Next-Generation Sequencing platforms, need to synthesize when sequencing, nanopore technology directly sequences native DNA and RNA molecules. Nanopore sequencing, therefore, avoids converting mRNA into cDNA molecules, which not only allows for the sequencing of extremely long native DNA and full-length RNA molecules but also document modifications that have been made to those native DNA or RNA bases. In this review on direct DNA sequencing and direct RNA sequencing using Oxford Nanopore technology, we focus on their development and application achievements, discussing their challenges and future perspective. We also address the problems researchers may encounter applying these approaches in their research topics, and how to resolve them.

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