Plant Biology Division, The Samuel Roberts Noble Foundation, 2510 Sam Noble Pkwy., Ardmore, Oklahoma 73402, USA.
Plant Cell Environ. 2012 Jul;35(7):1329-43. doi: 10.1111/j.1365-3040.2012.02492.x. Epub 2012 Mar 8.
Non-host disease resistance involves the production of hypersensitive response (HR), a programmed cell death (PCD) that occurs at the site of pathogen infection. Plant mitochondrial reactive oxygen species (ROS) production and red-ox changes play a major role in regulating such cell death. Proline catabolism reactions, especially pyrroline-5-carboxylate (P5C) accumulation, are known to produce ROS and contribute to cell death. Here we studied important genes related to proline synthesis and catabolism in the defence against host and non-host strains of Pseudomonas syringae in Nicotiana benthamiana and Arabidopsis. Our results show that ornithine delta-aminotransferase (δOAT) and proline dehydrogenases (ProDH1 and ProDH2) are involved in the defence against non-host pathogens. Silencing of these genes in N. benthamiana delayed occurrence of HR and favoured non-host pathogen growth. Arabidopsis mutants for these genes compromised non-host resistance and showed a decrease in non-host pathogen-induced ROS. Some of the genes involved in proline metabolism were also induced by a pathogen-carrying avirulence gene, indicating that proline metabolism is influenced during effector-triggered immunity (ETI). Our results demonstrate that δOAT and ProDH enzyme-mediated steps produce ROS in mitochondria and regulate non-host HR, thus contributing to non-host resistance in plants.
非寄主疾病抗性涉及过敏反应(HR)的产生,这是一种在病原体感染部位发生的程序性细胞死亡(PCD)。植物线粒体活性氧(ROS)的产生和氧化还原变化在调节这种细胞死亡中起着重要作用。脯氨酸分解反应,特别是吡咯啉-5-羧酸(P5C)的积累,已知会产生 ROS 并导致细胞死亡。在这里,我们研究了与拟南芥和烟草原生质体中防御假单胞菌宿主和非宿主菌株相关的脯氨酸合成和分解代谢的重要基因。我们的结果表明,鸟氨酸δ-氨基转移酶(δOAT)和脯氨酸脱氢酶(ProDH1 和 ProDH2)参与了非宿主病原体的防御。在烟草原生质体中沉默这些基因会延迟 HR 的发生,并有利于非宿主病原体的生长。这些基因的拟南芥突变体削弱了非宿主抗性,并显示出非宿主病原体诱导的 ROS 减少。一些参与脯氨酸代谢的基因也被携带无毒基因的病原体诱导,这表明在效应物触发的免疫(ETI)过程中脯氨酸代谢受到影响。我们的研究结果表明,δOAT 和 ProDH 酶介导的步骤在线粒体中产生 ROS,并调节非宿主 HR,从而为植物的非宿主抗性做出贡献。