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首页> 外文期刊>Developmental biology >Complementary expression of optomotor-blind and the Iroquois complex promotes fold formation to separate wing notum and hinge territories
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Complementary expression of optomotor-blind and the Iroquois complex promotes fold formation to separate wing notum and hinge territories

机译:视动盲和易洛魁人(Iroquois)复合体的互补表达促进褶皱形成,以分开翼面和铰链区

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Animal morphogenesis requires folds or clefts to separate populations of cells which are often associated with different cell affinities. In the Drosophila wing imaginal disc, the regional expression of the Iroquois complex (Iro-C) in the notum leads to the formation of the hingeotum (H/N) fold that separates the wing hinge and notum territories. Although Decapentaplegic (Dpp) signaling has been revealed as essential for the hingeotum subdivision through the restriction of Iro-C toward the notum region, the mechanism by which the H/N border develops into a fold is unknown. Here, we report that a Dpp target gene, optomotor-blind (omb), mediates the role of Dpp signaling in Iro-C inhibition. omb is complementarily expressed on the dorsal hinge side, abutting the Iro-C domain along the H/N border. Ectopic omb expression inhibits Iro-C in the notum territory, independent of known Iro-C regulators Msh and Stat92E. Uniform manipulation of either omb or Iro-C genes spanning the presumptive H/N border significantly suppresses H/N fold formation via inhibition of the apical microtubule enrichment. Ectopically sharp border or discontinuity in level of Iro-C or Omb is enough to generate ectopic fold formation. These results reveal that omb and Iro-C not only are complementarily expressed but also cooperate to promote H/N fold formation. Our data help to understand how Dpp signaling is interpreted region-specifically during tissue subdivision. (C) 2016 The Authors. Published by Elsevier Inc.
机译:动物形态发生需要褶皱或裂痕来分离通常与不同细胞亲和力相关的细胞群。在果蝇的机翼假想盘中,易洛魁复杂(Iro-C)在正肠中的局部表达导致形成铰链/正肠(H / N)折叠,从而将翼的铰链和正肠区域分开。尽管已通过将Iro-C限制在Notum区域中,将视功能障碍(Dpp)信号转导为铰链/ notum细分必不可少,但H / N边界发展成折叠的机制尚不清楚。在这里,我们报告说,Dpp靶基因,视动盲(omb),介导Dpp信号在Iro-C抑制中的作用。 omb在背铰链侧互补表示,沿着H / N边界邻接Iro-C域。异位omb表达在Notum区域抑制Iro-C,独立于已知的Iro-C调节剂Msh和Stat92E。跨推定的H / N边界的omb或Iro-C基因的均匀操纵通过抑制顶端微管富集而显着抑制了H / N折叠的形成。异位的尖锐边界或Iro-C或Omb水平的不连续足以产生异位折叠。这些结果表明,omb和Iro-C不仅互补表达,而且协同促进H / N折叠的形成。我们的数据有助于了解Dpp信号在组织细分过程中如何区域特异性地解释。 (C)2016作者。由Elsevier Inc.发布

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