Chen Xianyang, Bao Hexigeduleng, Guo Jie, Jia Weitao, Tai Fang, Nie Lingling, Jiang Ping, Feng Juanjuan, Lv Sulian, Li Yinxin
Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, PR China.
Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, PR China
J Exp Bot. 2014 Nov;65(20):6107-22. doi: 10.1093/jxb/eru351. Epub 2014 Aug 28.
Despite the importance of NHX1 (Na(+)/H(+) exchanger 1) in plant salt tolerance, little is known about its other functions. In this study, intriguingly, it was found that NHX1 participated in plant disease defence against Phytophthora parasitica var. nicotianae (Ppn) in Nicotiana benthamiana. NbNHX1 was originally isolated from N. benthamiana, and characterized. The subcellular localization of NbNHX1 with its C-terminus fused with green fluorescent protein indicated that NbNHX1 localized primarily to the tonoplast. Tobacco rattle virus-induced NbNHX1 silencing led to reduced H(+) efflux from the vacuole to cytoplasts, and decreased Ppn resistance in N. benthamiana. After attack by Ppn, NbNHX1-silenced plants exhibited impaired ability to scavenge reactive oxidative species (ROS) induced by the pathogen. Pea early browning virus-mediated ectopic expression of SeNHX1 (from Salicornia europaea) or AtNHX1 (from Arabidopsis thaliana) both conferred enhanced Ppn resistance to N. benthamiana, with a lower H2O2 concentration after Ppn inoculation. Further investigation of the role of NHX1 demonstrated that transient overexpression of NbNHX1 improved the vacuolar pH and cellular ROS level in N. benthamiana, which was coupled with an enlarged NAD(P) (H) pool and higher expression of ROS-responsive genes. In contrast, NbNHX1 silencing led to a lower pH in the vacuole and a lower cellular ROS level in N. benthamiana, which was coupled with a decreased NAD(P) (H) pool and decreased expression of ROS-responsive genes. These results suggest that NHX1 is involved in plant disease defence; and regulation of vacuolar pH by NHX1, affecting the cellular oxidation state, primes the antioxidative system which is associated with Ppn resistance in tobacco.
尽管NHX1(钠/氢交换体1)在植物耐盐性中具有重要作用,但其其他功能却鲜为人知。在本研究中,有趣的是,发现NHX1参与了本氏烟草对寄生疫霉变种烟草疫霉(Ppn)的植物病害防御。NbNHX1最初从本氏烟草中分离并进行了表征。将NbNHX1的C末端与绿色荧光蛋白融合后的亚细胞定位表明,NbNHX1主要定位于液泡膜。烟草脆裂病毒诱导的NbNHX1沉默导致液泡向细胞质的氢离子外流减少,本氏烟草对Ppn的抗性降低。受到Ppn攻击后,NbNHX1沉默的植株清除病原体诱导的活性氧(ROS)的能力受损。豌豆早褐病毒介导的欧洲海蓬子的SeNHX1或拟南芥的AtNHX1异位表达均赋予本氏烟草增强的Ppn抗性,接种Ppn后过氧化氢浓度较低。对NHX1作用的进一步研究表明,NbNHX1的瞬时过表达改善了本氏烟草的液泡pH值和细胞ROS水平,这与扩大的NAD(P)(H)库和ROS响应基因的高表达相关。相反,NbNHX1沉默导致本氏烟草液泡pH值降低和细胞ROS水平降低,这与NAD(P)(H)库减少和ROS响应基因表达降低相关。这些结果表明,NHX1参与植物病害防御;NHX1对液泡pH值的调节影响细胞氧化状态,启动了与烟草对Ppn抗性相关的抗氧化系统。