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Evolution of dominance mechanisms at a butterfly mimicry supergene

机译:蝴蝶拟态超基因优势机制的演变

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Genetic dominance in polymorphic loci may respond to selection; however, the evolution of dominance in complex traits remains a puzzle. We analyse dominance at a wing-patterning supergene controlling local mimicry polymorphism in the butterfly Heliconius numata. Supergene alleles are associated with chromosomal inversion polymorphism, defining ancestral versus derived alleles. Using controlled crosses and the new procedure, Colour Pattern Modelling, allowing whole-wing pattern comparisons, we estimate dominance coefficients between alleles. Here we show strict dominance in sympatry favouring mimicry and inconsistent dominance throughout the wing between alleles from distant populations. Furthermore, dominance among derived alleles is uncoordinated across wing-pattern elements, producing mosaic heterozygous patterns determined by a hierarchy in colour expression. By contrast, heterozygotes with an ancestral allele show complete, coordinated dominance of the derived allele, independently of colours. Therefore, distinct dominance mechanisms have evolved in association with supergene inversions, in response to strong selection on mimicry polymorphism.
机译:多态性基因座中的遗传优势可能对选择产生响应。然而,复杂特征中优势的演变仍然是一个难题。我们分析了在蝴蝶Heliconius numata中控制局部拟态多态性的机翼模式超基因的优势。超基因等位基因与染色体倒位多态性相关联,定义了祖先与衍生等位基因。使用可控制的十字架和新程序“颜色模式建模”,允许进行全翼模式比较,我们可以估算等位基因之间的优势系数。在这里,我们显示了在对称关系中的严格优势,有利于模仿,而来自遥远人群的等位基因在整个翼上的优势则不一致。此外,衍生的等位基因之间的优势在机翼样式元素之间是不协调的,从而产生由颜色表达中的层次结构确定的镶嵌杂合样式。相比之下,具有祖先等位基因的杂合子显示出衍生等位基因的完整,协调的优势,而与颜色无关。因此,响应于对拟态多态性的强选择,与超基因倒置相关的进化了独特的优势机制。

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