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Crosstalk between nitric oxide (NO) and abscisic acid (ABA) signalling molecules in higher plants

机译:在高等植物中的一氧化氮(NO)和脱落酸(ABA)信号传导分子之间的串扰

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摘要

The key signalling molecules nitric oxide (NO) and abscisic acid (ABA) regulate plant growth and developmental processes as well as the mechanisms of response to environmental stresses. NO metabolism contains different biochemical mechanisms to regulate ABA homeostasis which is involved in important plant functions including seed dormancy, germination, stomatal movement, leaf senescence, fruit ripening and stress responses. Accordingly, NO induces post-translational modifications (PTMs) such as S-nitrosation (also called S-nitrosylation) and tyrosine nitration of proteins involved in the finely tuned regulatory mechanisms of the ABA signalling pathway. Furthermore, ABA-induced reactive oxygen species (ROS) generation is regulated by antioxidant systems such as catalase, superoxide dismutases (SODs) and the ascorbate-glutathione cycle which are also modulated by NO-induced PTMs. This review provides a comprehensive summary of current knowledge on the interaction between NO and ABA, especially for researchers who are unfamiliar with these molecules. NO and ABA are two of the most important plant cell regulators affecting almost all stages of plant development and responses to many environmental stresses. However, it is also important to consider the involvement of other compounds, such as hydrogen sulfide (H2S) and melatonin, whose synergetic and antagonistic interactions increase the complexity of regulatory mechanisms.
机译:关键信号分子一氧化氮(NO)和脱落酸(ABA)调节植物生长和发育过程以及对环境应激的反应机制。没有新陈代谢含有不同的生化机制,以调节阿布稳态,这些机制涉及重要的植物功能,包括种子休眠,萌发,气孔运动,叶片衰老,果实成熟和应力反应。因此,不诱导翻译后修饰(PTMS),例如S-亚硝化(也称为S-亚硝基化)和酪氨酸硝化蛋白质的酪氨酸硝化,涉及ABA信号通路的细微调节调节机制。此外,ABA诱导的活性氧(ROS)产生由抗氧化体系(如过氧化氢酶,超氧化物歧化酶(SOD)和抗坏血酸谷胱甘肽循环调节,所述抗坏血酸谷胱甘肽循环也由无诱导的PTMS调节。本综述提供了关于NO和ABA之间的互动的当前知识的全面摘要,特别是对于不熟悉这些分子的研究人员。不,ABA是最重要的植物细胞调节因素,影响植物开发的几乎所有阶段和对许多环境压力的反应。然而,考虑其他化合物的参与也很重要,例如硫化氢(H2S)和褪黑激素,其协同和拮抗相互作用增加了调节机制的复杂性。

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