Department of Biology and Zurich-Basel Plant Science Center, ETH Zurich, Zurich, Switzerland.
Development. 2011 Jul;138(14):2977-86. doi: 10.1242/dev.060830.
Seedling establishment is a crucial phase during plant development when the germinating heterotrophic embryo switches to autotrophic growth and development. Positive regulators of embryonic development need to be turned off, while the cell cycle machinery is activated to allow cell cycle entry and organ primordia initiation. However, it is not yet understood how the molecular mechanisms responsible for the onset of cell division, metabolism changes and cell differentiation are coordinated during this transition. Here, we demonstrate that the Arabidopsis thaliana RETINOBLASTOMA-RELATED protein (RBR) ortholog of the animal tumor suppressor retinoblastoma (pRB) not only controls the expression of cell cycle-related genes, but is also required for persistent shut-down of late embryonic genes by increasing their histone H3K27 trimethylation. Seedlings with reduced RBR function arrest development after germination, and stimulation with low amounts of sucrose induces transcription of late embryonic genes and causes ectopic cell division. Our results suggest a model in which RBR acts antagonistically to sucrose by negatively regulating the cell cycle and repressing embryonic genes. Thus, RBR is a positive regulator of the developmental switch from embryonic heterotrophic growth to autotrophic growth. This establishes RBR as a new integrator of metabolic and developmental decisions.
幼苗的建立是植物发育过程中的一个关键阶段,此时正在发芽的异养胚胎转变为自养生长和发育。需要关闭胚胎发育的正调控因子,同时激活细胞周期机制,以允许细胞周期进入和器官原基的起始。然而,目前尚不清楚在这个转变过程中,负责细胞分裂、代谢变化和细胞分化的分子机制是如何协调的。在这里,我们证明拟南芥中的 RETINOBLASTOMA-RELATED 蛋白(RBR)与动物肿瘤抑制因子视网膜母细胞瘤(pRB)的同源物不仅控制细胞周期相关基因的表达,而且还通过增加组蛋白 H3K27 的三甲基化来维持晚期胚胎基因的关闭。功能降低的 RBR 幼苗在萌发后发育停滞,而低浓度的蔗糖刺激会诱导晚期胚胎基因的转录,并导致异位细胞分裂。我们的结果表明,RBR 通过负调控细胞周期和抑制胚胎基因来拮抗蔗糖,从而起到作用。因此,RBR 是从胚胎异养生长到自养生长的发育开关的正调控因子。这将 RBR 确立为代谢和发育决策的新整合因子。