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A measure of population subdivision based on microsatellite allele frequencies.

Genetics · 1995 · Vol. 139(1) · pp. 457–462
Montgomery Slatkin

Abstract

A new measure of the extent of population subdivision as inferred from allele frequencies at microsatellite loci is proposed and tested with computer simulations. This measure, called R(ST), is analogous to Wright's F(ST) in representing the proportion of variation between populations. It differs in taking explicit account of the mutation process at microsatellite loci, for which a generalized stepwise mutation model appears appropriate. Simulations of subdivided populations were carried out to test the performance of R(ST) and F(ST). It was found that, under the generalized stepwise mutation model, R(ST) provides relatively unbiased estimates of migration rates and times of population divergence while F(ST) tends to show too much population similarity, particularly when migration rates are low or divergence times are long [corrected].

Genetic diversity and population structureGenetic Mapping and Diversity in Plants and AnimalsChromosomal and Genetic VariationsBiologyMicrosatelliteGeneticsAlleleSubdivisionAllele frequencyMeasure (data warehouse)PopulationPopulation geneticsEvolutionary biology

MeSH terms

AllelesComputer SimulationDNA, SatelliteBiological EvolutionGene FrequencyModels, GeneticPopulation DynamicsStatistics as Topic

Funding

  • Centre National de la Recherche Scientifique
  • National Institutes of Health
Citations
3,710
FWCI
39.33
field-weighted impact
References
16
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References
Genetical Structure of Populations
BMJ · 1950 · 646 citations
Analysis of Gene Diversity in Subdivided Populations
Proceedings of the National Academy of Sciences · 1973 · 8,901 citations
Mutation of human short tandem repeats
Human Molecular Genetics · 1993 · 1,586 citations
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