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中国鸡皮刺螨对杀螨剂的敏感性及与溴氰菊酯抗性相关的谷胱甘肽 S-转移酶的功能分析。

Susceptibility of Dermanyssus gallinae from China to acaricides and functional analysis of glutathione S-transferases associated with beta-cypermethrin resistance.

机构信息

College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.

Animal Disease Prevention and Control Centre of Pinggu District, Beijing 101200, China.

出版信息

Pestic Biochem Physiol. 2021 Jan;171:104724. doi: 10.1016/j.pestbp.2020.104724. Epub 2020 Oct 17.

Abstract

Dermanyssus gallinae poses a significant threat to poultry production, and the resistance to pyrethroids has been identified worldwide. Periodic monitoring of acaricide resistance in D. gallinae is very important for its control, and molecular mechanism associated with beta-cypermethrin resistance in D. gallinae is not fully clear. Results showed, four field isolates of CBP-1, CBP-2, CBP-5 and CBY-1 from China remained either susceptible or with decreased susceptibility (resistance ratio < 5.0) to phoxim, amitraz, propoxur and carbaryl. Four field isolates of CBP-1, CBP-3, CBY-2 and CBH-1 had developed high or extremely high level of resistance (resistance ratio ≥ 40.0) to beta-cypermethrin or permethrin. Detoxification enzyme activity of GSTs was significantly higher in beta-cypermethrin resistant (RS) than susceptible strain (SS), indicating that GSTs are probably involved in beta-cypermethrin resistance in D. gallinae. The recombinant GSTs (rGST-1, 2, 3) showed a pronounced activity toward the conjugates of 1-chloro-2, 4 dinitrobenzene (CDNB) and glutathione (GSH), with rGST-1 presenting the highest enzymatic activity. Constitutive over-expression of Deg-GST-2 was detected in RS strain, and GSTs genes were all inducible with the treatment of beta-cypermethrin in SS and RS strains. More importantly, knocking down Deg-GST-2 gene expression by RNAi increased the susceptibility of RS strain to beta-cypermethrin. HPLC analysis indicated that rGST-1 protein could metabolize phoxim directly, but rGSTs could not directly metabolize beta-cypermethrin. Our results indicated that some field isolates of D. gallinae from China had developed high level of resistance to pyrethroids, and elevated GSTs activity as well as increased GSTs expression levels were involved in beta-cypermethrin resistance, but the three evaluated GSTs did not play a direct role in the metabolism of beta-cypermethrin.

摘要

鸡皮刺螨对家禽生产构成重大威胁,并且已在全球范围内发现对拟除虫菊酯的抗药性。定期监测鸡皮刺螨的杀螨剂抗性对于其控制非常重要,而与鸡皮刺螨对溴氰菊酯抗性相关的分子机制尚不完全清楚。结果表明,来自中国的四个田间分离株 CBP-1、CBP-2、CBP-5 和 CBY-1 对辛硫磷、双甲脒、残杀威和西维因仍然保持敏感或敏感性降低(抗性比<5.0)。四个田间分离株 CBP-1、CBP-3、CBY-2 和 CBH-1 对溴氰菊酯或氯菊酯产生了高或极高水平的抗性(抗性比≥40.0)。GSTs 的解毒酶活性在对溴氰菊酯具有抗性(RS)的菌株中明显高于对溴氰菊酯敏感的菌株(SS),表明 GSTs 可能参与了鸡皮刺螨对溴氰菊酯的抗性。重组 GSTs(rGST-1、2、3)对 1-氯-2,4-二硝基苯(CDNB)和谷胱甘肽(GSH)的共轭物表现出明显的活性,其中 rGST-1 表现出最高的酶活性。在 RS 菌株中检测到 Deg-GST-2 的组成型过表达,并且 GSTs 基因在 SS 和 RS 菌株中均能被溴氰菊酯诱导。更重要的是,通过 RNAi 敲低 Deg-GST-2 基因表达可增加 RS 菌株对溴氰菊酯的敏感性。HPLC 分析表明,rGST-1 蛋白可直接代谢辛硫磷,但 rGSTs 不能直接代谢溴氰菊酯。我们的研究结果表明,来自中国的一些鸡皮刺螨田间分离株对拟除虫菊酯产生了高水平的抗性,并且 GSTs 活性的升高以及 GSTs 表达水平的增加与溴氰菊酯抗性有关,但这三个评估的 GSTs 并未在溴氰菊酯的代谢中发挥直接作用。

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