Molecular response of Musca domestica L. to Mintostachys verticillata essential oil, (4R)(+)-pulegone and menthone

被引:38
作者
Estefania Rossi, Yanina [1 ]
Canavoso, Lilian [2 ,3 ]
Maria Palacios, Sara [1 ]
机构
[1] Univ Catolica Cordoba, Lab Quim Fina & Prod Nat, Cordoba, Argentina
[2] Ctr Invest Bioquim Clin & Inmunol CIBICI CONICET, Cordoba, Argentina
[3] Dept Bioquim Clin, Cordoba, Argentina
关键词
Musca domestica; Minthostachys verticillata; Essential oil; (4R)(+)-Pulegone; Cytochrome P450; HOUSE-FLY DIPTERA; INSECTICIDE RESISTANCE; PYRETHROID RESISTANCE; CYROMAZINE RESISTANCE; CROSS-RESISTANCE; (R)-(+)-PULEGONE; METABOLISM; MUSCIDAE; MENTHOFURAN; TOXICITY;
D O I
10.1016/j.fitote.2011.11.019
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Intense applications of synthetic insecticides for the control of adult Musca domestica have led to the insects developing resistance to most of them. In consequence, there is interest in new active ingredients as alternatives to conventional insecticides. Essential oils (EO) are potential tools for controlling M. domestica because of their effectiveness and their minimal environmental effects. In a fumigant assay, M. domestica adults treated with Minthostachys verticillata EO [LC50 = 0.5 mg/dm(3); majority components by SPME-GC; (4R)(+)-pulegone (67.5%), menthone (22.3%) and (4R)(+)-limonene (3.8%)], died within 15 min or less. The terpenes absorbed by the flies and their metabolites. analyzed using SPME fiber, were (4R)(+)-limonene (LC50 = 6.2 mg/dm(3)), menthone (LC50 = 1.9 mg/dm(3)), (4R)(+)-pulegone (LC50 = 1.7 mg/dm(3)) and a new component, menthofuran (LC50 = 0.3 mg/dm(3)), in a relative proportion of 12.4, 6.5, 35.9 and 44.2% respectively. Menthofuran was formed by oxidation of either (4R)(+)-pulegone or menthone mediated by cytochrome P450, as demonstrated by a fumigation assay on flies previously treated with piperonyl butoxide, a P450 inhibitor, which showed a decrease in toxicity of the EO, (4R)(+)-pulegone and of menthone, supporting the participation of the P450 oxidizing system in the formation of menthofuran. The enzymatic reaction of isolated fly microsomes with the EO or the (4R)(+)-pulegone produced menthofuran in both cases. Contrary to expectations, the insect detoxification system contributed to enhance the toxicity of the M. verticillata EO. Consequently, resistant strains overexpressing P450 genes will be more susceptible to either M. verticillata EO or (4R)(+)-pulegone and menthone. (C) 2011 Elsevier B.V. All rights reserved.
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收藏
页码:336 / 342
页数:7
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