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Nitric Oxide Triggers Phosphatidic Acid Accumulation via Phospholipase D during Auxin-Induced Adventitious Root Formation in Cucumber1[W][OA]

机译:一氧化氮触发黄瓜中生长素诱导不定根形成过程中通过磷脂酶D积累的磷酸[W] [OA]

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摘要

Auxin and nitric oxide (NO) play fundamental roles throughout plant life. NO is a second messenger in auxin signal transduction leading to root developmental processes. The mechanisms triggered by auxin and NO that direct adventitious root (AR) formation are beginning to be unraveled. The goal of this work was to study phospholipid (PL) signaling during the auxin- and NO-induced AR formation in cucumber (Cucumis sativus) explants. Explants were labeled with 32P-inorganic phosphate and treated with the auxins indole-3-acetic acid or 1-naphthylacetic acid, or the NO donor S-nitroso N-acetyl penicillamine, in the presence or absence of the specific NO scavenger 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide. PLs were separated by thin-layer chromatography and quantified. We report that the signaling PLs phosphatidic acid (PA), phosphatidylinositol phosphate, and phosphatidylinositol bisphosphate accumulated within 1 min after auxin or NO treatment. Both auxin and NO evoked similar and transient time course responses, since signaling PLs returned to control levels after 20 or 30 min of treatment. The results indicate that auxin relies on NO in inducing PA, phosphatidylinositol phosphate, and phosphatidylinositol bisphosphate accumulation. Furthermore, we demonstrate that auxin and NO trigger PA formation via phospholipase D (PLD) activity. Explants treated for 10 min with auxin or NO displayed a 200% increase in AR number compared with control explants. In addition, PLD activity was required for the auxin- and NO-induced AR formation. Finally, exogenously applied PA increased up to 300% the number of ARs. Altogether, our data support the idea that PLD-derived PA is an early signaling event during AR formation induced by auxin and NO in cucumber explants.
机译:生长素和一氧化氮(NO)在整个植物生命中都起着基本作用。 NO是生长素信号传导中导致根发育过程的第二个信使。生长素和NO触发的直接不定根(AR)形成的机理开始被阐明。这项工作的目的是研究黄瓜(Cucumis sativus)外植体在生长素和NO诱导的AR形成过程中的磷脂(PL)信号传导。在存在或不存在特定的NO清除剂2-(-)的情况下,用32P-无机磷酸盐标记外植体,并用生长素吲哚-3-乙酸或1-萘乙酸或NO供体S-亚硝基N-乙酰青霉胺处理。 4-羧苯基)-4,4,5,5-四甲基咪唑啉-1-氧基-3-氧化物。通过薄层色谱分离PL并定量。我们报告信号素PLs磷脂酸(PA),磷脂酰肌醇磷酸酯和磷脂酰肌醇双磷酸酯在生长素或NO处理后1分钟内积累。生长素和NO均引起相似且短暂的时程响应,因为信号PL在治疗20或30分钟后恢复到对照水平。结果表明,生长素依赖于NO来诱导PA,磷脂酰肌醇磷酸酯和磷脂酰肌醇双磷酸酯的积累。此外,我们证明生长素和NO通过磷脂酶D(PLD)活性触发PA的形成。与对照外植体相比,用生长素或NO处理10分钟的外植体的AR值增加了200%。此外,生长素和NO诱导的AR形成需要PLD活性。最后,外源施用的PA最多可增加AR数量的300%。总而言之,我们的数据支持以下观点:PLD衍生的PA是黄瓜外植体中生长素和NO诱导的AR形成过程中的早期信号事件。

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