Yuan Wen, Jiang Tong, Du Kaitong, Chen Hui, Cao Yanyong, Xie Jipeng, Li Mengfei, Carr John P, Wu Boming, Fan Zaifeng, Zhou Tao
State Key Laboratory for Agro-Biotechnology, China Agricultural University, Beijing, 100193, China.
Ministry of Agriculture and Rural Affairs, Key Laboratory for Pest Monitoring and Green Management, Department of Plant Pathology, China Agricultural University, Beijing, 100193, China.
Mol Plant Pathol. 2019 Oct;20(10):1365-1378. doi: 10.1111/mpp.12817. Epub 2019 Sep 5.
Sugarcane mosaic virus (SCMV) is a pathogen of worldwide importance that causes dwarf mosaic disease on maize (Zea mays). Until now, few maize genes/proteins have been shown to be involved in resistance to SCMV. In this study, we characterized the role of maize phenylalanine ammonia-lyases (ZmPALs) in accumulation of the defence signal salicylic acid (SA) and in resistance to virus infection. SCMV infection significantly increased SA accumulation and expression of SA-responsive pathogenesis-related protein genes (PRs). Interestingly, exogenous SA treatment decreased SCMV accumulation and enhanced resistance. Both reverse transcription-coupled quantitative PCR and RNA-Seq data confirmed that expression levels of at least four ZmPAL genes were significantly up-regulated upon SCMV infection. Knockdown of ZmPAL expression led to enhanced SCMV infection symptom severity and virus multiplication, and simultaneously resulted in decreased SA accumulation and PR gene expression. Intriguingly, application of exogenous SA to SCMV-infected ZmPAL-silenced maize plants decreased SCMV accumulation, showing that ZmPALs are required for SA-mediated resistance to SCMV infection. In addition, lignin measurements and metabolomic analysis showed that ZmPALs are also involved in SCMV-induced lignin accumulation and synthesis of other secondary metabolites via the phenylpropanoid pathway. In summary, our results indicate that ZmPALs are required for SA accumulation in maize and are involved in resistance to virus infection by limiting virus accumulation and moderating symptom severity.
甘蔗花叶病毒(SCMV)是一种具有全球重要性的病原体,可导致玉米(Zea mays)发生矮花叶病。到目前为止,很少有玉米基因/蛋白质被证明参与对SCMV的抗性。在本研究中,我们表征了玉米苯丙氨酸解氨酶(ZmPALs)在防御信号水杨酸(SA)积累以及对病毒感染的抗性中的作用。SCMV感染显著增加了SA的积累以及SA应答病程相关蛋白基因(PRs)的表达。有趣的是,外源SA处理降低了SCMV的积累并增强了抗性。逆转录耦联定量PCR和RNA测序数据均证实,至少四个ZmPAL基因的表达水平在SCMV感染后显著上调。敲低ZmPAL的表达导致SCMV感染症状严重程度增加和病毒增殖,同时导致SA积累和PR基因表达降低。有趣的是,将外源SA应用于被SCMV感染的ZmPAL沉默玉米植株可降低SCMV的积累,表明ZmPALs是SA介导的对SCMV感染抗性所必需的。此外,木质素测定和代谢组学分析表明,ZmPALs还通过苯丙烷途径参与SCMV诱导的木质素积累和其他次生代谢产物的合成。总之,我们的结果表明,ZmPALs是玉米中SA积累所必需的,并且通过限制病毒积累和减轻症状严重程度参与对病毒感染的抗性。