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Cytochrome P450 monooxygenases and insecticide resistance in insects.

机译:昆虫中的细胞色素P450单加氧酶和抗药性。

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摘要

Cytochrome P450 monooxygenases are involved in many cases of resistance of insects to insecticides. Resistance has long been associated with an increase in monooxygenase activities and with an increase in cytochrome P450 content. However, this increase does not always account for all of the resistance. In Drosophila melanogaster, we have shown that the overproduction of cytochrome P450 can be lost by the fly without a corresponding complete loss of resistance. These results prompted the sequencing of a cytochrome P450 candidate for resistance in resistant and susceptible flies. Several mutations leading to amino-acid substitutions have been detected in the P450 gene CYP6A2 of a resistant strain. The location of these mutations in a model of the 3D structure of the CYP6A2 protein suggested that some of them may be important for enzyme activity of this molecule. This has been verified by heterologous expression of wild-type and mutated cDNA in Escherichia coli. When other resistance mechanisms are considered, relatively few genetic mutations are involved in insecticide resistance, and this has led to an optimistic view of the management of resistance. Our observations compel us to survey in more detail the genetic diversity of cytochrome P450 genes and alleles involved in resistance.
机译:细胞色素P450单加氧酶参与了许多昆虫对杀虫剂的抗性。长期以来,耐药性与单加氧酶活性的增加以及细胞色素P450含量的增加有关。但是,这种增加并不总是能抵消所有阻力。在果蝇中,我们已经表明,果蝇会损失过量的细胞色素P450,而不会相应地完全丧失抗性。这些结果促使对抗性和易感果蝇中抗性的细胞色素P450候选物进行测序。在抗性菌株的P450基因CYP6A2中已检测到几种导致氨基酸取代的突变。这些突变在CYP6A2蛋白质3D结构模型中的位置表明,其中一些对于该分子的酶活性可能很重要。这已通过大肠杆菌中野生型和突变cDNA的异源表达得到证实。当考虑其他抗药性机制时,杀虫剂抗药性涉及的基因突变相对较少,这导致人们对抗药性的管理持乐观态度。我们的观察迫使我们更详细地调查了细胞色素P450基因和参与抗性的等位基因的遗传多样性。

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