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拟态翅膀图案中 ebony 和 tan 的会聚、模块化表达在 Heliconius 蝴蝶中。

Convergent, modular expression of ebony and tan in the mimetic wing patterns of Heliconius butterflies.

机构信息

Department of Zoology, University of Cambridge, Downing Street, Cambridge, UK CB2 3EJ.

出版信息

Dev Genes Evol. 2011 Dec;221(5-6):297-308. doi: 10.1007/s00427-011-0380-6. Epub 2011 Dec 3.

Abstract

The evolution of pigmentation in vertebrates and flies has involved repeated divergence at a small number of genes related to melanin synthesis. Here, we study insect melanin synthesis genes in Heliconius butterflies, a group characterised by its diversity of wing patterns consisting of black (melanin), and yellow and red (ommochrome) pigmented scales. Consistent with their respective biochemical roles in Drosophila melanogaster, ebony is upregulated in non-melanic wing regions destined to be pigmented red whilst tan is upregulated in melanic regions. Wing regions destined to be pigmented yellow, however, are downregulated for both genes. This pattern is conserved across multiple divergent and convergent phenotypes within the Heliconii, suggesting a conserved mechanism for the development of black, red and yellow pattern elements across the genus. Linkage mapping of five melanin biosynthesis genes showed that, in contrast to other organisms, these genes do not control pattern polymorphism. Thus, the pigmentation genes themselves are not the locus of evolutionary change but lie downstream of a wing pattern regulatory factor. The results suggest a modular system in which particular combinations of genes are switched on whenever red, yellow or black pattern elements are favoured by natural selection for diverse and mimetic wing patterns.

摘要

脊椎动物和苍蝇的色素沉着的进化涉及到与黑色素合成相关的少数几个基因的反复分化。在这里,我们研究了蝴蝶中的昆虫黑色素合成基因,蝴蝶属的翅膀图案多样性特征是由黑色(黑色素)和黄色和红色(卵色素)着色鳞片组成。与在果蝇中的各自的生化作用一致,乌木在注定要着色为红色的非黑色素翅膀区域中上调,而棕褐色在黑色素区域中上调。然而,这两个基因在注定要着色为黄色的翅膀区域中下调。这种模式在蝴蝶属内的多个不同和趋同的表型中是保守的,表明了黑色、红色和黄色图案元素在整个属中的发育的保守机制。黑色素生物合成基因的连锁图谱显示,与其他生物体不同,这些基因不控制图案多态性。因此,色素沉着基因本身不是进化变化的位置,而是位于翅膀图案调节因子的下游。结果表明,当红色、黄色或黑色图案元素因不同的和拟态的翅膀图案而受到自然选择的青睐时,特定的基因组合被激活的模块化系统。

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