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Candidate genes for colour and vision exhibit signals of selection across the pied flycatcher (Ficedula hypoleuca) breeding range

机译:颜色和视觉的候选基因在整个捕蝇器(Ficedula hypoleuca)繁殖范围内均表现出选择信号

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摘要

The role of natural selection in shaping adaptive trait differentiation in natural populations has long been recognized. Determining its molecular basis, however, remains a challenge. Here, we search for signals of selection in candidate genes for colour and its perception in a passerine bird. Pied flycatcher plumage varies geographically in both its structural and pigment-based properties. Both characteristics appear to be shaped by selection. A single-locus outlier test revealed 2 of 14 loci to show significantly elevated signals of divergence. The first of these, the follistatin gene, is expressed in the developing feather bud and is found in pathways with genes that determine the structure of feathers and may thus be important in generating variation in structural colouration. The second is a gene potentially underlying the ability to detect this variation: SWS1 opsin. These two loci were most differentiated in two Spanish pied flycatcher populations, which are also among the populations that have the highest UV reflectance. The follistatin and SWS1 opsin genes thus provide strong candidates for future investigations on the molecular basis of adaptively significant traits and their co-evolution. © 2012 Macmillan Publishers Limited All rights reserved.
机译:人们早已认识到自然选择在塑造自然种群适应性特征分化中的作用。然而,确定其分子基础仍然是一个挑战。在这里,我们搜索候选基因中的选择信号,以了解其在雀形目鸟中的颜色及其知觉。染色捕蝇器的羽毛在结构和基于颜料的特性上在地理上都不同。这两个特征似乎都是通过选择来塑造的。单基因座离群值测试显示14个位点中有2个位点显示出明显升高的发散信号。第一个是卵泡抑素基因,在发育中的羽毛芽中表达,并在具有决定羽毛结构的基因的途径中发现,因此可能在产生结构着色变化方面很重要。第二个是潜在检测这种变异能力的基因:SWS1视蛋白。这两个基因座在两个西班牙捕蝇器种群中最有区别,它们也是紫外线反射率最高的种群。卵泡抑素和SWS1视蛋白基因因此为适应性显着性状及其共同进化的分子基础提供了强大的候选对象,可用于未来的研究。 ©2012 Macmillan Publishers Limited保留所有权利。

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