Department of Botany, University of British Columbia, Vancouver, British Columbia V6T 1Z4, Canada.
Plant Physiol. 2012 Aug;159(4):1385-95. doi: 10.1104/pp.112.199646. Epub 2012 Jun 11.
The cuticle is a protective layer that coats the primary aerial surfaces of land plants and mediates plant interactions with the environment. It is synthesized by epidermal cells and is composed of a cutin polyester matrix that is embedded and covered with cuticular waxes. Recently, we have discovered a novel regulatory mechanism of cuticular wax biosynthesis that involves the ECERIFERUM7 (CER7) ribonuclease, a core subunit of the exosome. We hypothesized that at the onset of wax production, the CER7 ribonuclease degrades an mRNA specifying a repressor of CER3, a wax biosynthetic gene whose protein product is required for wax formation via the decarbonylation pathway. In the absence of this repressor, CER3 is expressed, leading to wax production. To identify the putative repressor of CER3 and to unravel the mechanism of CER7-mediated regulation of wax production, we performed a screen for suppressors of the cer7 mutant. Our screen resulted in the isolation of components of the RNA-silencing machinery, RNA-DEPENDENT RNA POLYMERASE1 and SUPPRESSOR OF GENE SILENCING3, implicating RNA silencing in the control of cuticular wax deposition during inflorescence stem development in Arabidopsis (Arabidopsis thaliana).
表皮是覆盖陆地植物主要气生表面并介导植物与环境相互作用的保护层。它由表皮细胞合成,由角质聚酯基质组成,该基质嵌入并覆盖有角质蜡。最近,我们发现了一个涉及 ECERIFERUM7(CER7)核糖核酸酶的角质蜡生物合成的新型调控机制,CER7 核糖核酸酶是外切体的核心亚基。我们假设,在蜡产生开始时,CER7 核糖核酸酶降解了一种指定 CER3 抑制剂的 mRNA,CER3 是一种蜡生物合成基因,其蛋白产物通过脱羰途径是蜡形成所必需的。在没有这种抑制剂的情况下,CER3 被表达,导致蜡的产生。为了鉴定 CER3 的假定抑制剂并揭示 CER7 介导的蜡生物合成调控机制,我们进行了 CER7 突变体抑制子的筛选。我们的筛选导致了 RNA 沉默机制的组件,即 RNA 依赖性 RNA 聚合酶 1 和基因沉默抑制因子 3 的分离,这表明 RNA 沉默参与了拟南芥(Arabidopsis thaliana)花序茎发育过程中表皮蜡沉积的控制。