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Nitric Oxide Mediates the Indole Acetic Acid Induction Activation of a Mitogen-Activated Protein Kinase Cascade Involved in Adventitious Root Development1

机译:一氧化氮介导参与不定根发育的丝裂素活化蛋白激酶级联的吲哚乙酸诱导活化

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摘要

Recently, it was demonstrated that nitric oxide (NO) and cGMP are involved in the auxin response during the adventitious rooting process in cucumber (Cucumis sativus; Pagnussat et al., 2002, 2003). However, not much is known about the complex molecular network operating during the cell proliferation and morphogenesis triggered by auxins and NO in that process. Anatomical studies showed that formation of adventitious root primordia was clearly detected in indole acetic acid (IAA)- and NO-treated cucumber explants, while neither cell proliferation nor differentiation into root primordia could be observed in control explants 3 d after primary root was removed. In order to go further with signal transduction mechanisms that operate during IAA- and NO-induced adventitious root formation, experiments were designed to test the involvement of a mitogen-activated protein kinase (MAPK) cascade in that process. Cucumber explants were treated with the NO-donor sodium nitroprusside (SNP) or with SNP plus the specific NO-scavenger cPTIO. Protein extracts from those explants were assayed for protein kinase (PK) activity by using myelin basic protein (MBP) as substrate in both in vitro and in-gel assays. The activation of a PK of approximately 48 kD could be detected 1 d after NO treatment with a maximal activation after 3 d of treatment. In control explants, a PK activity was detected only after 4 d of treatment. The MBP-kinase activity was also detected in extracts from IAA-treated explants, while no signal was observed in IAA + cPTIO treatments. The PK activity could be inhibited by the cell-permeable MAPK kinase inhibitor PD098059, suggesting that the NO-dependent MBP-kinase activity is a MAPK. Furthermore, when PD098059 was administered to explants treated with SNP or IAA, it produced a delay in root emergence and a dose-dependent reduction in root number. Altogether, our results suggest that a MAPK signaling cascade is activated during the adventitious rooting process induced by IAA in a NO-mediated but cGMP-independent pathway. The activation of MAPKs is discussed in relation to the cell responses modulating mitotic process.
机译:最近,已证明一氧化氮(NO)和cGMP参与黄瓜不定根生根过程中的生长素反应(Cucumis sativus; Pagnussat等,2002,2003)。但是,关于在该过程中由生长素和NO触发的细胞增殖和形态发生过程中运作的复杂分子网络知之甚少。解剖学研究表明,在吲哚乙酸(IAA)和NO处理的黄瓜外植体中,可以清楚地检测到不定根原基的形成,而在去除原始根3 d的对照外植体中,既没有观察到细胞增殖也没有分化成根原基。为了进一步研究在IAA和NO诱导的不定根形成过程中发挥作用的信号转导机制,设计了实验来测试促分裂原活化蛋白激酶(MAPK)级联在此过程中的参与。用NO供体硝普钠(SNP)或SNP加特定的NO清除剂cPTIO处理黄瓜外植体。通过使用髓鞘碱性蛋白(MBP)作为底物,在体外和凝胶试验中,分析了这些外植体的蛋白提取物的蛋白激酶(PK)活性。 NO处理后1 d可以检测到约48 kD的PK激活,处理3 d后可以最大激活。在对照外植体中,仅在处理4天后才检测到PK活性。在IAA处理的外植体提取物中也检测到MBP激酶活性,而在IAA + cPTIO处理中未观察到信号。 PK活性可被细胞渗透性MAPK激酶抑制剂PD098059抑制,提示NO依赖性MBP激酶活性是MAPK。此外,将PD098059施用至经过SNP或IAA处理的外植体时,会导致根部出现延迟和根部数量呈剂量依赖性降低。总之,我们的结果表明,在IAA诱导的不定根生根过程中,MAPK信号级联以NO介导但与cGMP无关的途径被激活。 MAPKs的激活与调节有丝分裂过程的细胞反应有关。

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