Abstract
Dominance level of insecticide resistance provided by one major gene (an insensitive acetylcholinesterase) in the mosquito Culex pipiens was studied in two distinct environments. Dominance level was found to be very different environments, varying from almost complete dominance to almost recessive when either propoxur (a carbamate insecticide) or chlorpyrifos (an organophosphorus insecticide) was used. To better understand this plastic response, three environmental parameters were manipulated and their interactions studied. For chlorpyrifos, each parameter had a small effect, but when all parameters were changed, the dominance level was greatly affected. For propoxur, one environmental parameter had a large effect by itself. It was further studied to understand the causal relationship of this plasticity. Recessivity of resistance was associated with more demanding environments. These results are discussed in the context of the various theories of the evolution of dominance. It appears that dominance of insecticide resistance cannot be directly predicted by Wright's physiological theory.
MeSH Terms
Animals
Chlorpyrifos
Culex/genetics
Environment
Genes, Dominant
Genes, Insect
Genes, Recessive
Homozygote
Insecta/genetics
Insecticide Resistance/genetics
Insecticides
Larva
Propoxur
Species Specificity
Chemicals
Insecticides
Propoxur
Chlorpyrifos
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Bourguet D
Institut des Sciences de l'Evolution, Université Montpellier II, France.
[email protected]
Prout M
Raymond M
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