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Toxicology and cytogenetic analysis of a Drosophila melanogaster mutant resistant to Imidacloprid and DDT

机译:对吡虫啉和滴滴涕耐药的果蝇黑变种的毒理学和细胞遗传学分析

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Resistance to all major insecticide classes has developed in numerous and diverse insect field populations. Imidacloprid, the worldwide most used neonicotinoid, has been extensively applied during the last decade for the control of different insect pests. Lately, cases of sporadic resistance also to neonicotinoids, including Imidacloprid, have been reported. Drosophila melanogaster is one of the most popular model organisms in biology and, although not a pest species, a promising model system for insecticide resistance research. In this study, we present a toxicological and karyotypic analysis of a Drosophila mutant (MiT[w-]3R2) resistant to Imidacloprid and cross-resistant to DDT. Karyotype analysis of polytene chromosome of MiT[w-]3R2 flies did not identify any apparent structural change of the polytene chromosome linked with the resistance phenotype. [Projekat Ministarstva nauke Republike Srbije, br. 173012]
机译:在许多不同的昆虫田间种群中已经对所有主要杀虫剂产生了抗药性。吡虫啉是全世界使用最广泛的新烟碱类药物,在过去的十年中已广泛用于防治各种害虫。最近,已经报道了偶发性对新烟碱类药物(包括吡虫啉)的耐药性的病例。果蝇(Drosophila melanogaster)是生物学上最受欢迎的模型生物之一,尽管不是害虫物种,但它是用于抗药性研究的有前途的模型系统。在这项研究中,我们提出了果蝇突变体(MiT [w-] 3R2)对吡虫啉和交叉滴滴涕具有抗性的毒理学和核型分析。 MiT [w-] 3R2蝇的多态染色体的染色体核型分析未发现与抗性表型有关的多态染色体的任何明显结构变化。 [Projekat Ministarstva nauke Republike Srbije,br。 173012]

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