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Genomic Control for Association Studies

Biometrics · 1999 · Vol. 55(4) · pp. 997–1004
Bernie DevlinKathryn Roeder

Abstract

A dense set of single nucleotide polymorphisms (SNP) covering the genome and an efficient method to assess SNP genotypes are expected to be available in the near future. An outstanding question is how to use these technologies efficiently to identify genes affecting liability to complex disorders. To achieve this goal, we propose a statistical method that has several optimal properties: It can be used with case control data and yet, like family-based designs, controls for population heterogeneity; it is insensitive to the usual violations of model assumptions, such as cases failing to be strictly independent; and, by using Bayesian outlier methods, it circumvents the need for Bonferroni correction for multiple tests, leading to better performance in many settings while still constraining risk for false positives. The performance of our genomic control method is quite good for plausible effects of liability genes, which bodes well for future genetic analyses of complex disorders.

Genetic Associations and EpidemiologyStatistical Methods in Clinical TrialsGenetic and phenotypic traits in livestockBonferroni correctionOutlierFalse positive paradoxSingle-nucleotide polymorphismSNPBayesian probabilityMultiple comparisons problemGenetic associationComputer sciencePopulation stratification

MeSH terms

Bayes TheoremBiometryGenetic TechniquesHumansModels, GeneticModels, StatisticalGenome, HumanCase-Control Studies

Funding

  • University of Pittsburgh
  • National Institutes of Health
  • National Institute of Mental Health
Citations
3,224
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14.53
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References
<i>Outliers in Statistical Data</i>
Physics Today · 1979 · 2,848 citations
Tests for Linear Trends in Proportions and Frequencies
Biometrics · 1955 · 2,073 citations
Bayes Factors
Journal of the American Statistical Association · 1995 · 11,986 citations
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