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Mapping Regions Within Cosmopolitan Inversion In(3R)Payne Associated With Natural Variation in Body Size in Drosophila melanogaster

机译:果蝇倒映In(3R)潘恩地区与果蝇的体型自然变化相关的区域。

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摘要

Associations between genotypes for inversions and quantitative traits have been reported in several organisms, but little has been done to localize regions within inversions controlling variation in these traits. Here, we use an association mapping technique to identify genomic regions controlling variation in wing size within the cosmopolitan inversion In(3R)Payne in Drosophila melanogaster. Previous studies have shown that this inversion strongly influences variation in wing size, a trait highly correlated with body size. We found three alleles from two separate regions within In(3R)Payne with significant additive effects on wing size after the additional effect of the inversion itself had been taken into account. There were also several alleles with significant genotype-by-inversion interaction effects on wing size. None of the alleles tested had a significant additive effect on development time, suggesting different genes control these traits and that clinal patterns in them have therefore arisen independently. The presence of multiple regions within In(3R)Payne controlling size is consistent with the idea that inversions persist in populations because they contain multiple sets of locally adapted alleles, but more work needs to be done to test if they are indeed coadapted.
机译:已有几种生物报道了反转基因型与数量性状之间的关联,但在控制这些性状变异的反转基因中的区域定位方面做得很少。在这里,我们使用关联映射技术来识别控制果蝇大都会反转In(3R)Payne中机翼大小变化的基因组区域。先前的研究表明,这种反转强烈影响机翼尺寸的变化,而机翼尺寸是与机体尺寸高度相关的特征。我们已经从In(3R)Payne的两个独立区域中发现了三个等位基因,在考虑了反演本身的附加影响之后,它们对机翼的大小产生了显着的加性效应。也有几个等位基因对机翼的大小具有显着的基因型反转转化相互作用。所测试的等位基因均未对发育时间产生显着的加和效应,表明不同的基因控制了这些性状,因此它们中的克隆模式独立出现。 In(3R)Payne控制大小内多个区域的存在与这样的观点一致,即反转在种群中持续存在,因为它们包含多组局部适应的等位基因,但是需要做更多的工作来检验它们是否确实适应。

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