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Performing the Exact Test of Hardy-Weinberg Proportion for Multiple Alleles

Biometrics · 1992 · Vol. 48(2) · pp. 361–361
Sun‐Wei GuoElizabeth A. Thompson

Abstract

The Hardy-Weinberg law plays an important role in the field of population genetics and often serves as a basis for genetic inference. Because of its importance, much attention has been devoted to tests of Hardy-Weinberg proportions (HWP) over the decades. It has long been recognized that large-sample goodness-of-fit tests can sometimes lead to spurious results when the sample size and/or some genotypic frequencies are small. Although a complete enumeration algorithm for the exact test has been proposed, it is not of practical use for loci with more than a few alleles due to the amount of computation required. We propose two algorithms to estimate the significance level for a test of HWP. The algorithms are easily applicable to loci with multiple alleles. Both are remarkably simple and computationally fast. Relative efficiency and merits of the two algorithms are compared. Guidelines regarding their usage are given. Numerical examples are given to illustrate the practicality of the algorithms.

Genetic Associations and EpidemiologyEvolution and Genetic DynamicsGenetic Mapping and Diversity in Plants and AnimalsSpurious relationshipInferenceHardy–Weinberg principleExact testAlgorithmComputationPopulationStatistical hypothesis testingSample size determinationComputer science

MeSH terms

AllelesGene FrequencyGenetics, PopulationMathematicsModels, GeneticMonte Carlo MethodPhenotype

Funding

  • National Science Foundation
  • Samsung Advanced Institute of Technology
  • National Institutes of Health
  • National Heart, Lung, and Blood Institute
Citations
4,910
FWCI
16.96
field-weighted impact
References
18
Percentile
99%
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References
Equation of State Calculations by Fast Computing Machines
The Journal of Chemical Physics · 1953 · 36,613 citations
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