1970•Medical Entomology and ZoologyOpen access

Studies on organophosphate-resistance and esterase activity in the mosquitoes of the Culex pipiens group. I.

Kazuo Yasutomi

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Abstract

Study on the relations between diazinon-resistance and esterase activity in Culex pipiens pallens larvae was carried out by the thin layer electrophoresis developed by Ogita. Esterase activity of the 4th instar larvae revealed by β-naphthylacetate hydrolysis was separated into 4 bands. Diazinon-resistant colonies showed marked higher E_2 and E_3 esterase activities than susceptible strain. The E_2 or E_3 esterase has an ability to hydrolyse phenylacetate and methyl-n-butyrate, but not acetylcholine.

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Study on the relations between diazinon-resistance and esterase activity in Culex pipiens pallens larvae was carried out by the thin layer electrophoresis developed by Ogita. Esterase activity of the 4th instar larvae revealed by β-naphthylacetate hydrolysis was separated into 4 bands. Diazinon-resistant colonies showed marked higher E_2 and E_3 esterase activities than susceptible strain. The E_2 or E_3 esterase has an ability to hydrolyse phenylacetate and methyl-n-butyrate, but not acetylcholine.

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Available abstract

Study on the relations between diazinon-resistance and esterase activity in Culex pipiens pallens larvae was carried out by the thin layer electrophoresis developed by Ogita. Esterase activity of the 4th instar larvae revealed by β-naphthylacetate hydrolysis was separated into 4 bands. Diazinon-resistant colonies showed marked higher E_2 and E_3 esterase activities than susceptible strain. The E_2 or E_3 esterase has an ability to hydrolyse phenylacetate and methyl-n-butyrate, but not acetylcholine.

Key concepts: Esterase, Culex pipiens, Diazinon, Organophosphate, Hydrolysis, Biology, Larva, Biochemistry

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Studies on organophosphate-resistance and esterase activity in the mosquitoes of the Culex pipiens group. I. — Research Paper | ScholarLens