A new multipoint method for genome-wide association studies by imputation of genotypes
Top Cited Papers
- 17 June 2007
- journal article
- research article
- Published by Springer Nature in Nature Genetics
- Vol. 39 (7) , 906-913
- https://doi.org/10.1038/ng2088
Abstract
Genome-wide association studies are set to become the method of choice for uncovering the genetic basis of human diseases. A central challenge in this area is the development of powerful multipoint methods that can detect causal variants that have not been directly genotyped. We propose a coherent analysis framework that treats the problem as one involving missing or uncertain genotypes. Central to our approach is a model-based imputation method for inferring genotypes at observed or unobserved SNPs, leading to improved power over existing methods for multipoint association mapping. Using real genome-wide association study data, we show that our approach (i) is accurate and well calibrated, (ii) provides detailed views of associated regions that facilitate follow-up studies and (iii) can be used to validate and correct data at genotyped markers. A notable future use of our method will be to boost power by combining data from genome-wide scans that use different SNP sets.Keywords
This publication has 27 references indexed in Scilit:
- Genome-wide association study of 14,000 cases of seven common diseases and 3,000 shared controlsNature, 2007
- A model-based approach to capture genetic variation for future association studiesGenome Research, 2006
- Association Analysis of 6,736 U.K. Subjects Provides Replication and Confirms TCF7L2 as a Type 2 Diabetes Susceptibility Gene With a Substantial Effect on Individual RiskDiabetes, 2006
- A Fast and Flexible Statistical Model for Large-Scale Population Genotype Data: Applications to Inferring Missing Genotypes and Haplotypic PhaseAmerican Journal of Human Genetics, 2006
- Variant of transcription factor 7-like 2 (TCF7L2) gene confers risk of type 2 diabetesNature Genetics, 2006
- A haplotype map of the human genomeNature, 2005
- Efficiency and power in genetic association studiesNature Genetics, 2005
- Direct analysis of unphased SNP genotype data in population-based association studies via Bayesian partition modelling of haplotypesGenetic Epidemiology, 2005
- Coalescent-Based Association Mapping and Fine Mapping of Complex Trait LociGenetics, 2005
- The Future of Genetic Studies of Complex Human DiseasesScience, 1996