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首页> 外文期刊>Developmental biology >Augmentation of a wound response element accompanies the origin of a Hox-regulated Drosophila abdominal pigmentation trait
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Augmentation of a wound response element accompanies the origin of a Hox-regulated Drosophila abdominal pigmentation trait

机译:伤口反应元件的增强伴随Hox调节的果蝇腹部色素沉着特征的起源

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摘要

A challenge for evolutionary research is to uncover how new morphological traits evolve the coordinated spatial and temporal expression patterns of genes that govern their formation during development. Detailed studies are often limited to characterizing how one or a few genes contributed to a trait's emergence, and thus our knowledge of how entire GRNs evolve their coordinated expression of each gene remains unresolved. The melanic color patterns decorating the male abdominal tergites of Drosophila (D.) melanogaster evolved in part by novel expression patterns for genes acting at the terminus of a pigment metabolic pathway, driven by cis-regulatory elements (CREs) with distinct mechanisms of Hox regulation. Here, we examined the expression and evolutionary histories of two important enzymes in this pathway, encoded by the pale and Ddc genes. We found that while both genes exhibit dynamic patterns of expression, a robust pattern of Ddc expression specifically evolved in the lineage of fruit flies with pronounced melanic abdomens. Derived Ddc expression requires the activity of a CRE previously shown to activate expression in response to epidermal wounding. We show that a binding site for the Grainy head transcription factor that promotes the ancestral wound healing function of this CRE is also required for abdominal activity. Together with previous findings in this system, our work shows how the GRN for a novel trait emerged by assembling unique yet similarly functioning CREs from heterogeneous starting points.
机译:进化研究的一个挑战是发现新的形态特征如何进化控制发育过程中基因形成的协调的时空表达模式。详细的研究通常仅限于表征一个或几个基因如何促成一种性状的出现,因此,我们对整个GRN如何进化其每个基因的协同表达的知识仍未解决。装饰果蝇(D.)黑腹果蝇的男性腹部的黑素颜色模式部分是由作用于色素代谢途径末端的基因的新型表达模式演变而来的,该基因由具有Hox调控机制的顺式调控元件(CRE)驱动。在这里,我们检查了由苍白和Ddc基因编码的两种重要酶在此途径中的表达和进化史。我们发现,虽然这两个基因均表现出动态表达模式,但Ddc表达的稳健模式在果蝇谱系明显的黑腹中特别进化。衍生的Ddc表达需要CRE的活性,该活性先前已证明可响应表皮伤口激活表达。我们显示,腹部活动也需要粒状头部转录因子的结合位点,该位点可促进该CRE的祖传伤口愈合功能。连同该系统中的先前发现,我们的工作表明了如何通过从异类起点组装独特但功能相似的CRE来出现新特征的GRN。

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