Sablowski Robert, Carnier Dornelas Marcelo
Cell and Developmental Biology Department, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK
Instituto de Biologia, Departamento de Biologia Vegetal, Universidade Estadual de Campinas, Campinas, SP, CEP 13083-862, Brazil.
J Exp Bot. 2014 Jun;65(10):2703-14. doi: 10.1093/jxb/ert354. Epub 2013 Nov 11.
The growth of organs and whole plants depends on both cell growth and cell-cycle progression, but the interaction between both processes is poorly understood. In plants, the balance between growth and cell-cycle progression requires coordinated regulation of four different processes: macromolecular synthesis (cytoplasmic growth), turgor-driven cell-wall extension, mitotic cycle, and endocycle. Potential feedbacks between these processes include a cell-size checkpoint operating before DNA synthesis and a link between DNA contents and maximum cell size. In addition, key intercellular signals and growth regulatory genes appear to target at the same time cell-cycle and cell-growth functions. For example, auxin, gibberellin, and brassinosteroid all have parallel links to cell-cycle progression (through S-phase Cyclin D-CDK and the anaphase-promoting complex) and cell-wall functions (through cell-wall extensibility or microtubule dynamics). Another intercellular signal mediated by microtubule dynamics is the mechanical stress caused by growth of interconnected cells. Superimposed on developmental controls, sugar signalling through the TOR pathway has recently emerged as a central control point linking cytoplasmic growth, cell-cycle and cell-wall functions. Recent progress in quantitative imaging and computational modelling will facilitate analysis of the multiple interconnections between plant cell growth and cell cycle and ultimately will be required for the predictive manipulation of plant growth.
器官和整个植株的生长依赖于细胞生长和细胞周期进程,但这两个过程之间的相互作用却鲜为人知。在植物中,生长与细胞周期进程之间的平衡需要对四个不同过程进行协调调控:大分子合成(细胞质生长)、膨压驱动的细胞壁伸展、有丝分裂周期和内复制周期。这些过程之间潜在的反馈包括在DNA合成之前起作用的细胞大小检查点以及DNA含量与最大细胞大小之间的联系。此外,关键的细胞间信号和生长调节基因似乎同时作用于细胞周期和细胞生长功能。例如,生长素、赤霉素和油菜素内酯都与细胞周期进程(通过S期细胞周期蛋白D - 细胞周期蛋白依赖性激酶和后期促进复合体)以及细胞壁功能(通过细胞壁伸展性或微管动力学)有着平行的联系。由微管动力学介导的另一种细胞间信号是相互连接的细胞生长所引起的机械应力。叠加在发育控制之上,通过TOR途径的糖信号传导最近已成为连接细胞质生长、细胞周期和细胞壁功能的一个核心控制点。定量成像和计算建模方面的最新进展将有助于分析植物细胞生长与细胞周期之间的多重相互联系,并且最终对于预测性地操控植物生长而言是必不可少的。