Morohashi Kengo, Zhao Mingzhe, Yang Manli, Read Betsy, Lloyd Alan, Lamb Rebecca, Grotewold Erich
Department of Plant Cellular and Molecular Biology , The Ohio State University, Columbus, Ohio 43210, USA.
Plant Physiol. 2007 Nov;145(3):736-46. doi: 10.1104/pp.107.104521. Epub 2007 Sep 20.
The development of trichomes (leaf hairs) from pluripotent epidermal cells in Arabidopsis (Arabidopsis thaliana) provides a powerful system to investigate the regulatory motifs involved in plant cell differentiation. We show here that trichome initiation is triggered within 4 h of the induction of the GLABRA3 (GL3) basic helix-loop-helix transcription factor. Within this developmental window, GL3 binds to the promoters of at least three genes previously implicated in the development and patterning of trichomes (GL2, CAPRICE, and ENHANCER OF TRIPTYCHON AND CAPRICE1) and activates their transcription. The in vivo binding of GL3 to the promoters of these genes requires the presence of the R2R3-MYB factor GL1, supporting a model in which a GL3-GL1 complex is part of the trichome initiation enhanceosome. In contrast, GL3 is recruited to its own promoter in a GL1-independent manner, and this results in decreased GL3 expression, suggesting the presence of a GL3 negative autoregulatory loop. In support of genetic analyses indicating that ENHANCER OF GL3 (EGL3) is partially redundant with GL3, we show that EGL3 shares some direct targets with GL3. However, our results suggest that GL3 and EGL3 work independently of each other. Taken together, our results provide a regulatory framework to understand early events of epidermal cell differentiation.
拟南芥(Arabidopsis thaliana)中多能表皮细胞毛状体(叶毛)的发育提供了一个强大的系统,用于研究植物细胞分化中涉及的调控基序。我们在此表明,毛状体起始在GLABRA3(GL3)碱性螺旋-环-螺旋转录因子诱导后的4小时内被触发。在这个发育窗口内,GL3与至少三个先前与毛状体发育和模式形成相关的基因(GL2、CAPRICE和TRIPTYCHON AND CAPRICE1增强子)的启动子结合,并激活它们的转录。GL3在体内与这些基因启动子的结合需要R2R3-MYB因子GL1的存在,这支持了一个模型,即GL3-GL1复合物是毛状体起始增强体的一部分。相反,GL3以GL1非依赖的方式被招募到其自身的启动子上,这导致GL3表达降低,表明存在GL3负自调控环。支持表明GL3增强子(EGL3)与GL3部分冗余的遗传分析,我们表明EGL3与GL3有一些直接靶点。然而,我们的结果表明GL3和EGL3彼此独立发挥作用。综上所述,我们的结果提供了一个调控框架,以理解表皮细胞分化的早期事件。