Light Intensity- and Spectrum-Dependent Redox Regulation of Plant Metabolism

氧化还原 新陈代谢 植物代谢 强度(物理) 化学 光强度 生物物理学 生物化学 生物 物理 光学 无机化学 核糖核酸 基因
作者
Péter Borbély,Anna Gasperl,Tamás Pálmai,Mohamed Ahres,Muhammad Ahsan Asghar,Gábor Galiba,Maria Müller,Gábor Kocsy
出处
期刊:Antioxidants [MDPI AG]
卷期号:11 (7): 1311-1311 被引量:30
标识
DOI:10.3390/antiox11071311
摘要

Both light intensity and spectrum (280-800 nm) affect photosynthesis and, consequently, the formation of reactive oxygen species (ROS) during photosynthetic electron transport. ROS, together with antioxidants, determine the redox environment in tissues and cells, which in turn has a major role in the adjustment of metabolism to changes in environmental conditions. This process is very important since there are great spatial (latitude, altitude) and temporal (daily, seasonal) changes in light conditions which are accompanied by fluctuations in temperature, water supply, and biotic stresses. The blue and red spectral regimens are decisive in the regulation of metabolism because of the absorption maximums of chlorophylls and the sensitivity of photoreceptors. Based on recent publications, photoreceptor-controlled transcription factors such as ELONGATED HYPOCOTYL5 (HY5) and changes in the cellular redox environment may have a major role in the coordinated fine-tuning of metabolic processes during changes in light conditions. This review gives an overview of the current knowledge of the light-associated redox control of basic metabolic pathways (carbon, nitrogen, amino acid, sulphur, lipid, and nucleic acid metabolism), secondary metabolism (terpenoids, flavonoids, and alkaloids), and related molecular mechanisms. Light condition-related reprogramming of metabolism is the basis for proper growth and development of plants; therefore, its better understanding can contribute to more efficient crop production in the future.

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