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首页> 外文期刊>EvoDevo >Transcription factors underlying wing margin color patterns and pupal cuticle markings in butterflies
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Transcription factors underlying wing margin color patterns and pupal cuticle markings in butterflies

机译:翼形边缘颜色模式和蝴蝶蛹标记的转录因子

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The diversity of butterfly color patterns can be attributed to a relatively small number of pattern elements that are homologous across Lepidoptera. Although genes involved in patterning some of these elements have been identified, the development of several major elements remains poorly understood. To identify genes underlying wing pupal cuticle markings and wing margin color patterns, we examined expression of the candidate transcription factors Engrailed/Invected (En/Inv), Distal-less (Dll), Cubitus interruptus (Ci), and Spalt in two nymphalids: Junonia coenia and Bicyclus anynana. We found that En/Inv, Dll, and Ci mark domains on the J. coenia last-instar forewing disc that closely correspond to the position and shape of pupal cuticle markings. We also found that Spalt demarcates wing margin color patterns in both J. coenia and B. anynana, and that CRISPR/Cas9 deletions in the spalt gene result in reduction and loss of wing margin color patterns in J. coenia. These data demonstrate a role for spalt in promoting wing margin color patterning, in addition to its previously described role in eyespot patterning. Our observations support the model that a core set of regulatory genes are redeployed multiple times, and in multiple roles, during butterfly wing pattern development. Of these genes, spalt is of special interest as it plays a dual role in both eyespot and margin color pattern development.
机译:蝴蝶颜色图案的多样性可归因于鳞翅目的相对少量的图案元素。虽然已经确定了涉及图案化一些这些元素的基因,但是若干主要元素的发展仍然明白。为了鉴定翼瞳角质层标记和机翼边缘颜色模式的基因,我们检查了诱惑/已被诱惑的候选转录因子的表达(EN / INV),远端(DLL),Cubitus Interruptus(CI),以及两种Nymphalids的透明度: Junonia Coenia和Bycyclus anynana。我们发现J.Coenia的EN / INV,DLL和CI标记域在紧密对应于蛹角色标记的位置和形状的圆盘上。我们还发现,灯石划分J.Coenia和B.Manaana的翼缘颜色模式,并且在闪亮基因中删除CRISPR / CAS9缺失导致J.Coenia的翼边缘颜色模式的减少和丧失。这些数据表明,除了在眼睛图案化中的先前描述的角色外,还表明了促进翼缘颜色图案化的闪烁型颜色图案。我们的观察支持对蝴蝶翼型开发期间多次重新部署的核心监管基因集,以及多种角色。在这些基因中,散发物具有特殊兴趣,因为它在眼镜和边缘颜色模式开发中发挥着双重作用。

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