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Inference of Population Structure Using Multilocus Genotype Data: Linked Loci and Correlated Allele Frequencies

Genetics · 2003 · Vol. 164(4) · pp. 1567–1587
Daniel FalushMatthew StephensJonathan K. Pritchard

Abstract

We describe extensions to the method of Pritchard et al. for inferring population structure from multilocus genotype data. Most importantly, we develop methods that allow for linkage between loci. The new model accounts for the correlations between linked loci that arise in admixed populations ("admixture linkage disequilibium"). This modification has several advantages, allowing (1) detection of admixture events farther back into the past, (2) inference of the population of origin of chromosomal regions, and (3) more accurate estimates of statistical uncertainty when linked loci are used. It is also of potential use for admixture mapping. In addition, we describe a new prior model for the allele frequencies within each population, which allows identification of subtle population subdivisions that were not detectable using the existing method. We present results applying the new methods to study admixture in African-Americans, recombination in Helicobacter pylori, and drift in populations of Drosophila melanogaster. The methods are implemented in a program, structure, version 2.0, which is available at http://pritch.bsd.uchicago.edu.

Genetic Mapping and Diversity in Plants and AnimalsGenetics and Plant BreedingWheat and Barley Genetics and PathologyBiologyGeneticsPopulationLinkage (software)GenotypeInferenceAllele frequencyPopulation geneticsAlleleEvolutionary biology

MeSH terms

AlgorithmsAllelesAnimalsBayes TheoremBlack or African AmericanChromosomesComputer SimulationDrosophila melanogasterFemaleGene FrequencyGenetic MarkersGenetics, PopulationGenotypeHumansGenetic Linkage
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