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Variation in genetic architecture of olfactory behaviour among wild-derived populations of Drosophila melanogaster

机译:野生果蝇果蝇嗅觉行为遗传结构的变异

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摘要

Odour-guided behaviour is a quantitative trait determined by many genes that are sensitive to gene-environment interactions. Different natural populations are likely to experience different selection pressures on the genetic underpinnings of chemosensory behaviour. However, few studies have reported comparisons of the quantitative genetic basis of olfactory behaviour in geographically distinct populations. We generated isofemale lines of Drosophila melanogaster from six populations in Argentina and measured larval and adult responses to benzaldehyde. There was significant variation within populations for both larval and adult olfactory behaviour and a significant genotype x sex interaction (GSI) for adult olfactory behaviour. However, there is substantial variation in the contribution of GSI to the total phenotypic variance among populations. Estimates of evolvability are orders of magnitude higher for larvae than for adults. Our results suggest that the potential for evolutionary adaptation to the chemosensory environment is greater at the larval feeding stage than at the adult reproductive stage.
机译:气味引导行为是由对基因-环境相互作用敏感的许多基因确定的定量性状。不同的自然种群可能在化学感应行为的遗传基础上经历不同的选择压力。但是,很少有研究报告比较地理上不同人群的嗅觉行为的定量遗传基础。我们从阿根廷的六个种群中产生了果蝇的果蝇雌性系,并测量了幼虫和成虫对苯甲醛的反应。幼虫和成年嗅觉行为在人群中都有显着差异,成年嗅觉行为的显着基因型x性交(GSI)。但是,人口之间GSI对总表型方差的贡献存在很大差异。幼虫的可进化性估计要比成人高出几个数量级。我们的结果表明,在幼虫摄食阶段,进化适应化学感觉环境的潜力比在成年生殖阶段更大。

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