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首页> 外文期刊>Plant physiology >Pseudomonas fluorescens WCS374r-Induced Systemic Resistance in Rice against Magnaporthe oryzae Is Based on Pseudobactin-Mediated Priming for a Salicylic Acid-Repressible Multifaceted Defense Response
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Pseudomonas fluorescens WCS374r-Induced Systemic Resistance in Rice against Magnaporthe oryzae Is Based on Pseudobactin-Mediated Priming for a Salicylic Acid-Repressible Multifaceted Defense Response

机译:荧光假单胞菌WCS374r诱导的水稻对稻瘟病菌的系统抗性是基于假杆菌素介导的水杨酸可抑制的多方面防御反应

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摘要

Selected strains of nonpathogenic rhizobacteria can reduce disease in foliar tissues through the induction of a defense state known as induced systemic resistance (ISR). Compared with the large body of information on ISR in dicotyledonous plants, little is known about the mechanisms underlying rhizobacteria-induced resistance in cereal crops. Here, we demonstrate the ability of Pseudomonas fluorescens WCS374r to trigger ISR in rice (Oryza sativa) against the leaf blast pathogen Magnaporthe oryzae. Using salicylic acid (SA)-nonaccumulating NahG rice, an ethylene-insensitive OsEIN2 antisense line, and the jasmonate-deficient mutant hebiba, we show that this WCS374r-induced resistance is regulated by an SA-independent but jasmonic acid/ ethylene-modulated signal transduction pathway. Bacterial mutant analysis uncovered a pseudobactin-type siderophore as the crucial determinant responsible for ISR elicitation. Root application of WCS374r-derived pseudobactin (Psb374) primed naive leaves for accelerated expression of a pronounced multifaceted defense response, consisting of rapid recruitment of phenolic compounds at sites of pathogen entry, concerted expression of a diverse set of structural defenses, and a timely hyperinduction of hydrogen peroxide formation putatively driving cell wall fortification. Exogenous SA application alleviated this Psb374-modulated defense priming, while Psb374 pretreatment antagonized infection-induced transcription of SA-responsive PR genes, suggesting that the Psb374-and SA-modulated signaling pathways are mutually antagonistic. Interestingly, in sharp contrast to WCS374r-mediated ISR, chemical induction of blast resistance by the SA analog benzothiadiazole was independent of jasmonic acid/ethylene signaling and involved the potentiation of SA-responsive gene expression. Together, these results offer novel insights into the signaling circuitry governing induced resistance against M. oryzae and suggest that rice is endowed with multiple blast-effective resistance pathways.
机译:选定的非致病性根瘤菌菌株可以通过诱导被称为全身性抗性(ISR)的防御状态来减少叶片组织中的疾病。与双子叶植物中有关ISR的大量信息相比,对于根瘤菌诱导的谷物作物抗性的机理了解甚少。在这里,我们展示了荧光假单胞菌WCS374r引发水稻(稻米)中针对叶瘟病原体稻瘟病菌的ISR的能力。使用不积累水杨酸(SA)的NahG水稻,对乙烯不敏感的OsEIN2反义品系和茉莉酸缺陷型突变体hebiba,我们显示了WCS374r诱导的抗性受SA独立但茉莉酸/乙烯调节信号调节转导途径。细菌突变分析发现伪细菌型铁载体是引起ISR激发的关键决定因素。 WCS374r衍生的假芽胞杆菌素(Psb374)引发的幼稚叶的根部施用可加速表达明显的多方面防御反应,包括在病原体进入部位快速募集酚类化合物,多种结构防御的协调表达以及及时的超诱导过氧化氢的形成可能推动细胞壁的强化。外源SA的应用减轻了这种Psb374调节的防御启动,而Psb374预处理拮抗了感染诱导的SA反应性PR基因的转录,表明Psb374和SA调节的信号通路是相互拮抗的。有趣的是,与WCS374r介导的ISR形成鲜明对比的是,SA类似物苯并噻二唑对稻瘟病抗性的化学诱导与茉莉酸/乙烯信号无关,并且涉及SA响应基因表达的增强。总之,这些结果为控制对米曲霉的诱导抗性的信号传导电路提供了新颖的见解,并表明水稻具有多种对稻瘟病有效的抗性途径。

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