Inheritance and activity of some esterases associated with organophosphate resistance in mosquitoes of the complex ofCulex pipiensL. (Diptera: Cnlicidae)
- 1 March 1983
- journal article
- review article
- Published by Cambridge University Press (CUP) in Bulletin of Entomological Research
- Vol. 73 (1) , 153-170
- https://doi.org/10.1017/s0007485300013882
Abstract
Eighteen strains of the complex ofCulex pipiensL. from Africa, Asia and Europe were bioassayed for resistance to chlorpyrifos and electro-phoresed and stained for esterases. Susceptible strains showed only low activity esterase bands. The resistant strains ofC. quinquefasciatusSay from hot countries (Liberia, Nigeria, Sri Lanka, Tanzania, Thailand) all showed the same two high intensity esterase bands (Rm 0·60 + 0·82). Different patterns of high esterase were found in resistantC. pipiensstrains from cooler localities in Nairobi, Kenya (Rm 100), and Mont-pellier, France (Rm 0–50). Selection experiments on strains originally polymorphic for resistance and esterase pattern showed, without exception, that high esterase remained associated with resistance, and it is concluded that the association is almost certainly causal and not merely due to genetic linkage. The high intensity esterase bands were probably due to alleles of the loci Est-l, Est-2 and Est-3, separated by crossover distances of approximately 2·4 and 5·5 units, respectively. Strains monomorphic for what appeared to be the same high esterase pattern varied markedly in resistance level. Enzyme assays showed a direct relationship between levels of enzyme activity and resistance. Bioassays with fenthion and chlorpyrifos revealed differences in the relative resistance ofC. quinquefasciatusfrom Colombo (Sri Lanka) and Dar-es-Salaam (Tanzania). Despite these differential degrees of cross-effectiveness, it is concluded that high intensity esterases are reliable indicators of organophosphate resistance in mosquitoes of theC. pipienscomplex, although the possibility of other resistance mechanisms means that the lack of abnormally active esterases does not necessarily indicate the absence of resistance.This publication has 64 references indexed in Scilit:
- 10.1007/BF00335868Published by Test accounts ,2011
- Migration and the “dilution” of resistance genesTransactions of the Royal Society of Tropical Medicine and Hygiene, 1982
- Genetic and biochemical studies of the highly active esterases A? and B associated with organophosphate resistance in mosquitoes of the Culex pipiens complexBiochemical Genetics, 1981
- Chlorpyrifos (Dursban®) resistance inCulex pipiens pipiens L. from Southern France: Inheritance and linkageCellular and Molecular Life Sciences, 1978
- Mechanism of Malathion Resistance in the Green Rice Leafhopper, Nephotettix cincticeps Uhler (Hemiptera: Deltocephalidae)Journal of Pesticide Science, 1976
- ESTERASE VARIATION AND ORGANOPHOSPHATE RESISTANCE IN POPULATIONS OF APHIS FABAE AND MYZUS PERSICAEEntomologia Experimentalis et Applicata, 1974
- Isozymes in Insects and Their SignificanceAnnual Review of Entomology, 1974
- An in vitro study of esterases hydrolysing specific substrates of an OP-susceptible and an OP-resistant strain of the green peach aphid, Myzus Persicae SulzComparative and General Pharmacology, 1973
- Diagnosis of Resistance to Organophosphorus Insecticides in Myzus persicae (Sulz.)Nature, 1971
- Naphthyl acetate esterase in the green rice leafhopper, Nephotettix cincticeps UHLER, with special reference to the resistant colony of the organophosphorus insecticideJapanese Journal of Applied Entomology and Zoology, 1965