Laboratory for Molecular Photobioenergetics, Institute of Plant Biology, Biological Research Centre, Temesvári krt 62, H-6726 Szeged, Hungary.
Int J Mol Sci. 2023 Jan 28;24(3):2537. doi: 10.3390/ijms24032537.
Ascorbate (Asc) is a multifunctional metabolite essential for various cellular processes in plants and animals. The best-known property of Asc is to scavenge reactive oxygen species (ROS), in a highly regulated manner. Besides being an effective antioxidant, Asc also acts as a chaperone for 2-oxoglutarate-dependent dioxygenases that are involved in the hormone metabolism of plants and the synthesis of various secondary metabolites. Asc also essential for the epigenetic regulation of gene expression, signaling and iron transport. Thus, Asc affects plant growth, development, and stress resistance via various mechanisms. In this review, the intricate relationship between Asc and photosynthesis in plants and algae is summarized in the following major points: (i) regulation of Asc biosynthesis by light, (ii) interaction between photosynthetic and mitochondrial electron transport in relation to Asc biosynthesis, (iii) Asc acting as an alternative electron donor of photosystem II, (iv) Asc inactivating the oxygen-evolving complex, (v) the role of Asc in non-photochemical quenching, and (vi) the role of Asc in ROS management in the chloroplast. The review also discusses differences in the regulation of Asc biosynthesis and the effects of Asc on photosynthesis in algae and vascular plants.
抗坏血酸(Asc)是一种多功能代谢物,对动植物的各种细胞过程至关重要。Asc 最著名的性质是通过高度调节来清除活性氧(ROS)。除了作为一种有效的抗氧化剂外,Asc 还作为 2-氧代戊二酸依赖性双加氧酶的伴侣,这些酶参与植物的激素代谢和各种次生代谢物的合成。Asc 还对基因表达、信号转导和铁运输的表观遗传调控至关重要。因此,Asc 通过多种机制影响植物的生长、发育和抗逆性。在这篇综述中,总结了植物和藻类中 Asc 与光合作用之间的复杂关系,主要包括以下几个方面:(i)光对 Asc 生物合成的调节,(ii)光合作用和线粒体电子传递之间的相互作用与 Asc 生物合成有关,(iii)Asc 作为光系统 II 的替代电子供体,(iv)Asc 使放氧复合物失活,(v)Asc 在非光化学猝灭中的作用,以及(vi)Asc 在叶绿体中 ROS 管理中的作用。该综述还讨论了藻类和维管植物中 Asc 生物合成的调节差异以及 Asc 对光合作用的影响。