Wolucka Beata A, Goossens Alain, Inzé Dirk
Pasteur Institute of Brussels, Engeland Street 642, B-1180 Brussels, Belgium.
J Exp Bot. 2005 Sep;56(419):2527-38. doi: 10.1093/jxb/eri246. Epub 2005 Aug 1.
Vitamin C (L-ascorbic acid) is an important primary metabolite of plants that functions as an antioxidant, an enzyme cofactor, and a cell-signalling modulator in a wide array of crucial physiological processes, including biosynthesis of the cell wall, secondary metabolites and phytohormones, stress resistance, photoprotection, cell division, and growth. Plants synthesize ascorbic acid via de novo and salvage pathways, but the regulation of its biosynthesis and the mechanisms behind ascorbate homeostasis are largely unknown. Jasmonic acid and its methyl ester (jasmonates) mediate plant responses to many biotic and abiotic stresses by triggering a transcriptional reprogramming that allows cells to cope with pathogens and stress. By using 14C-mannose radiolabelling combined with HPLC and transcript profiling analysis, it is shown that methyl jasmonate treatment increases the de novo synthesis of ascorbic acid in Arabidopsis and tobacco Bright Yellow-2 (BY-2) suspension cells. In BY-2 cells, this stimulation coincides with enhanced transcription of at least two late methyl jasmonate-responsive genes encoding enzymes for vitamin C biosynthesis: the GDP-mannose 3'',5''-epimerase and a putative L-gulono-1,4-lactone dehydrogenase/oxidase. As far as is known, this is the first report of a hormonal regulation of vitamin C biosynthesis in plants. Finally, the role of ascorbic acid in jasmonate-regulated stress responses is reviewed.
维生素C(L-抗坏血酸)是植物重要的初级代谢产物,在众多关键生理过程中发挥抗氧化剂、酶辅因子和细胞信号调节剂的作用,这些生理过程包括细胞壁生物合成、次生代谢产物和植物激素合成、抗逆性、光保护、细胞分裂以及生长。植物通过从头合成途径和补救途径合成抗坏血酸,但其生物合成的调控以及抗坏血酸稳态背后的机制在很大程度上仍不清楚。茉莉酸及其甲酯(茉莉酸盐)通过触发转录重编程来介导植物对多种生物和非生物胁迫的反应,使细胞能够应对病原体和胁迫。通过使用14C-甘露糖放射性标记结合高效液相色谱和转录谱分析表明,茉莉酸甲酯处理可增加拟南芥和烟草Bright Yellow-2(BY-2)悬浮细胞中抗坏血酸的从头合成。在BY-2细胞中,这种刺激与至少两个编码维生素C生物合成酶的茉莉酸甲酯晚期响应基因的转录增强相一致:GDP-甘露糖3'',5''-表异构酶和一种假定的L-古洛糖酸-1,4-内酯脱氢酶/氧化酶。据所知,这是关于植物中维生素C生物合成激素调控的首次报道。最后,对抗坏血酸在茉莉酸盐调节的胁迫反应中的作用进行了综述。