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PMID: 23577066 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Comprehensive characterization of human genome variation by high coverage whole-genome sequencing of forty four Caucasians.

PloS one ·Vol. 8 ·No. 4 ·2013-00-00 ·Pages e59494

Shen H, Li J, Zhang J, Xu C, Jiang Y, Wu Z, Zhao F, Liao L, Chen J, Lin Y, Tian Q, Papasian CJ, Deng HW

Abstract

Whole genome sequencing studies are essential to obtain a comprehensive understanding of the vast pattern of human genomic variations. Here we report the results of a high-coverage whole genome sequencing study for 44 unrelated healthy Caucasian adults, each sequenced to over 50-fold coverage (averaging 65.8×). We identified approximately 11 million single nucleotide polymorphisms (SNPs), 2.8 million short insertions and deletions, and over 500,000 block substitutions. We showed that, although previous studies, including the 1000 Genomes Project Phase 1 study, have catalogued the vast majority of common SNPs, many of the low-frequency and rare variants remain undiscovered. For instance, approximately 1.4 million SNPs and 1.3 million short indels that we found were novel to both the dbSNP and the 1000 Genomes Project Phase 1 data sets, and the majority of which (∼96%) have a minor allele frequency less than 5%. On average, each individual genome carried ∼3.3 million SNPs and ∼492,000 indels/block substitutions, including approximately 179 variants that were predicted to cause loss of function of the gene products. Moreover, each individual genome carried an average of 44 such loss-of-function variants in a homozygous state, which would completely "knock out" the corresponding genes. Across all the 44 genomes, a total of 182 genes were "knocked-out" in at least one individual genome, among which 46 genes were "knocked out" in over 30% of our samples, suggesting that a number of genes are commonly "knocked-out" in general populations. Gene ontology analysis suggested that these commonly "knocked-out" genes are enriched in biological process related to antigen processing and immune response. Our results contribute towards a comprehensive characterization of human genomic variation, especially for less-common and rare variants, and provide an invaluable resource for future genetic studies of human variation and diseases.

MeSH Terms
Adult Chromosomes, Human, Y/genetics DNA Copy Number Variations/genetics DNA, Mitochondrial/genetics Disease/ethnology,genetics Female Genome, Human/genetics Genomics Humans INDEL Mutation/genetics Male Mutation Rate Polymorphism, Single Nucleotide/genetics Sequence Analysis, DNA/methods Whites/genetics
Chemicals
DNA, Mitochondrial
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Shen Hui
Center for Bioinformatics and Genomics, Department of Biostatistics and Bioinformatics, School of Public Health and Tropical Medicine, Tulane University, New Orleans, Louisiana, USA.
Li Jian
Zhang Jigang
Xu Chao
Jiang Yan
Wu Zikai
Zhao Fuping
Liao Li
Chen Jun
Lin Yong
Tian Qing
Papasian Christopher J
Deng Hong-Wen
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Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2013-00-00
Epub
2013-00-05
Pages
e59494
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC3618277
Subset
IM
Grants
NIAMS NIH HHS · R01 AR059781 · United States
NIAMS NIH HHS · R01AR050496 · United States
NIAMS NIH HHS · R01AR057049 · United States
NIA NIH HHS · R01 AG026564 · United States
NIAMS NIH HHS · P50AR055081 · United States
NIAMS NIH HHS · R01 AR057049 · United States
NIAMS NIH HHS · P50 AR055081 · United States
FIC NIH HHS · R03 TW008221 · United States
NIAMS NIH HHS · R01 AR050496 · United States
NIA NIH HHS · R01AG026564 · United States
FIC NIH HHS · R03TW008221 · United States
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