Vanstraelen Marleen, Baloban Mikhail, Da Ines Olivier, Cultrone Antonietta, Lammens Tim, Boudolf Véronique, Brown Spencer C, De Veylder Lieven, Mergaert Peter, Kondorosi Eva
Institut des Sciences du Végétal, Centre National de la Recherche Scientifique, Unité Propre de Recherche 2355, 91198 Gif-sur-Yvette cedex, France.
Proc Natl Acad Sci U S A. 2009 Jul 14;106(28):11806-11. doi: 10.1073/pnas.0901193106. Epub 2009 Jun 24.
Plant organs originate from meristems where stem cells are maintained to produce continuously daughter cells that are the source of different cell types. The cell cycle switch gene CCS52A, a substrate specific activator of the anaphase promoting complex/cyclosome (APC/C), controls the mitotic arrest and the transition of mitotic cycles to endoreduplication (ER) cycles as part of cell differentiation. Arabidopsis, unlike other organisms, contains 2 CCS52A isoforms. Here, we show that both of them are active and regulate meristem maintenance in the root tip, although through different mechanisms. The CCS52A1 activity in the elongation zone of the root stimulates ER and mitotic exit, and contributes to the border delineation between dividing and expanding cells. In contrast, CCS52A2 acts directly in the distal region of the root meristem to control identity of the quiescent center (QC) cells and stem cell maintenance. Cell proliferation assays in roots suggest that this control involves CCS52A2 mediated repression of mitotic activity in the QC cells. The data indicate that the CCS52A genes favor a low mitotic state in different cell types of the root tip that is required for meristem maintenance, and reveal a previously undescribed mechanism for APC/C mediated control in plant development.
植物器官起源于分生组织,在分生组织中干细胞得以维持,从而持续产生作为不同细胞类型来源的子细胞。细胞周期开关基因CCS52A是后期促进复合体/细胞周期体(APC/C)的底物特异性激活因子,作为细胞分化的一部分,它控制有丝分裂停滞以及有丝分裂周期向核内复制(ER)周期的转变。与其他生物不同,拟南芥含有两种CCS52A亚型。在这里,我们表明它们两者都具有活性,并通过不同机制调节根尖分生组织的维持。根伸长区的CCS52A1活性刺激核内复制和有丝分裂退出,并有助于划分分裂细胞和扩展细胞之间的边界。相比之下,CCS52A2直接作用于根分生组织的远端区域,以控制静止中心(QC)细胞的特性和干细胞的维持。根中的细胞增殖分析表明,这种控制涉及CCS52A2介导的对QC细胞中有丝分裂活性的抑制。这些数据表明,CCS52A基因有利于根尖不同细胞类型处于低有丝分裂状态,这是分生组织维持所必需的,并揭示了植物发育中APC/C介导控制的一种先前未描述的机制。