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Nitric Oxide Mediates Brassinosteroid-Induced ABA Biosynthesis Involved in Oxidative Stress Tolerance in Maize Leaves

机译:一氧化氮介导油菜素类固醇诱导的玉米叶片抗氧化胁迫的ABA生物合成

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摘要

The role of ABA in brassinosteroid (BR)-induced stress tolerance and the relationship between BR, nitric oxide (NO) and ABA under water stress induced by polyethylene glycol (PEG) were investigated in leaves of maize (Zea mays) plants. Water stress led to oxidative damage. Pre-treatment with the BR biosynthetic inhibitor brassinazole (Brz) aggravated the oxidative damage induced by PEG treatment, which was alleviated by the application of BR or ABA. Pre-treatment with the ABA biosynthetic inhibitor fluridone also aggravated the oxidative damage induced by PEG treatment; however, this was barely alleviated by the application of BR. BR treatment increased the content of ABA and up-regulated the expression of the ABA biosynthetic gene vp14 in maize leaves, which was blocked by pre-treatments with the NO scavenger cPTIO (2,4-carboxyphenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide) and the nitric oxide synthase inhibitor l-NAME (NG-nitro-l-arginine methyl ester. Moreover, BR treatment induced increases in the generation of NO in mesophyll cells of maize leaves, and treatment with the NO donor sodium nitroprusside (SNP) up-regulated the content of ABA and the expression of vp14 in maize leaves. Our results suggest that BR-induced NO production and NO-activated ABA biosynthesis are important mechanisms for BR-enhanced water stress tolerance in leaves of maize plants.
机译:在玉米(Zea mays)植物叶片中,研究了ABA在油菜素甾体(BR)诱导的胁迫耐受性中的作用以及在聚乙二醇(PEG)诱导的水分胁迫下BR,一氧化氮(NO)和ABA之间的关系。水分胁迫导致氧化损伤。用BR生物合成抑制剂Brasinazole(Brz)进行的预处理加剧了PEG处理引起的氧化损伤,而使用BR或ABA可以减轻这种损伤。 ABA生物合成抑制剂氟啶酮的预处理也加重了PEG处理引起的氧化损伤。但是,BR的应用几乎无法缓解这一点。 BR处理增加了玉米叶片中ABA的含量并上调了ABA生物合成基因vp14的表达,这被NO清除剂cPTIO(2,4-羧苯基-4,4,5,5-四甲基咪唑啉-1-氧基-3-氧化物)和一氧化氮合酶抑制剂l-NAME(N G -硝基-1-精氨酸甲酯)。此外,BR处理诱导的NO生成增加。玉米叶片的叶肉细胞以及NO供体硝普钠(SNP)的处理上调了玉米叶片ABA的含量和vp14的表达,我们的结果表明BR诱导的NO产生和NO活化的ABA的生物合成很重要。增强BR对玉米叶片耐水胁迫的机理

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