Related Experiment Video
Updated: Jun 30, 2026

A Multi-detection Assay for Malaria Transmitting Mosquitoes
Published on: February 28, 2015
Geographic differentiation in the house fly estimated by microsatellite and mitochondrial variation
E S Krafsur1, M A Cummings, M A Endsley
1Department of Entomology, Iowa State University, Ames, IA 50011, USA. ekrafsur@iastate.edu
Abstract:
Gene flow over very large geographic scales has been investigated in few species. Examples include Drosophila melanogaster, Drosophila subobscura, Drosophila simulans, and the Mediterranean fruit fly (Ceratitis capitata). The cosmopolitan house fly, a highly vagile, fecund, colonizing species offers an additional exemplar. Genotypes at seven microsatellite loci were scored in 14 widely separated natural house fly populations from the Nearctic, neotropics, Afrotropics, Palearctic, and Asia. Allelic diversities and heterozygosities differed significantly among populations. Averaged over all populations, Weir and Cockerham's theta = 0.13 and RST = 0.20. Pairwise genetic distance measures were uncorrelated with geographic distance. Microsatellite frequencies were compared with mitochondrial data from 13 of the same populations in which theta = 0.35 and Nei's GST = 0.72. Mitochondrial variation indicated up to threefold greater indices of genetic differentiation than the microsatellites. We were unable to draw any biogeographical inferences from these results or from tree or network topologies constructed from the genetic data. It is likely that high microsatellite diversities, mutation rates, and homoplasy greatly compromised their usefulness in estimating gene flow. House fly colonization dynamics include a large number of primary and secondary colonizations coupled with substantial genetic drift, but no detectable bottlenecks.
Related Concept Videos
Mutation, Gene Flow, and Genetic Drift
Gene Flow
Gene Evolution - Fast or Slow?
In contrast, regions which code...
Position-effect Variegation
Evolutionary Relationships through Genome Comparisons
Modern Molecular Taxonomy

