Bennett Tom, van den Toorn Albert, Willemsen Viola, Scheres Ben
Department of Molecular Genetics, University of Utrecht, Padualaan 8, Utrecht 3584 CH, The Netherlands.
Department of Molecular Genetics, University of Utrecht, Padualaan 8, Utrecht 3584 CH, The Netherlands Plant Developmental Biology, Wageningen University Research, Wageningen 6708 PB, The Netherlands.
Development. 2014 Nov;141(21):4055-64. doi: 10.1242/dev.110148. Epub 2014 Sep 25.
The regulation of columella stem cell activity in the Arabidopsis root cap by a nearby organizing centre, the quiescent centre, has been a key example of the stem cell niche paradigm in plants. Here, we investigate interactions between transcription factors that have been shown to regulate columella stem cells using a simple quantification method for stem cell activity in the root cap. Genetic and expression analyses reveal that the RETINOBLASTOMA-RELATED protein, the FEZ and SOMBRERO NAC-domain transcription factors, the ARF10 and ARF16 auxin response factors and the quiescent centre-expressed WOX5 homeodomain protein each provide independent inputs to regulate the number of columella stem cells. Given the tight control of columella development, we found that these inputs act in a surprisingly parallel manner. Nevertheless, important points of interaction exist; for example, we demonstrate the repression of SMB activity by non-autonomous action of WOX5. Our results suggest that the developmental progression of columella stem cells may be quantitatively regulated by several more broadly acting transcription factors rather than by a single intrinsic stem cell factor, which raises questions about the special nature of the stem cell state in plants.
拟南芥根冠中的小柱干细胞活性受附近的组织中心——静止中心调控,这是植物干细胞生态位范式的一个关键例子。在此,我们使用一种简单的根冠干细胞活性定量方法,研究了已被证明可调控小柱干细胞的转录因子之间的相互作用。遗传和表达分析表明,视网膜母细胞瘤相关蛋白、FEZ和SOMBRERO NAC结构域转录因子、ARF10和ARF16生长素响应因子以及在静止中心表达的WOX5同源结构域蛋白,各自提供独立的输入信号来调控小柱干细胞的数量。鉴于小柱发育受到严格控制,我们发现这些输入信号的作用方式惊人地平行。然而,相互作用的重要节点确实存在;例如,我们证明了WOX5的非自主作用对SMB活性的抑制。我们的结果表明,小柱干细胞的发育进程可能由几种作用更广泛的转录因子进行定量调控,而非由单一的内在干细胞因子调控,这引发了关于植物中干细胞状态特殊性质的问题。