Daborn P J, Yen J L, Bogwitz M R, Le Goff G, Feil E, Jeffers S, Tijet N, Perry T, Heckel D, Batterham P, Feyereisen R, Wilson T G, ffrench-Constant R H
Department of Biology and Biochemistry, University of Bath, Bath BA2 7AY, UK.
Science. 2002 Sep 27;297(5590):2253-6. doi: 10.1126/science.1074170.
Insecticide resistance is one of the most widespread genetic changes caused by human activity, but we still understand little about the origins and spread of resistant alleles in global populations of insects. Here, via microarray analysis of all P450s in Drosophila melanogaster, we show that DDT-R, a gene conferring resistance to DDT, is associated with overtranscription of a single cytochrome P450 gene, Cyp6g1. Transgenic analysis of Cyp6g1 shows that overtranscription of this gene alone is both necessary and sufficient for resistance. Resistance and up-regulation in Drosophila populations are associated with a single Cyp6g1 allele that has spread globally. This allele is characterized by the insertion of an Accord transposable element into the 5' end of the Cyp6g1 gene.
杀虫剂抗性是由人类活动引起的最为广泛的遗传变化之一,但我们对昆虫全球种群中抗性等位基因的起源和传播仍知之甚少。在此,通过对黑腹果蝇所有细胞色素P450进行微阵列分析,我们发现一个赋予对滴滴涕抗性的基因DDT-R与单个细胞色素P450基因Cyp6g1的过度转录相关。对Cyp6g1的转基因分析表明,仅该基因的过度转录对抗性而言既是必要的也是充分的。果蝇种群中的抗性和上调与一个已在全球传播的单一Cyp6g1等位基因相关。该等位基因的特征是一个Accord转座元件插入到Cyp6g1基因的5'端。