Long-read human genome sequencing and its applications

GA Logsdon, MR Vollger, EE Eichler - Nature Reviews Genetics, 2020 - nature.com
Nature Reviews Genetics, 2020nature.com
Over the past decade, long-read, single-molecule DNA sequencing technologies have
emerged as powerful players in genomics. With the ability to generate reads tens to
thousands of kilobases in length with an accuracy approaching that of short-read
sequencing technologies, these platforms have proven their ability to resolve some of the
most challenging regions of the human genome, detect previously inaccessible structural
variants and generate some of the first telomere-to-telomere assemblies of whole …
Abstract
Over the past decade, long-read, single-molecule DNA sequencing technologies have emerged as powerful players in genomics. With the ability to generate reads tens to thousands of kilobases in length with an accuracy approaching that of short-read sequencing technologies, these platforms have proven their ability to resolve some of the most challenging regions of the human genome, detect previously inaccessible structural variants and generate some of the first telomere-to-telomere assemblies of whole chromosomes. Long-read sequencing technologies will soon permit the routine assembly of diploid genomes, which will revolutionize genomics by revealing the full spectrum of human genetic variation, resolving some of the missing heritability and leading to the discovery of novel mechanisms of disease.
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