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二斑叶螨(蜱螨亚纲:叶螨科)对氰虫酰胺和哒螨灵的交互抗性

Cross-resistance between cyenopyrafen and pyridaben in the twospotted spider mite Tetranychus urticae (Acari: Tetranychidae).

作者信息

Sugimoto Naoya, Osakabe Masahiro

机构信息

Laboratory of Ecological Information, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

Pest Manag Sci. 2014 Jul;70(7):1090-6. doi: 10.1002/ps.3652. Epub 2013 Oct 13.

Abstract

BACKGROUND

Cyenopyrafen is an inhibitor of complex II of the mitochondrial electron transport chain. It has a molecular structure that shares some common features with frequently used complex I inhibitors such as pyridaben. To evaluate whether this similarity in structure poses a cross-resistance risk that might complicate resistance management, we selected for pyridaben and cyenopyrafen resistance in the laboratory and characterized resistance.

RESULTS

The selection for cyenopyrafen conferred cross-resistance to pyridaben and vice versa. Resistance towards these both acaricides was incompletely dominant in adult females. However, in eggs maternal effects were observed in pyridaben resistance, but not in the cyenopyrafen-resistance (completely dominant). In the cyenopyrafen resistant strain, the LC50 of eggs remained lower than the commercially recommended concentration. The common detoxification mechanisms by cytochrome P450 was involved in resistance to these acaricides. Carboxyl esterases were also involved in cyenopyrafen resistance as a major factor.

CONCLUSIONS

Although cross-resistance suggests that pyridaben resistance would confer cyenopyrafen cross-resistance, susceptibility in eggs functions to delay the development of cyenopyrafen resistance.

摘要

背景

环虫酰肼是线粒体电子传递链复合物II的抑制剂。它的分子结构与常用的复合物I抑制剂(如哒螨灵)有一些共同特征。为了评估这种结构上的相似性是否会带来交叉抗性风险,从而使抗性治理变得复杂,我们在实验室中筛选了对哒螨灵和环虫酰肼的抗性,并对其抗性进行了表征。

结果

对环虫酰肼的筛选赋予了对哒螨灵的交叉抗性,反之亦然。成年雌性对这两种杀螨剂的抗性不完全显性。然而,在卵中,观察到哒螨灵抗性存在母系效应,而环虫酰肼抗性则不存在(完全显性)。在环虫酰肼抗性品系中,卵的LC50仍低于商业推荐浓度。细胞色素P450的常见解毒机制参与了对这些杀螨剂的抗性。羧酸酯酶也是环虫酰肼抗性的主要因素。

结论

虽然交叉抗性表明哒螨灵抗性会导致环虫酰肼交叉抗性,但卵中的敏感性有助于延缓环虫酰肼抗性的发展。

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