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An integrated map of genetic variation from 1,092 human genomes

8266Citations signalées, ce qui n’est pas une note de qualité
92Institutions déclarées
14Pays d’affiliation déclarés

Rattachement africain : gb, us, it, cn, ca, de, tr, dk, kr, il, ch, pr, es, co. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

By characterizing the geographic and functional spectrum of human genetic variation, the 1000 Genomes Project aims to build a resource to help to understand the genetic contribution to disease. Here we describe the genomes of 1,092 individuals from 14 populations, constructed using a combination of low-coverage whole-genome and exome sequencing. By developing methods to integrate information across several algorithms and diverse data sources, we provide a validated haplotype map of 38 million single nucleotide polymorphisms, 1.4 million short insertions and deletions, and more than 14,000 larger deletions. We show that individuals from different populations carry different profiles of rare and common variants, and that low-frequency variants show substantial geographic differentiation, which is further increased by the action of purifying selection. We show that evolutionary conservation and coding consequence are key determinants of the strength of purifying selection, that rare-variant load varies substantially across biological pathways, and that each individual contains hundreds of rare non-coding variants at conserved sites, such as motif-disrupting changes in transcription-factor-binding sites. This resource, which captures up to 98% of accessible single nucleotide polymorphisms at a frequency of 1% in related populations, enables analysis of common and low-frequency variants in individuals from diverse, including admixed, populations. This report from the 1000 Genomes Project describes the genomes of 1,092 individuals from 14 human populations, providing a resource for common and low-frequency variant analysis in individuals from diverse populations; hundreds of rare non-coding variants at conserved sites, such as motif-disrupting changes in transcription-factor-binding sites, can be found in each individual. This report by the 1000 Genomes Project describes the genomes of 1,092 individuals from 14 human populations, providing a resource for common and low-frequency variant analysis in individuals from diverse populations. Integrative analyses reveal profiles of rare and common variants in different populations. The frequencies of rare variants vary across biological pathways, and hundreds of rare, non-coding variants at conserved sites — such as changes disrupting transcription-factor motifs — can be established for each individual.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
An integrated map of genetic variation from 1,092 human genomes
Date Crossref
31/10/2012
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Centre for Human GeneticsUniversity of MichiganUniversity of OxfordYeshiva UniversityNational Institutes of HealthBroad InstituteWellcome Sanger InstituteHarvard University PressBoston CollegeHarvard UniversityMassachusetts General HospitalCenter for Human GeneticsEvolutionary Genomics (United States)Center for Systems BiologyInstitute of Genetics and BiophysicsNational Research CouncilUniversity of SassariInstitute of Genetic and Biomedical ResearchUniversity of ChesterJohns Hopkins UniversityJohns Hopkins MedicineCornell UniversityHoward Hughes Medical InstituteEuropean Bioinformatics InstituteWellcome TrustBaylor College of MedicineBaylor GeneticsBGI Group (China)National Human Genome Research InstituteMcGill University and Génome Québec Innovation CentreMcGill UniversityEuropean Molecular Biology LaboratoryBrigham and Women's HospitalDynamic Systems (United States)Max Planck Institute for Molecular GeneticsWashington University in St. LouisUniversity of WashingtonBilkent UniversityAffymax (United States)National Center for Biotechnology InformationUniversity of CopenhagenNovo Nordisk FoundationUniversity of North Carolina at Chapel HillUniversity of Maryland, BaltimoreThe University of Texas Health Science Center at HoustonAlacris (Germany)Albert Einstein College of MedicineCold Spring Harbor LaboratoryIcahn School of Medicine at Mount SinaiDankook UniversityCardiff UniversityIllumina (United States)Louisiana State UniversityStanford UniversityTel Aviv UniversityTranslational Genomics Research InstituteUniversity of California, Los AngelesUniversity of California SystemUniversity of California San DiegoUniversity of California, San FranciscoUniversity of California, Santa CruzUniversity of ChicagoUniversity College LondonUniversity of GenevaSIB Swiss Institute of BioinformaticsNew Jersey Institute of TechnologyAmerican Museum of Natural HistoryCenter for Advanced Studies Research and Development in SardiniaNational Institute on AgingCentre Hospitalier Universitaire Sainte-JustineUniversity of Puerto Rico-MayaguezUniversity of UtahRutgers, The State University of New JerseySimon Fraser UniversityThe University of Texas MD Anderson Cancer CenterNHS Blood and TransplantYale UniversityJoint Center for Structural GenomicsCoriell Institute For Medical ResearchGenetic Alliance UK (United Kingdom)University of Wisconsin–MadisonMorgridge Institute for ResearchWellcome Centre for Ethics and HumanitiesDuke UniversityUniversity of PennsylvaniaUniversitat de BarcelonaJohn Radcliffe HospitalUniversidad de AntioquiaPeking University Shenzhen HospitalChinese Academy of Medical Sciences & Peking Union Medical CollegeCentro de Investigación del CáncerPonce Health Sciences University

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Genetic Associations and EpidemiologyGenomics and Rare DiseasesGenetic Mapping and Diversity in Plants and Animals

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