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控制实验室选育的黑腹果蝇群体中马拉硫磷抗性的基因。

Genes controlling malathion resistance in a laboratory-selected population of Drosophila melanogaster.

作者信息

Houpt D R, Pursey J C, Morton R A

机构信息

Department of Biology, McMaster University, Hamilton, Ont., Canada.

出版信息

Genome. 1988 Dec;30(6):844-53. doi: 10.1139/g88-136.

Abstract

The chromosomal locations of several genes responsible for increased malathion resistance in a laboratory-selected population of Drosophila melanogaster have been determined. These genes appear to be involved in the regulation of microsomal cytochrome P-450. A major gene on chromosome 2 (2-64) and at least two genes on chromosome 3 (near 3-58) control increased mixed function oxidase activity, and both larval and adult malathion resistance. Although the chromosome 2 locus was not associated with a significant increase in cytochrome P-450 content, SDS polyacrylamide gel electrophoresis of microsomal proteins detected increased silver staining of a polypeptide having a relative molecular mass (Mr) of about 52,000. Microsomes from strains carrying the chromosome 3 factors for resistance contained more cytochrome P-450 and increased amounts of two heme-staining protein bands (Mr = 50,000 and 54,000). The genes regulating these proteins were closely linked to striped at 3-62 and probably identical to the loci responsible for malathion resistance and increased mixed function oxidase activity. Other R genes on both chromosomes 2 and 3 as well as target resistance were required for the full expression of malathion resistance in the selected Drosophila population. Exposure of this Drosophila melanogaster population to malathion selected a polygenic system for the oxidative metabolism of insecticide.

摘要

在实验室选择的黑腹果蝇群体中,已确定了几个与马拉硫磷抗性增强相关的基因的染色体位置。这些基因似乎参与微粒体细胞色素P - 450的调节。位于2号染色体上的一个主要基因(2 - 64)和3号染色体上至少两个基因(靠近3 - 58)控制着混合功能氧化酶活性的增强以及幼虫和成虫对马拉硫磷的抗性。虽然2号染色体位点与细胞色素P - 450含量的显著增加无关,但微粒体蛋白的SDS聚丙烯酰胺凝胶电泳检测到一条相对分子质量(Mr)约为52,000的多肽的银染增加。携带3号染色体抗性因子的品系的微粒体含有更多的细胞色素P - 450和两条血红素染色蛋白带(Mr = 50,000和54,000)的量增加。调节这些蛋白质的基因与3 - 62处的条纹紧密连锁,可能与负责马拉硫磷抗性和混合功能氧化酶活性增加的位点相同。2号和3号染色体上的其他抗性基因以及靶标抗性是所选果蝇群体中马拉硫磷抗性充分表达所必需的。将该黑腹果蝇群体暴露于马拉硫磷中,选择了一个用于杀虫剂氧化代谢的多基因系统。

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