Haplotype-resolved diverse human genomes and integrated analysis of structural variation

التفاصيل البيبلوغرافية
العنوان: Haplotype-resolved diverse human genomes and integrated analysis of structural variation
المؤلفون: Tsung Yu Lu, Rebecca Serra Mari, Joyce V. Lee, Peter A. Audano, Susan Fairley, Mark Chaisson, Scott E. Devine, Ira M. Hall, Maryam Ghareghani, Sushant Kumar, Aaron M. Wenger, Jan O. Korbel, Hufsah Ashraf, Feyza Yilmaz, Tobias Marschall, Jana Ebler, Zechen Chong, Wolfram Höps, Paul Flicek, Kai Ye, Haley J. Abel, Katherine M. Munson, Jiadong Lin, Qihui Zhu, Weichen Zhou, Xiaofei Yang, Wayne E. Clarke, Michael C. Zody, Uday S. Evani, Xinghua Shi, Patrick Hasenfeld, Martin Santamarina, Bernardo Rodriguez-Martin, Tobias Rausch, Michael E. Talkowski, Jose M. C. Tubio, Luke J. Tallon, Yang I. Li, Yu Chen, Junjie Chen, André Corvelo, Zepeng Mu, PingHsun Hsieh, David Porubsky, Nelson T. Chuang, William T. Harvey, Alexandra P. Lewis, Marc Jan Bonder, Oliver Stegle, Benjamin Raeder, Xuefang Zhao, Alex Hastie, Harrison Brand, Allison A. Regier, Peter Ebert, Ryan E. Mills, Anna O. Basile, Marta Byrska-Bishop, Mark Gerstein, Chong Li, Arvis Sulovari, Jingwen Ren, Ashley D. Sanders, Charles Lee, Evan E. Eichler
المصدر: Science
سنة النشر: 2020
مصطلحات موضوعية: Male, Genotype, Retroelements, Population, Quantitative Trait Loci, Sequence assembly, Computational biology, Biology, Genome, Article, Structural variation, 03 medical and health sciences, 0302 clinical medicine, INDEL Mutation, Population Groups, Humans, education, 030304 developmental biology, Whole genome sequencing, 0303 health sciences, education.field_of_study, Multidisciplinary, Contig, Whole Genome Sequencing, Genome, Human, Sequence Inversion, Genetic Variation, High-Throughput Nucleotide Sequencing, Sequence Analysis, DNA, Interspersed Repetitive Sequences, Haplotypes, Expression quantitative trait loci, Human genome, Female, 030217 neurology & neurosurgery
الوصف: Resolving genomic structural variationMany human genomes have been reported using short-read technology, but it is difficult to resolve structural variants (SVs) using these data. These genomes thus lack comprehensive comparisons among individuals and populations. Ebertet al.used long-read structural variation calling across 64 human genomes representing diverse populations and developed new methods for variant discovery. This approach allowed the authors to increase the number of confirmed SVs and to describe the patterns of variation across populations. From this dataset, they identified quantitative trait loci affected by these SVs and determined how they may affect gene expression and potentially explain genome-wide association study hits. This information provides insights into patterns of normal human genetic variation and generates reference genomes that better represent the diversity of our species.Science, this issue p.eabf7117
تدمد: 1095-9203
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2ae368c712ded1d7cb88a3aa16db254bTest
https://pubmed.ncbi.nlm.nih.gov/33963350Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....2ae368c712ded1d7cb88a3aa16db254b
قاعدة البيانات: OpenAIRE