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Sulfur Deprivation Modulates Salicylic Acid Responses via Nonexpressor of Pathogenesis-Related Gene 1 in Arabidopsis thaliana

机译:硫磺剥夺通过拟南芥的病因相关基因1的非转化体调节水杨酸响应

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摘要

Mineral nutrients are essential for plant growth and reproduction, yet only a few studies connect the nutritional status to plant innate immunity. The backbone of plant defense response is mainly controlled by two major hormones: salicylic acid (SA) and jasmonic acid (JA). This study investigated changes in the macronutrient concentration (deficiency/excess of nitrogen, phosphorus, potassium, magnesium, and sulfur) on the expression of PR1, a well-characterized marker in the SA-pathway, and PDF1.2 and LOX2 for the JA-pathway, analyzing plants carrying the promoter of each gene fused to GUS as a reporter. After histochemical GUS assays, we determined that PR1 gene was strongly activated in response to sulfur (S) deficiency. Using RT-PCR, we observed that the induction of PR1 depended on the function of Non-expressor of Pathogenesis-Related gene 1 (NPR1) and SA accumulation, as PR1 was not expressed in npr1-1 mutant and NahG plants under S-deprived conditions. Plants treated with different S-concentrations showed that total S-deprivation was required to induce SA-mediated defense responses. Additionally, bioassays revealed that S-deprived plants, induced resistance to the hemibiotrophic pathogen Pseudomonas syringae pv. DC3000 and increase susceptibility to the necrotrophic Botrytis cinerea. In conclusion, we observed a relationship between S and SA/JA-dependent defense mechanisms in Arabidopsis.
机译:矿物质营养素对于植物生长和繁殖至关重要,但只有几项研究将营养状况与植物先天免疫力联系起来。植物防御反应的骨干主要由两种主要激素控制:水杨酸(SA)和茉莉酸(JA)。本研究研究了Pr1,Sa-patway中的良好表征标记物的Macronurient浓度(缺乏/过量/过量的氮,磷,钾,镁和硫)的变化,以及JA的PDF1.2和LOX2 - 瓣膜,分析携带每个基因启动子的植物融合给GUS作为记者。在组织化学的GUS测定后,我们确定响应于硫的缺乏而强烈激活PR1基因。使用RT-PCR,我们观察到PR1的诱导依赖于病因相关基因1(NPR1)和SA积累的非抗腹菌和SA积累的功能,因为在缺乏的NPR1-1突变体和NAHG植物中未表达PR1状况。用不同S浓度处理的植物表明,需要总剥夺的S-剥夺诱导SA介导的防御反应。另外,生物测定揭示了S剥夺的植物,诱导血液营养病原体假单胞菌的抗性。 DC3000增加了对坏养殖Botrytis Cinerea的敏感性。总之,我们观察到拟南芥S和SA / JA依赖性防御机制之间的关系。

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