Shen Jie, Dorner Christian, Bahlo Angela, Pflugfelder Gert O
Institute of Genetics, Johannes Gutenberg-Universität, Becherweg 32, 55128 Mainz, Germany.
Mech Dev. 2008 Mar-Apr;125(3-4):233-46. doi: 10.1016/j.mod.2007.11.006. Epub 2007 Nov 24.
Formation and function of the A/P compartment boundary of the Drosophila wing have been studied intensely. The boundary prevents mingling of A and P cells, is characterized by an expression discontinuity of several genes like engrailed, Cubitus interruptus, hedgehog and decapentaplegic and is essential for patterning the wing. Compared with segmental or compartmental boundaries in several other systems which generally manifest as folds or clefts, the wing A/P boundary is morphologically inconspicuous in both the larval and adult stage. We show here that the Drosophila wing A/P boundary, too, is susceptible to fold and cleft formation and that these processes are suppressed by the T-box transcription factor Optomotor-blind (Omb). Using a targeted deletion encompassing the omb wing enhancer [Sivasankaran, R., Vigano, M.A., Muller, B., Affolter, M., Basler, K., 2000. Direct transcriptional control of the Dpp target omb by the DNA binding protein Brinker. EMBO J. 19, 6162-6172] and omb-RNAi to strongly and specifically reduce Omb, we show that omb is required in P cells to prevent aberrant apical fold formation at the A/P boundary of the larval wing disc and cleft formation in the adult wing blade. In the larval A/P fold, DE-cadherin-based adherens junctions appeared intact but the apical microtubule web was strongly reduced.
果蝇翅膀前后(A/P)区室边界的形成和功能已得到深入研究。该边界可防止A区和P区细胞混合,其特征是几种基因(如 engrailed、Cubitus interruptus、hedgehog 和 decapentaplegic)的表达出现间断,并且对于翅膀的图案形成至关重要。与其他几个系统中通常表现为褶皱或裂缝的节段或区室边界相比,翅膀的A/P边界在幼虫和成虫阶段在形态上并不明显。我们在此表明,果蝇翅膀的A/P边界也容易形成褶皱和裂缝,并且这些过程受到T-box转录因子视动盲(Omb)的抑制。使用包含omb翅膀增强子的靶向缺失 [Sivasankaran, R., Vigano, M.A., Muller, B., Affolter, M., Basler, K., 2000. DNA结合蛋白Brinker对Dpp靶标omb的直接转录控制。《欧洲分子生物学组织杂志》19, 6162 - 6172] 和omb-RNAi来强烈且特异性地降低Omb,我们发现P细胞中需要omb来防止幼虫翅盘A/P边界处异常的顶端褶皱形成以及成虫翅片中的裂缝形成。在幼虫的A/P褶皱中,基于DE-钙黏蛋白的黏着连接看起来完整,但顶端微管网络明显减少。