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Nitric oxide triggers a transient metabolic reprogramming in Arabidopsis

机译:一氧化氮触发拟南芥的瞬时代谢重编程

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Nitric oxide (NO) regulates plant growth and development as well as responses to stress that enhanced its endogenous production. Arabidopsis plants exposed to a pulse of exogenous NO gas were used for untargeted global metabolomic analyses thus allowing the identification of metabolic processes affected by NO. At early time points after treatment, NO scavenged superoxide anion and induced the nitration and the S-nitrosylation of proteins. These events preceded an extensive though transient metabolic reprogramming at 6?h after NO treatment, which included enhanced levels of polyamines, lipid catabolism and accumulation of phospholipids, chlorophyll breakdown, protein and nucleic acid turnover and increased content of sugars. Accordingly, lipid-related structures such as root cell membranes and leaf cuticle altered their permeability upon NO treatment. Besides, NO-treated plants displayed degradation of starch granules, which is consistent with the increased sugar content observed in the metabolomic survey. The metabolic profile was restored to baseline levels at 24?h post-treatment, thus pointing up the plasticity of plant metabolism in response to nitroxidative stress conditions.
机译:一氧化氮(NO)调节植物生长和发展以及对增强其内源性生产的应力的反应。暴露于外源性脉冲的拟南芥植物没有气体用于未明确的全球性代谢物分析,从而允许鉴定由否的影响影响的代谢过程。在治疗后的早期点,没有清除的超氧化物阴离子并诱导蛋白质的硝化和S-亚硝基化。这些事件在没有治疗的情况下在6μl的瞬时代谢重编程中进行了广泛的,这包括增强的多胺水平,脂质分解代谢和磷脂的积累,叶绿素分解,蛋白质和核酸周转以及糖的含量增加。因此,脂质相关的结构如根细胞膜和叶片角质层在没有处理时改变了它们的渗透性。此外,无处理的植物显示出淀粉颗粒的降解,这与代谢组调查中观察到的糖含量增加一致。在治疗后24μl,代谢型材恢复到基线水平,从而指向植物代谢的可塑性响应于硝基氧化胁迫条件。

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