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Origins and functional impact of copy number variation in the human genome

Authors :
Conrad, Donald F.
Pinto, Dalila
Redon, Richard
Feuk, Lars
Gokcumen, Omer
Zhang, Yujun
Aerts, Jan
Andrews, T. Daniel
Barnes, Chris
Campbell, Peter
Fitzgerald, Tomas
Hu, Min
Ihm, Chun Hwa
Kristiansson, Kati
MacArthur, Daniel G.
MacDonald, Jeffrey R.
Onyiah, Ifejinelo
Pang, Andy Wing Chun
Robson, Sam
Stirrups, Kathy
Valsesia, Armand
Walter, Klaudia
Wei, John
Tyler-Smith, Chris
Carter, Nigel P.
Lee, Charles
Scherer, Stephen W.
Hurles, Matthew E.
Source :
Nature. April 1, 2010, Vol. 464 Issue 7289, p704, 9 p.
Publication Year :
2010

Abstract

Structural variations of DNA greater than 1 kilobase in size account for most bases that vary among human genomes, but are still relatively under-ascertained. Here we use tiling oligonucleotide microarrays, comprising 42 million probes, to generate a comprehensive map of 11,700 copy number variations (CNVs) greater than 443 base pairs, of which most (8,599) have been validated independently. For 4,978 of these CNVs, we generated reference genotypes from 450 individuals of European, African or East Asian ancestry. The predominant mutational mechanisms differ among CNV size classes. Retrotransposition has duplicated and inserted some coding and non-coding DNA segments randomly around the genome. Furthermore, by correlation with known trait-associated single nucleotide polymorphisms (SNPs), we identified 30 loci with CNVs that are candidates for influencing disease susceptibility. Despite this, having assessed the completeness of our map and the patterns of linkage disequilibrium between CNVs and SNPs, we conclude that, for complex traits, the heritability void left by genome-wide association studies will not be accounted for by common CNVs.<br />Genomes vary from one another in multifarious ways, and the totality of this genetic variation underpins the heritability of human traits. Over the past two years, the human reference sequence [...]

Details

Language :
English
ISSN :
00280836
Volume :
464
Issue :
7289
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.223284630
Full Text :
https://doi.org/10.1038/nature08516