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Cis-Regulatory Elements in the Accord Retrotransposon Result in Tissue-Specific Expression of the Drosophila melanogaster Insecticide Resistance Gene Cyp6g1

机译:顺式反转录转座子中的顺式调控元件导致果蝇果蝇杀虫剂抗性基因Cyp6g1的组织特异性表达。

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摘要

Transposable elements are a major mutation source and powerful agents of adaptive change. Some transposable element insertions in genomes increase to a high frequency because of the selective advantage the mutant phenotype provides. Cyp6g1-mediated insecticide resistance in Drosophila melanogaster is due to the upregulation of the cytochrome P450 gene Cyp6g1, leading to the resistance to a variety of insecticide classes. The upregulation of Cyp6g1 is correlated with the presence of the long terminal repeat (LTR) of an Accord retrotransposon inserted 291bp upstream of the Cyp6g1 transcription start site. This resistant allele (DDT-R) is currently at a high frequency in D. melanogaster populations around the world. Here, we characterize the spatial expression of Cyp6g1 in insecticide-resistant and -susceptible strains. We show that the Accord LTR insertion is indeed the resistance-associated mutation and demonstrate that the Accord LTR carries regulatory sequences that increase the expression of Cyp6g1 in tissues important for detoxification, the midgut, Malpighian tubules, and the fat body. This study provides a significant example of how changes in tissue-specific gene expression caused by transposable-element insertions can contribute to adaptation.
机译:转座因子是主要的突变来源和适应性变化的强大推动力。由于突变体表型提供的选择性优势,基因组中某些可转座元件的插入频率增加。果蝇中Cyp6g1介导的杀虫剂抗性归因于细胞色素P450基因Cyp6g1的上调,从而导致对多种杀虫剂的抗性。 Cyp6g1的上调与在Cyp6g1转录起始位点上游291bp插入的Accord逆转座子的长末端重复(LTR)的存在相关。目前,这种抗性等位基因(DDT-R)在全世界的D. melanogaster种群中频率很高。在这里,我们表征了Cyp6g1在抗药性和易感菌株中的空间表达。我们表明,雅阁LTR插入确实是与耐药性相关的突变,并证明雅阁LTR带有调节序列,该序列增加了Cyp6g1在对排毒,中肠,马氏小管和脂肪体很重要的组织中的表达。这项研究提供了一个重要的例子,说明由转座因子插入引起的组织特异性基因表达的变化如何有助于适应。

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