DAJIN enables multiplex genotyping to simultaneously validate intended and unintended target genome editing outcomes

Author:

Kuno AkihiroORCID,Ikeda Yoshihisa,Ayabe ShinyaORCID,Kato Kanako,Sakamoto KotaroORCID,Suzuki Sayaka R.,Morimoto Kento,Wakimoto Arata,Mikami Natsuki,Ishida Miyuki,Iki Natsumi,Hamada Yuko,Takemura Megumi,Daitoku Yoko,Tanimoto Yoko,Dinh Tra Thi HuongORCID,Murata KazuyaORCID,Hamada MichitoORCID,Muratani Masafumi,Yoshiki AtsushiORCID,Sugiyama Fumihiro,Takahashi Satoru,Mizuno SeiyaORCID

Abstract

Genome editing can introduce designed mutations into a target genomic site. Recent research has revealed that it can also induce various unintended events such as structural variations, small indels, and substitutions at, and in some cases, away from the target site. These rearrangements may result in confounding phenotypes in biomedical research samples and cause a concern in clinical or agricultural applications. However, current genotyping methods do not allow a comprehensive analysis of diverse mutations for phasing and mosaic variant detection. Here, we developed a genotyping method with an on-target site analysis software named Determine Allele mutations and Judge Intended genotype by Nanopore sequencer (DAJIN) that can automatically identify and classify both intended and unintended diverse mutations, including point mutations, deletions, inversions, and cis double knock-in at single-nucleotide resolution. Our approach with DAJIN can handle approximately 100 samples under different editing conditions in a single run. With its high versatility, scalability, and convenience, DAJIN-assisted multiplex genotyping may become a new standard for validating genome editing outcomes.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Japan Agency for Medical Research and Development

Japan Science and Technology Agency

Publisher

Public Library of Science (PLoS)

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

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