Scinovex
articleTop 1% cited

Detection of reduction in population size using data from microsatellite loci

Molecular Ecology · 2001 · Vol. 10(2) · pp. 305–318
John Carlos GarzaE. G. Williamson

Abstract

We demonstrate that the mean ratio of the number of alleles to the range in allele size, which we term M, calculated from a population sample of microsatellite loci, can be used to detect reductions in population size. Using simulations, we show that, for a general class of mutation models, the value of M decreases when a population is reduced in size. The magnitude of the decrease is positively correlated with the severity and duration of the reduction in size. We also find that the rate of recovery of M following a reduction in size is positively correlated with post-reduction population size, but that recovery occurs in both small and large populations. This indicates that M can distinguish between populations that have been recently reduced in size and those which have been small for a long time. We employ M to develop a statistical test for recent reductions in population size that can detect such changes for more than 100 generations with the post-reduction demographic scenarios we examine. We also compute M for a variety of populations and species using microsatellite data collected from the literature. We find that the value of M consistently predicts the reported demographic history for these populations. This method, and others like it, promises to be an important tool for the conservation and management of populations that are in need of intervention or recovery.

Genetic diversity and population structureGenetic and phenotypic traits in livestockEvolution and Genetic DynamicsBiologyMicrosatellitePopulation sizeEffective population sizeSample size determinationPopulationRange (aeronautics)Evolutionary biologyAlleleStatistics

MeSH terms

AllelesAnimalsGenetics, PopulationMutationPopulation DynamicsModels, StatisticalEcosystemMicrosatellite Repeats

Funding

  • National Institutes of Health
Citations
1,661
FWCI
12.26
field-weighted impact
References
47
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.