Gao_2006_Pestic.Biochem.Physiol_85_28

Reference

Title : Esterase-mediated malathion resistance in the human head louse, Pediculus capitis (Anoplura: Pediculidae) - Gao_2006_Pestic.Biochem.Physiol_85_28
Author(s) : Gao JR , Yoon KS , Frisbie RK , Coles GC , Clark JM
Ref : Pesticide Biochemistry and Physiology , 85 :28 , 2006
Abstract :

Resistance in a dual malathion- and permethrin-resistant head louse strain (BR-HL) was studied. BR-HL was 3.6- and 3.7-fold more resistant to malathion and permethrin, respectively, compared to insecticide-susceptible EC-HL. S,S,S-Tributylphosphorotrithioate synergized malathion toxicity by 2.1-fold but not permethrin toxicity in BR-HL. Piperonyl butoxide did not synergize malathion or permethrin toxicity. Malathion carboxylesterase (MCE) activity was 13.3-fold and general esterase activity was 3.9-fold higher in BR-HL versus EC-HL. There were no significant differences in phosphotriesterase, glutathione S-transferase, and acetylcholinesterase activities between strains. There was no differential sensitivity in acetylcholinesterase inhibition by malaoxon. Esterases from BR-HL had higher affinities and hydrolysis efficiencies versus EC-HL using various naphthyl-substituted esters. Protein content of BR-HL females and males was 1.6- and 1.3-fold higher, respectively, versus EC-HL adults. Electrophoresis revealed two esterases with increased intensity and a unique esterase associated with BR-HL. Thus, increased MCE activity and over-expressed esterases appear to be involved in malathion resistance in the head louse.

PubMedSearch : Gao_2006_Pestic.Biochem.Physiol_85_28
PubMedID:

Related information

Inhibitor Tribufos

Citations formats

Gao JR, Yoon KS, Frisbie RK, Coles GC, Clark JM (2006)
Esterase-mediated malathion resistance in the human head louse, Pediculus capitis (Anoplura: Pediculidae)
Pesticide Biochemistry and Physiology 85 :28

Gao JR, Yoon KS, Frisbie RK, Coles GC, Clark JM (2006)
Pesticide Biochemistry and Physiology 85 :28