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证明一氧化氮在植物铁稳态中的作用。

Evidence for a role of nitric oxide in iron homeostasis in plants.

机构信息

Department of Botany, University of Lucknow, Lucknow, Uttar Pradesh, India.

Biosphere Impact Studies, Belgian Nuclear Research Center (SCK•CEN), Boeretang, Mol, Belgium.

出版信息

J Exp Bot. 2021 Feb 24;72(4):990-1006. doi: 10.1093/jxb/eraa484.

Abstract

Nitric oxide (NO), once regarded as a poisonous air pollutant, is now understood as a regulatory molecule essential for several biological functions in plants. In this review, we summarize NO generation in different plant organs and cellular compartments, and also discuss the role of NO in iron (Fe) homeostasis, particularly in Fe-deficient plants. Fe is one of the most limiting essential nutrient elements for plants. Plants often exhibit Fe deficiency symptoms despite sufficient tissue Fe concentrations. NO appears to not only up-regulate Fe uptake mechanisms but also makes Fe more bioavailable for metabolic functions. NO forms complexes with Fe, which can then be delivered into target cells/tissues. NO generated in plants can alleviate oxidative stress by regulating antioxidant defense processes, probably by improving functional Fe status and by inducing post-translational modifications in the enzymes/proteins involved in antioxidant defense responses. It is hypothesized that NO acts in cooperation with transcription factors such as bHLHs, FIT, and IRO to regulate the expression of enzymes and proteins essential for Fe homeostasis. However, further investigations are needed to disentangle the interaction of NO with intracellular target molecules that leads to enhanced internal Fe availability in plants.

摘要

一氧化氮(NO)曾被认为是一种有毒的空气污染物,现在被认为是植物中几种生物功能所必需的调节分子。在这篇综述中,我们总结了 NO 在不同植物器官和细胞区室中的产生,并讨论了 NO 在铁(Fe)稳态中的作用,特别是在缺铁植物中。Fe 是植物最受限制的必需营养元素之一。尽管组织中的 Fe 浓度充足,但植物经常表现出 Fe 缺乏症状。NO 似乎不仅上调了 Fe 摄取机制,而且使 Fe 更能用于代谢功能。NO 与 Fe 形成配合物,然后可以将其递送到靶细胞/组织中。在植物中产生的 NO 可以通过调节抗氧化防御过程来减轻氧化应激,可能是通过改善功能性 Fe 状态和诱导抗氧化防御反应中涉及的酶/蛋白质的翻译后修饰。据推测,NO 与 bHLHs、FIT 和 IRO 等转录因子合作,调节 Fe 稳态所必需的酶和蛋白质的表达。然而,需要进一步的研究来阐明 NO 与导致植物中内部 Fe 可用性增强的细胞内靶分子的相互作用。

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