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Selective Sweep Analysis in the Genomes of the 91-R and 91-C Drosophila melanogaster Strains Reveals Few of the ‘Usual Suspects’ in Dichlorodiphenyltrichloroethane (DDT) Resistance

机译:在91-R和91-C黑腹果蝇菌株的基因组中进行的选择性扫频分析揭示了对二氯二苯基三氯乙烷(DDT)的抗药性很少有人怀疑

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摘要

Adaptation of insect phenotypes for survival after exposure to xenobiotics can result from selection at multiple loci with additive genetic effects. To the authors’ knowledge, no selective sweep analysis has been performed to identify such loci in highly dichlorodiphenyltrichloroethane (DDT) resistant insects. Here we compared a highly DDT resistant phenotype in the Drosophila melanogaster (Drosophila) 91-R strain to the DDT susceptible 91-C strain, both of common origin. Whole genome re-sequencing data from pools of individuals was generated separately for 91-R and 91-C, and mapped to the reference Drosophila genome assembly (v. 5.72). Thirteen major and three minor effect chromosome intervals with reduced nucleotide diversity (π) were identified only in the 91-R population. Estimates of Tajima's D (D) showed corresponding evidence of directional selection in these same genome regions of 91-R, however, no similar reductions in π or D estimates were detected in 91-C. An overabundance of non-synonymous proteins coding to synonymous changes were identified in putative open reading frames associated with 91-R. Except for NinaC and Cyp4g1, none of the identified genes were the ‘usual suspects’ previously observed to be associated with DDT resistance. Additionally, up-regulated ATP-binding cassette transporters have been previously associated with DDT resistance; however, here we identified a structurally altered MDR49 candidate resistance gene. The remaining fourteen genes have not previously been shown to be associated with DDT resistance. These results suggest hitherto unknown mechanisms of DDT resistance, most of which have been overlooked in previous transcriptional studies, with some genes having orthologs in mammals.
机译:暴露于异种生物后昆虫表型适应生存的原因可能是在多个基因座处进行选择,并具有附加的遗传效应。据作者所知,尚未进行选择性扫描分析来鉴定高度抗二氯二苯基三氯乙烷(DDT)的昆虫中的此类基因座。在这里,我们比较了果蝇(Drosophila melanogaster)(Drosophila)91-R菌株中对DDT敏感的91-C菌株的高度抗DDT表型,两者均为常见来源。来自个体库的全基因组重测序数据是分别针对91-R和91-C生成的,并映射到参考果蝇基因组装配(v。5.72)。仅在91-R人群中鉴定出13个主要和三个次要染色体间隔降低的核苷酸多样性(π)。 Tajima D(D)的估计值显示了在91-R的这些相同基因组区域中定向选择的相应证据,但是,在91-C中未检测到π或D估计值的类似降低。在与91-R相关的推定开放阅读框中发现了编码同义变化的非同义蛋白质过多。除NinaC和Cyp4g1外,所有已鉴定的基因均不是先前观察到的与DDT抗药性相关的“常见可疑物”。另外,上调的ATP结合盒转运蛋白以前与DDT的抗性有关。但是,在这里我们确定了一个结构改变的MDR49候选抗性基因。其余十四个基因以前未显示与DDT抗性相关。这些结果表明DDT抗性的迄今未知的机制,其中大多数基因在先前的转录研究中被忽略,某些基因在哺乳动物中具有直系同源物。

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