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Protein Elicitor PemG1 from Magnaporthe grisea Induces Systemic Acquired Resistance (SAR) in Plants

机译:稻瘟病菌的蛋白质诱导物PemG1诱导植物的系统获得性抗性(SAR)

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Elicitors can stimulate defense responses in plants and have become a popular strategy in plant disease control. Previously, we isolated a novel protein elicitor, PemG1, from Magnaporthe grisea. In the present study, PemG1 protein expressed in and purified from Escherichia coli improved resistance of rice and Arabidopsis to bacterial infection, induced transient expression of pathogenesis-related (PR) genes, and increased accumulation of hydrogen peroxide in rice. The effects of PemG1 on disease resistance and PR gene expression were mobilized systemically throughout the rice plant and persisted for more than 28 days. PemG1-induced accumulation of OsPR-1a in rice was prevented by the calcium channel blockers LaCl3, BAPTA, EGTA, W7, and TFP. Arabidopsis mutants that are insensitive to jasmonic acid (JA) and ethylene showed increased resistance to bacterial infection after PemG1 treatment but PemG1 did not affect resistance of mutants with an impaired salicylic acid (SA) transduction pathway. In rice, PemG1 induced overexpressions of the SA signal-related genes (OsEDS1, OsPAL1, and OsNH1) but not the JA pathway-related genes (OsLOX2 and OsAOS2). Our findings reveal that PemG1 protein can function as an activator of plant disease resistance, and the PemG1-mediated systemic acquired resistance is modulated by SA- and Ca2+-related signaling pathways.
机译:引发剂可以刺激植物的防御反应,并已成为控制植物病害的流行策略。以前,我们从稻瘟病菌中分离了一种新型蛋白激发子PemG1。在本研究中,在大肠杆菌中表达和纯化的PemG1蛋白提高了水稻和拟南芥对细菌感染的抵抗力,诱导了病程相关(PR)基因的瞬时表达,并增加了水稻中过氧化氢的积累。在整个水稻植株中,PemG1对抗病性和PR基因表达的影响被系统地动员起来,并持续了超过28天。钙通道阻滞剂LaCl 3 ,BAPTA,EGTA,W7和TFP阻止了PemG1诱导的OsPR-1a在水稻中的积累。对茉莉酸(JA)和乙烯不敏感的拟南芥突变体在PemG1处理后对细菌感染的抵抗力增强,但PemG1不会影响水杨酸(SA)转导途径受损的突变体的抵抗力。在水稻中,PemG1诱导了SA信号相关基因(OsEDS1,OsPAL1和OsNH1)的过表达,而不是JA途径相关基因(OsLOX2和OsAOS2)的过表达。我们的发现表明,PemG1蛋白可以作为植物抗病性的激活剂,而PemG1介导的系统获得性抗性受SA和Ca 2 + 相关信号通路的调节。

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