Nafisi Majse, Stranne Maria, Fimognari Lorenzo, Atwell Susanna, Martens Helle J, Pedas Pai R, Hansen Sara F, Nawrath Christiane, Scheller Henrik V, Kliebenstein Daniel J, Sakuragi Yumiko
Copenhagen Plant Science Center Frederiksberg, Denmark ; Department of Plant and Environmental Sciences, University of Copenhagen Frederiksberg, Denmark.
Department of Plant Sciences, University of California, Davis Davis, CA, USA.
Front Plant Sci. 2015 Jul 22;6:550. doi: 10.3389/fpls.2015.00550. eCollection 2015.
The epidermis on leaves protects plants from pathogen invasion and provides a waterproof barrier. It consists of a layer of cells that is surrounded by thick cell walls, which are partially impregnated by highly hydrophobic cuticular components. We show that the Arabidopsis T-DNA insertion mutants of REDUCED WALL ACETYLATION 2 (rwa2), previously identified as having reduced O-acetylation of both pectins and hemicelluloses, exhibit pleiotrophic phenotype on the leaf surface. The cuticle layer appeared diffused and was significantly thicker and underneath cell wall layer was interspersed with electron-dense deposits. A large number of trichomes were collapsed and surface permeability of the leaves was enhanced in rwa2 as compared to the wild type. A massive reprogramming of the transcriptome was observed in rwa2 as compared to the wild type, including a coordinated up-regulation of genes involved in responses to abiotic stress, particularly detoxification of reactive oxygen species and defense against microbial pathogens (e.g., lipid transfer proteins, peroxidases). In accordance, peroxidase activities were found to be elevated in rwa2 as compared to the wild type. These results indicate that cell wall acetylation is essential for maintaining the structural integrity of leaf epidermis, and that reduction of cell wall acetylation leads to global stress responses in Arabidopsis.
叶片上的表皮保护植物免受病原体入侵,并提供防水屏障。它由一层细胞组成,这些细胞被厚厚的细胞壁包围,细胞壁部分被高度疏水的角质层成分浸渍。我们发现,先前被鉴定为果胶和半纤维素的O-乙酰化减少的拟南芥REDUCED WALL ACETYLATION 2(rwa2)T-DNA插入突变体在叶片表面表现出多效性表型。角质层看起来弥散,明显更厚,并且细胞壁层下方散布着电子致密沉积物。与野生型相比,rwa2中有大量的毛状体塌陷,叶片的表面通透性增强。与野生型相比,在rwa2中观察到转录组的大量重编程,包括参与非生物胁迫响应的基因的协同上调,特别是活性氧的解毒和对微生物病原体的防御(例如,脂质转移蛋白、过氧化物酶)。相应地,与野生型相比,发现rwa2中的过氧化物酶活性升高。这些结果表明,细胞壁乙酰化对于维持叶片表皮的结构完整性至关重要,并且细胞壁乙酰化的减少会导致拟南芥中的全局应激反应。