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首页> 外文期刊>Development >Activation of the knirps locus links patterning to morphogenesis of the second wing vein in Drosophila.
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Activation of the knirps locus links patterning to morphogenesis of the second wing vein in Drosophila.

机译:knirps基因座的激活将模式与果蝇第二个翼静脉的形态发生联系起来。

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摘要

The adjacent knirps (kni) and knirps-related (knrl) genes encode functionally related zinc finger transcription factors that collaborate to initiate development of the second longitudinal wing vein (L2). kni and knrl are expressed in the third instar larval wing disc in a narrow stripe of cells just anterior to the broad central zone of cells expressing high levels of the related spalt genes. Here, we identify a 1.4 kb cis-acting enhancer element from the kni locus that faithfully directs gene expression in the L2 primordium. We find that three independent ri alleles have alterations mapping within the L2-enhancer element and show that two of these observed lesions eliminate the ability of the enhancer element to direct gene expression in the L2 primordium. The L2 enhancer can be subdivided into distinct activation and repression domains. The activation domain mediates the combined action of the general wing activator Scalloped and a putative locally provided factor, the activity of which is abrogated by a single nucleotide alteration in the ri(53j) mutant. We also find that misexpression of genes in L2 that are normally expressed in veins other than L2 results in abnormal L2 development. These experiments provide a mechanistic basis for understanding how kni and knrl link AP patterning to morphogenesis of the L2 vein by orchestrating the expression of a selective subset of vein-promoting genes in the L2 primordium.
机译:相邻的knirps(kni)和knirps相关(knrl)基因编码功能相关的锌指转录因子,这些因子共同启动第二条纵向翼静脉(L2)的发育。 kni和knrl在第三龄幼虫翅片中的狭窄细胞条中表达,该细胞条位于表达高水平相关Spalt基因的细胞宽广中央区域的前面。在这里,我们从kni基因座中识别出一个1.4 kb的顺式增强子,该元件忠实地指导L2原基中的基因表达。我们发现三个独立的ri等位基因在L2增强子元件内具有变化图谱,并显示其中两个观察到的病变消除了增强子元件指导L2原基中基因表达的能力。 L2增强子可细分为不同的激活和抑制域。激活结构域介导了扇形扇形扇形扇形扇贝和假定的局部提供因子的联合作用,其活性被ri(53j)突变体中的单个核苷酸改变所废止。我们还发现,L2中通常在L2以外的静脉中表达的基因的错误表达会导致L2发育异常。这些实验为了解kni和knrl如何通过在L2原基中编排促静脉基因的选择性子集的表达,将AP模式与L2静脉的形态发生联系起来提供了机械基础。

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