首页> 外文期刊>Archives of Insect Biochemistry and Physiology >INSECTICIDE RESISTANCE IN THE GROUND SPIDER, Pardosa sumatrana (THORELL, 1890; ARANEAE: LYCOSIDAE)
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INSECTICIDE RESISTANCE IN THE GROUND SPIDER, Pardosa sumatrana (THORELL, 1890; ARANEAE: LYCOSIDAE)

机译:地面蜘蛛(Pardosa sumatrana)中的杀虫剂抗性(THORELL,1890; ARANEAE:番茄科)

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摘要

Elevated levels of insecticides detoxifying enzymes, such as esterases, glutathione S-transferases (GSTs), and cytochrome P-450 monooxygenases, act in the resistance mechanisms in insects. In the present study, levels of these enzymes in the insecticide-resistant ground spider Pardosa sumatrana (Thorell, 1890) were compared with a susceptible population (control) of the same species. Standard protocols were used for biochemical estimation of enzymes. The results showed significantly higher levels of nonspecific esterases and monooxygenases in resistant spiders compared to controls. The activity of GSTs was lower in the resistant spiders. Elevated levels of nonspecific esterases and monooxygenases suggest their role in metabolic resistance in P. sumatrana. The reduced levels of total protein contents revealed its possible consumption to meet energy demands. (C) 2016 Wiley Periodicals, Inc.
机译:杀虫剂解毒酶(例如酯酶,谷胱甘肽S-转移酶(GST)和细胞色素P-450单加氧酶)水平升高,可导致昆虫产生抗药性。在本研究中,将抗虫剂的地面蜘蛛Pardosa sumatrana(Thorell,1890)中这些酶的水平与相同物种的易感种群(对照)进行了比较。标准方案用于酶的生化评估。结果显示,与对照组相比,抗性蜘蛛中非特异性酯酶和单加氧酶的水平明显更高。 GSTs的活性在抗性蜘蛛中较低。非特异性酯酶和单加氧酶水平升高表明它们在苏门答腊虾代谢抗性中的作用。总蛋白质含量降低表明其可能消耗以满足能量需求。 (C)2016威利期刊公司

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