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Nitric Oxide as a Downstream Signaling Molecule in Brassinosteroid-Mediated Virus Susceptibility to Maize Chlorotic Mottle Virus in Maize

机译:一氧化氮作为油菜素类固醇介导的玉米易感斑驳斑驳病毒的下游信号分子

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摘要

Maize chlorotic mottle virus (MCMV) infection causes growth abnormalities in maize. Transcriptome sequencing was conducted to compare the global gene expression of MCMV-inoculated plants with that of mock-inoculated plants. Data analyses showed that brassinosteroid (BR)-associated genes were upregulated after MCMV infection. Exogenous 2,4-epibrassinolide (BL) or brassinazole (BRZ) applications indicated that BR pathway was involved in the susceptibility to MCMV infection. In addition, treatment of BL on maize induced the accumulation of nitric oxide (NO), and the changes of NO content played positive roles in the disease incidence of MCMV. Moreover, MCMV infection was delayed when the BL-treated plants were applied with NO scavenger, which suggested that BR induced the susceptibility of maize to MCMV infection in a NO-dependent manner. Further investigation showed the maize plants with knock-down of DWARF4 (ZmDWF4, a key gene of BR synthesis) and nitrate reductase (ZmNR, a key gene of NO synthesis) by virus-induced gene silencing displayed higher resistance to MCMV than control plants. Taken together, our results suggest that BR pathway promotes the susceptibility of maize to MCMV in a NO-dependent manner.
机译:玉米褪绿斑驳病毒(MCMV)感染会导致玉米生长异常。进行转录组测序以比较接种MCMV的植物和模拟接种的植物的整体基因表达。数据分析表明,MCMV感染后与油菜素类固醇(BR)相关的基因被上调。外源的2,4-表油菜素内酯(BL)或油菜素唑(BRZ)的应用表明BR途径与MCMV感染的易感性有关。此外,BL处理对玉米引起的一氧化氮(NO)积累,NO含量的变化在MCMV的发病中起积极作用。此外,当BL处理过的植物与NO清除剂一起施用时,MCMV感染被延迟,这表明BR以NO依赖性方式诱导了玉米对MCMV感染的敏感性。进一步的研究表明,通过病毒诱导的基因沉默,具有DWARF4(BR合成的关键基因ZmDWF4)和硝酸还原酶(NO合成的关键基因ZmNR)的基因敲除的玉米植株对MCMV的抗性高于对照植株。两者合计,我们的结果表明BR途径以NO依赖性方式促进玉米对MCMV的敏感性。

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