Publication:
Phased Whole-Genome Genetic Risk in a Family Quartet Using a Major Allele Reference Sequence

No Thumbnail Available

Date

2011-09-15

Journal Title

Journal ISSN

Volume Title

Publisher

Public Library of Science (PLoS)
The Harvard community has made this article openly available. Please share how this access benefits you.

Research Projects

Organizational Units

Journal Issue

Citation

Dewey, Frederick E., Rong Chen, Sergio P. Cordero, Kelly E. Ormond, Colleen Caleshu, Konrad J. Karczewski, Michelle Whirl-Carrillo et al. "Phased Whole-Genome Genetic Risk in a Family Quartet Using a Major Allele Reference Sequence." PLoS Genetics 7, no. 9 (2011): e1002280. DOI: 10.1371/journal.pgen.1002280

Research Data

Abstract

Whole-genome sequencing harbors unprecedented potential for characterization of individual and family genetic variation. Here, we develop a novel synthetic human reference sequence that is ethnically concordant and use it for the analysis of genomes from a nuclear family with history of familial thrombophilia. We demonstrate that the use of the major allele reference sequence results in improved genotype accuracy for disease-associated variant loci. We infer recombination sites to the lowest median resolution demonstrated to date (<1,000 base pairs). We use family inheritance state analysis to control sequencing error and inform family-wide haplotype phasing, allowing quantification of genome-wide compound heterozygosity. We develop a sequence-based methodology for Human Leukocyte Antigen typing that contributes to disease risk prediction. Finally, we advance methods for analysis of disease and pharmacogenomic risk across the coding and non-coding genome that incorporate phased variant data. We show these methods are capable of identifying multigenic risk for inherited thrombophilia and informing the appropriate pharmacological therapy. These ethnicity-specific, family-based approaches to interpretation of genetic variation are emblematic of the next generation of genetic risk assessment using whole-genome sequencing.

Description

Keywords

Research Subject Categories::NATURAL SCIENCES::Biology::Cell and molecular biology::Genetics

Terms of Use

Endorsement

Review

Supplemented By

Referenced By

Related Stories