Bundó Mireia, Coca María
Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Edifici CRAG, Campus de la UAB, 08193 Bellaterra, Barcelona, Spain.
J Exp Bot. 2017 May 17;68(11):2963-2975. doi: 10.1093/jxb/erx145.
Plant growth and productivity is negatively affected by different stresses. Most stresses trigger calcium signals that initiate acclimation responses in plants. The multigene family of plant calcium-dependent protein kinases (CPKs) functions in multiple stress responses by transducing calcium signals into phosphorylation events. This work reports that the OsCPK10 isoform positively mediates tolerance to different stresses in rice plants by enhancing their antioxidant capacity and protecting them from reactive oxygen species (ROS) damage, with the uncontrolled generation of ROS being a common feature of these stresses. Here, we show that the constitutive accumulation of an HA-tagged OsCPK10 full-length protein enhances the hydrogen peroxide detoxifying capacity of rice plants during desiccation. This is achived by modulating the accumulation of catalase proteins, which reduces the extent of lipid peroxidation and protects the integrity of cell membranes, resulting in drought tolerance. OsCPK10HA accumulation also confers blast disease resistance by interfering with fungal necrotrophic growth via a reduction in the accumulation of hydrogen peroxide. Furthermore, we show by bimolecular complementation assays that OsCPK10 is a plasma membrane protein that physically interacts in vivo with catalase A. OsCPK10 therefore appears to be a good molecular target to improve tolerance to abiotic stresses as well as to blast disease, which limit rice crop productivity.
植物生长和生产力受到不同胁迫的负面影响。大多数胁迫会触发钙信号,从而启动植物的适应性反应。植物钙依赖性蛋白激酶(CPK)的多基因家族通过将钙信号转化为磷酸化事件,在多种胁迫反应中发挥作用。这项研究报告称,水稻中的OsCPK10亚型通过增强水稻植株的抗氧化能力并保护其免受活性氧(ROS)损伤,从而正向介导水稻对不同胁迫的耐受性,而ROS的失控产生是这些胁迫的一个共同特征。在此,我们表明,带有HA标签的OsCPK10全长蛋白的组成型积累增强了水稻植株在干燥过程中的过氧化氢解毒能力。这是通过调节过氧化氢酶蛋白的积累来实现的,过氧化氢酶蛋白的积累减少了脂质过氧化的程度并保护了细胞膜的完整性,从而导致耐旱性。OsCPK10HA的积累还通过减少过氧化氢的积累来干扰真菌的坏死营养生长,从而赋予水稻抗稻瘟病能力。此外,我们通过双分子互补试验表明,OsCPK10是一种质膜蛋白,在体内与过氧化氢酶A发生物理相互作用。因此,OsCPK10似乎是提高对非生物胁迫以及稻瘟病耐受性的良好分子靶点,这些胁迫限制了水稻作物的生产力。