Department of Biology, Plant Biotechnology, ETH Zurich, 8092 Zurich, Switzerland.
Plant Cell. 2010 Jun;22(6):1792-811. doi: 10.1105/tpc.110.074591. Epub 2010 Jun 4.
Several genes involved in the regulation of postembryonic organ initiation and growth have been identified. However, it remains largely unclear how developmental cues connect to the cell cycle. RETINOBLASTOMA RELATED (RBR) is a plant homolog of the tumor suppressor Retinoblastoma (pRb), which is a key regulator of the cell cycle. Using inducible RNA interference (RNAi) against Arabidopsis thaliana RBR (RBRi), we reduced RBR expression levels at different stages of plant development. Conditional reduction or loss of RBR function disrupted cell division patterns, promoted context-dependent cell proliferation, and negatively influenced establishment of cell differentiation. Several lineages of toti- and pluripotent cells, including shoot apical meristem stem cells, meristemoid mother cells, and procambial cells, failed to produce appropriately differentiated cells. Meristem activity was altered, leading to a disruption of the CLAVATA-WUSCHEL feedback loop and inhibition of lateral organ formation. Release of RBR from RNAi downregulation restored meristem activity. Gene profiling analyses soon after RBRi induction revealed that a change in RBR homeostasis is perceived as a stress, even before genes regulated by RBR-E2F become deregulated. The results establish RBR as a key cell cycle regulator required for coordination of cell division, differentiation, and cell homeostasis.
已经鉴定出了一些参与胚胎后器官起始和生长调节的基因。然而,发育线索如何与细胞周期联系起来,在很大程度上仍不清楚。REtinoblastoma RELATED (RBR) 是肿瘤抑制因子视网膜母细胞瘤(pRb)的植物同源物,它是细胞周期的关键调节剂。我们使用针对拟南芥 RBR(RBRi)的诱导型 RNA 干扰(RNAi),在植物发育的不同阶段降低 RBR 的表达水平。RBR 功能的条件性降低或缺失破坏了细胞分裂模式,促进了上下文相关的细胞增殖,并对细胞分化的建立产生了负面影响。包括茎尖分生组织干细胞、分生组织母细胞和原形成层细胞在内的几个全能细胞和多能细胞谱系未能产生适当分化的细胞。分生组织活性发生改变,导致 CLAVATA-WUSCHEL 反馈环中断,并抑制侧生器官的形成。从 RNAi 下调中释放 RBR 可恢复分生组织活性。RBRi 诱导后不久的基因表达谱分析表明,RBR 稳态的变化被视为一种应激,甚至在 RBR-E2F 调控的基因失稳之前就是如此。研究结果表明,RBR 是一个关键的细胞周期调节剂,对于协调细胞分裂、分化和细胞内稳态是必需的。