article
Genetic and Biological Influences in the Evolution of Insecticide Resistance
Journal of Economic Entomology · 1977 · Vol. 70(3) · pp. 319–323
George P. Georghiou✉(University of California, Riverside)Charles Taylor(University of California, Riverside)
Abstract
Evolution of insecticide resistance, measured by the frequency of a resistant allele and by population size, was simulated on a computer. The effects of dominance, initial gene frequency, refugia, immigration, and reproductive potential were studied singly with a deterministic model. In all cases, resistance evolved eventually, although the rate at which this occurred varied. The slowest response to selection occurred when (1) the population was diluted by immigrants, (2) population density was drastically suppressed by severe selection, and (3) susceptible individuals had a reproductive advantage over their resistant counterparts.
Insect Resistance and GeneticsInsect and Pesticide ResearchInsect-Plant Interactions and ControlBiologyDominance (genetics)PopulationSelection (genetic algorithm)Resistance (ecology)AlleleEffective population sizeAllele frequencyInsecticide resistancePopulation genetics
MeSH terms
AllelesAnimalsGene FrequencyInsecticide ResistanceInsectaModels, BiologicalReproduction
Citations
476
FWCI
1.02
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0
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75%
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