首页> 外文期刊>Turkish Journal of Agriculture & Forestry >Multiple resistance, detoxifying enzyme activity, and inheritance of abamectin resistance in Tetranychus urticae Koch (Acarina: Tetranychidae)
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Multiple resistance, detoxifying enzyme activity, and inheritance of abamectin resistance in Tetranychus urticae Koch (Acarina: Tetranychidae)

机译:毛叶螨(Tetranychus urticae Koch)的多重抗性,解毒酶活性和阿维菌素抗性的遗传(A螨:Tetranychidae)

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The present study investigated the biochemical mechanism of abamectin resistance in a Tetranychus urticae Koch population collected from a bean greenhouse (BEYO 2) in Beyobas? village in Gazipa?a district, Antalya province, and maintained in the laboratory. LC50, 60, 90 levels of BEYO 2 population of T. urticae were determined using a dry film method. The LC50 level of the BEYO 2 strain with abamectin was selected 15 times and was increased from 2.42 μL 100 mL-1 water to 38.67 μL 100 mL-1 water. A selected strain showing 35.05-fold resistance was named ABA 15 strain. It was investigated whether the resistant strain developed multiple resistance to different pesticide groups. The ABA 15 strain with abamectin resistance developed multiple resistance to chlorpyrifos, propargite, clofentezine, and fenpyroximate. The synergistic activity between abamectin and piperonyl butoxide (PBO), triphenyl phosphate (TPP), and S-benzyl-O,O-diisopropyl phosphorothioate (IBP) was studied in the resistant strain. Application of abamectin with synergists PBO, IBP, and TPP resulted in 1.76-, 2.43-, and 1.73-fold synergistic ratios, respectively, in the ABA 15 strain. The inheritance of resistance to abamectin of F1 females after reciprocal crosses between resistant and susceptible strains was maternal and paternal incompletely dominant. GSS (susceptible strain), BEYO 2, and ABA 15 strains were investigated in terms of the enzyme activities of esterase, glutathione S-transferase (GST), and monooxygenase (P450). No significant change was determined in esterase enzyme activities of the ABA 15 resistance strain to abamectin. The band density of esterase enzyme increased in the electrophoretic method. GST enzyme activity increased from 10.23 mOD min-1 mg-1 protein to 12.36 mOD min-1 mg-1 protein. The P450 enzyme activity was raised from 0.0017 mOD min-1 mg-1 protein to 0.0039 mOD min-1 mg-1 protein. Key words: Tetranychus urticae, abamectin, inheritance, synergist, multiple resistance, detoxification enzymes
机译:本研究调查了从Beyobas的一个豆类温室(BEYO 2)收集的Tetranychus urticae Koch种群的阿维菌素抗性的生化机制。安塔利亚省Gazipa?a区的一个村庄,并由实验室维护。使用干膜法测定荨麻疹BEYO 2群体的LC50、60、90水平。选择具有阿维菌素的BEYO 2菌株的LC50水平,并从2.42μL100 mL-1水增加到38.67μL100 mL-1水。将显示出35.05倍抗性的选定菌株命名为ABA 15菌株。研究了该抗药性菌株是否对不同农药组合产生了多重抗药性。具有阿维菌素抗性的ABA 15菌株对毒死rif,炔丙基,氯芬太嗪和芬吡肟具有多重耐药性。在抗性菌株中研究了阿维菌素和胡椒基丁醚(PBO),磷酸三苯酯(TPP)和S-苄基-O,O-二异丙基硫代磷酸酯(IBP)之间的协同活性。将阿维菌素与增效剂PBO,IBP和TPP配合使用,在ABA 15菌株中的增效比分别为1.76、2.43和1.73倍。在抗性和易感菌株之间相互杂交后,F1雌性对阿维菌素的抗性遗传是母体和父体不完全主导。根据酯酶,谷胱甘肽S-转移酶(GST)和单加氧酶(P450)的酶活性研究了GSS(敏感菌株),BEYO 2和ABA 15菌株。 ABA 15抗性菌株对阿维菌素的酯酶活性没有明显变化。电泳法使酯酶的带密度增加。 GST酶活性从10.23 mOD min-1 mg-1蛋白增加到12.36 mOD min-1 mg-1蛋白。 P450酶活性从0.0017 mOD min-1 mg-1蛋白提高到0.0039 mOD min-1 mg-1蛋白。关键词:四叶虫,阿维菌素,遗传,增效剂,多重耐药性,解毒酶

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