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基因座内的性冲突与杀虫剂抗性。

Intralocus sexual conflict and insecticide resistance.

作者信息

Hawkes M F, Gamble C E, Turner E C R, Carey M R, Wedell N, Hosken D J

机构信息

Centre for Ecology and Conservation, University of Exeter, Tremough, Penryn TR10 9FE, UK.

Centre for Ecology and Conservation, University of Exeter, Tremough, Penryn TR10 9FE, UK

出版信息

Proc Biol Sci. 2016 Nov 30;283(1843). doi: 10.1098/rspb.2016.1429.

Abstract

The BA allele of the Drosophila cytochrome P450 gene Cyp6g1 confers resistance to a range of insecticides. It is also subject to intralocus sexual conflict when introgressed into the Canton-S background, whose collection predates the widespread use of insecticides. In this genetic background, the allele confers a pleiotropic fitness benefit to females but a cost to males, and exhibits little sexual dimorphism in conferred insecticide resistance. It is unclear whether these sexually antagonistic effects also exist in current populations that have naturally evolved with insecticides, where genetic modifiers that offset male costs might be expected to evolve. Here, we explore these issues using Drosophila melanogaster caught recently from an Australian population in which the BA allele naturally segregates. While we find increased fecundity in insecticide-resistant BA females and no consistent evidence of fitness costs in males, experimental evolution indicates balancing selection at the locus. We suggest that this apparent discrepancy may be due to reduced investment in reproduction in resistant males. Our results at the population level are consistent with previous work, and suggest that individual-level fitness assays do not always capture sexually antagonistic fitness effects that emerge in a population context.

摘要

果蝇细胞色素P450基因Cyp6g1的BA等位基因赋予了对多种杀虫剂的抗性。当它渗入到堪顿-S(Canton-S)背景中时,也会发生基因座内的性冲突,堪顿-S的样本采集早于杀虫剂的广泛使用。在这种遗传背景下,该等位基因给雌性带来了多效性的适应性益处,但对雄性来说却是一种代价,并且在赋予的抗杀虫剂能力方面几乎没有性别二态性。目前尚不清楚这些性拮抗效应在与杀虫剂共同自然进化的当前种群中是否也存在,在这些种群中可能会进化出抵消雄性代价的遗传修饰因子。在这里,我们使用最近从澳大利亚一个种群捕获的黑腹果蝇来探讨这些问题,在这个种群中BA等位基因自然分离。虽然我们发现抗杀虫剂的BA雌性的繁殖力有所提高,并且没有一致的证据表明雄性存在适应性代价,但实验进化表明该基因座存在平衡选择。我们认为这种明显的差异可能是由于抗性雄性在繁殖方面的投入减少。我们在种群水平上的结果与之前的研究一致,并表明个体水平的适应性分析并不总是能捕捉到在种群背景下出现的性拮抗适应性效应。

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