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Evolution of a mimicry supergene from a multilocus architecture

机译:从多基因座架构进化拟态超基因

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摘要

The origin and evolution of supergenes have long fascinated evolutionary biologists. In the polymorphic butterfly Heliconius numata, a supergene controls the switch between multiple different forms, and results in near-perfect mimicry of model species. Here, we use a morphometric analysis to quantify the variation in wing pattern observed in two broods of H. numata with different alleles at the supergene locus, ‘P’. Further, we genotype the broods to associate the variation we capture with genetic differences. This allows us to begin mapping the quantitative trait loci that have minor effects on wing pattern. In addition to finding loci on novel chromosomes, our data, to our knowledge, suggest for the first time that ancestral colour-pattern loci, known to have major effects in closely related species, may contribute to the wing patterns displayed by H. numata, despite the large transfer of effects to the supergene.
机译:超基因的起源和进化长期以来一直让进化生物学家着迷。在多态蝴蝶Heliconius numata中,超基因控制着多种不同形式之间的转换,并导致模型物种的接近完美的模仿。在这里,我们使用形态计量学分析来量化在超基因位点“ P”的两个具有等位基因等位基因的H. numata亲鱼中观察到的翼型变化。此外,我们对育雏进行基因分型,以将我们捕获的变异与遗传差异相关联。这使我们可以开始绘制对翼型影响较小的定量性状基因座。除了在新染色体上找到基因座外,据我们所知,我们的数据还首次表明,已知在密切相关物种中具有重要作用的祖先彩色模式基因座可能会导致沼虾的翅型形成,尽管影响转移到了超基因上。

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