Galinha Carla, Hofhuis Hugo, Luijten Marijn, Willemsen Viola, Blilou Ikram, Heidstra Renze, Scheres Ben
Department of Biology, Faculty of Science, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Nature. 2007 Oct 25;449(7165):1053-7. doi: 10.1038/nature06206.
Factors with a graded distribution can program fields of cells in a dose-dependent manner, but no evidence has hitherto surfaced for such mechanisms in plants. In the Arabidopsis thaliana root, two PLETHORA (PLT) genes encoding AP2-domain transcription factors have been shown to maintain the activity of stem cells. Here we show that a clade of four PLT homologues is necessary for root formation. Promoter activity and protein fusions of PLT homologues display gradient distributions with maxima in the stem cell area. PLT activities are largely additive and dosage dependent. High levels of PLT activity promote stem cell identity and maintenance; lower levels promote mitotic activity of stem cell daughters; and further reduction in levels is required for cell differentiation. Our findings indicate that PLT protein dosage is translated into distinct cellular responses.
具有分级分布的因子可以以剂量依赖的方式对细胞区域进行编程,但迄今为止在植物中尚未发现这种机制的证据。在拟南芥根中,已证明两个编码AP2结构域转录因子的多能性(PLETHORA,PLT)基因可维持干细胞的活性。我们在此表明,四个PLT同源物的一个分支对于根的形成是必需的。PLT同源物的启动子活性和蛋白融合在干细胞区域呈现出最大值的梯度分布。PLT活性在很大程度上具有加和性且依赖于剂量。高水平的PLT活性促进干细胞特性的维持;较低水平促进干细胞子代的有丝分裂活性;而细胞分化则需要进一步降低其水平。我们的研究结果表明,PLT蛋白剂量可转化为不同的细胞反应。