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Highly accurate Korean draft genomes reveal structural variation highlighting human telomere evolutionoa mark
  • Kim, Jun ;
  • Park, Jong Lyul ;
  • Yang, Jin Ok ;
  • Kim, Sangok ;
  • Joe, Soobok ;
  • Park, Gunwoo ;
  • Hwang, Taeyeon ;
  • Cho, Mun Jeong ;
  • Lee, Seungjae ;
  • Lee, Jong Eun ;
  • Park, Ji Hwan ;
  • Yeo, Min Kyung ;
  • Kim, Seon Young
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Publication Year
2025-01-13
Journal
Nucleic Acids Research
Publisher
Oxford University Press
Citation
Nucleic Acids Research, Vol.53 No.1
Mesh Keyword
Asian PeopleDNA RepairEvolution, MolecularGenome, HumanGenomic Structural VariationGenomicsHumansRepublic of KoreaTelomere
All Science Classification Codes (ASJC)
Genetics
Abstract
Given the presence of highly repetitive genomic regions such as subtelomeric regions, understanding human genomic evolution remains challenging. Recently, long-read sequencing technology has facilitated the identification of complex genetic variants, including structural variants (SVs), at the single-nucleotide level. Here, we resolved SVs and their underlying DNA damage-repair mechanisms in subtelomeric regions, which are among the most uncharted genomic regions. We generated ∼20 × high-fidelity long-read sequencing data from three Korean individuals and their partially phased high-quality de novo genome assemblies (contig N50: 6.3-58.2 Mb). We identified 131 138 deletion and 121 461 insertion SVs, 41.6% of which were prevalent in the East Asian population. The commonality of the SVs identified among the Korean population was examined by short-read sequencing data from 103 Korean individuals, providing the first comprehensive SV set representing the population based on the long-read assemblies. Manual investigation of 19 large subtelomeric SVs (≥5 kb) and their associated repair signatures revealed the potential repair mechanisms leading to the formation of these SVs. Our study provides mechanistic insight into human telomere evolution and can facilitate our understanding of human SV formation.
ISSN
1362-4962
Language
eng
URI
https://aurora.ajou.ac.kr/handle/2018.oak/38422
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85214567908&origin=inward
DOI
https://doi.org/10.1093/nar/gkae1294
Journal URL
https://academic.oup.com/nar/issue
Type
Article
Funding
Ministry of Science and ICT (MSIT) [2020M3E5D708517212, 2023M3A9A7009442, 2020M3A9I6A0103605721; and RS-2023-00247499 and RS-2024-00415888 to J.K.]; Ministry of Health and Welfare (MOHW) [RS-2024-00438566]; Ministry of Trade, Industry and Energy (MOTIE) [P0009796]; KRIBB Research Initiative Program [KGM5192221 to J.K. and J.L.P.; and KGM5422221 to S.J., G.P., T.H., J.O.Y., S.K. and S.-Y.K.].
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PARK, JI HWAN박지환
Department of Biological Sciences
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