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An integrated map of structural variation in 2,504 human genomes.

Publication ,  Journal Article
Sudmant, PH; Rausch, T; Gardner, EJ; Handsaker, RE; Abyzov, A; Huddleston, J; Zhang, Y; Ye, K; Jun, G; Fritz, MH-Y; Konkel, MK; Malhotra, A ...
Published in: Nature
October 2015

Structural variants are implicated in numerous diseases and make up the majority of varying nucleotides among human genomes. Here we describe an integrated set of eight structural variant classes comprising both balanced and unbalanced variants, which we constructed using short-read DNA sequencing data and statistically phased onto haplotype blocks in 26 human populations. Analysing this set, we identify numerous gene-intersecting structural variants exhibiting population stratification and describe naturally occurring homozygous gene knockouts that suggest the dispensability of a variety of human genes. We demonstrate that structural variants are enriched on haplotypes identified by genome-wide association studies and exhibit enrichment for expression quantitative trait loci. Additionally, we uncover appreciable levels of structural variant complexity at different scales, including genic loci subject to clusters of repeated rearrangement and complex structural variants with multiple breakpoints likely to have formed through individual mutational events. Our catalogue will enhance future studies into structural variant demography, functional impact and disease association.

Duke Scholars

Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

October 2015

Volume

526

Issue

7571

Start / End Page

75 / 81

Related Subject Headings

  • Sequence Deletion
  • Sequence Analysis, DNA
  • Quantitative Trait Loci
  • Polymorphism, Single Nucleotide
  • Physical Chromosome Mapping
  • Mutation Rate
  • Molecular Sequence Data
  • Humans
  • Homozygote
  • Haplotypes
 

Citation

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Sudmant, P. H., Rausch, T., Gardner, E. J., Handsaker, R. E., Abyzov, A., Huddleston, J., … Korbel, J. O. (2015). An integrated map of structural variation in 2,504 human genomes. Nature, 526(7571), 75–81. https://doi.org/10.1038/nature15394
Sudmant, Peter H., Tobias Rausch, Eugene J. Gardner, Robert E. Handsaker, Alexej Abyzov, John Huddleston, Yan Zhang, et al. “An integrated map of structural variation in 2,504 human genomes.Nature 526, no. 7571 (October 2015): 75–81. https://doi.org/10.1038/nature15394.
Sudmant PH, Rausch T, Gardner EJ, Handsaker RE, Abyzov A, Huddleston J, et al. An integrated map of structural variation in 2,504 human genomes. Nature. 2015 Oct;526(7571):75–81.
Sudmant, Peter H., et al. “An integrated map of structural variation in 2,504 human genomes.Nature, vol. 526, no. 7571, Oct. 2015, pp. 75–81. Epmc, doi:10.1038/nature15394.
Sudmant PH, Rausch T, Gardner EJ, Handsaker RE, Abyzov A, Huddleston J, Zhang Y, Ye K, Jun G, Fritz MH-Y, Konkel MK, Malhotra A, Stütz AM, Shi X, Casale FP, Chen J, Hormozdiari F, Dayama G, Chen K, Malig M, Chaisson MJP, Walter K, Meiers S, Kashin S, Garrison E, Auton A, Lam HYK, Mu XJ, Alkan C, Antaki D, Bae T, Cerveira E, Chines P, Chong Z, Clarke L, Dal E, Ding L, Emery S, Fan X, Gujral M, Kahveci F, Kidd JM, Kong Y, Lameijer E-W, McCarthy S, Flicek P, Gibbs RA, Marth G, Mason CE, Menelaou A, Muzny DM, Nelson BJ, Noor A, Parrish NF, Pendleton M, Quitadamo A, Raeder B, Schadt EE, Romanovitch M, Schlattl A, Sebra R, Shabalin AA, Untergasser A, Walker JA, Wang M, Yu F, Zhang C, Zhang J, Zheng-Bradley X, Zhou W, Zichner T, Sebat J, Batzer MA, McCarroll SA, 1000 Genomes Project Consortium, Mills RE, Gerstein MB, Bashir A, Stegle O, Devine SE, Lee C, Eichler EE, Korbel JO. An integrated map of structural variation in 2,504 human genomes. Nature. 2015 Oct;526(7571):75–81.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

October 2015

Volume

526

Issue

7571

Start / End Page

75 / 81

Related Subject Headings

  • Sequence Deletion
  • Sequence Analysis, DNA
  • Quantitative Trait Loci
  • Polymorphism, Single Nucleotide
  • Physical Chromosome Mapping
  • Mutation Rate
  • Molecular Sequence Data
  • Humans
  • Homozygote
  • Haplotypes