Instituto de Agroquímica y Tecnología de Alimentos-IATA-CSIC, Consejo Superior de Investigaciones Científicas, Avenida Agustín Escardino 7, 46980 Paterna, Valencia, Spain.
Plant Sci. 2013 Jun;207:2-11. doi: 10.1016/j.plantsci.2013.02.007. Epub 2013 Feb 20.
Sweet pepper (Capsicum annuum L.) is widely recognized among the vegetables with high content of ascorbic acid (AsA). However, the metabolic pathways involved in the biosynthesis, recycling and degradation of AsA and their relative contribution to the concentration of AsA have not been established yet. In the present work, the expression levels of selected genes involved in the AsA biosynthesis, degradation and recycling pathways were analyzed during development and ripening of pepper fruit cv. Palermo and in mature fruit of four cultivars (Lipari, C-116, Surrentino and Italverde) with different AsA concentrations. An inverse correlation was found between the expression of the biosynthetic genes and AsA concentrations, which could indicate that a feedback mechanism regulates AsA homeostasis in pepper fruits. Interestingly, analysis of mRNA levels of ascorbate oxidase, involved in the degradation of AsA, suggests that this enzyme plays a critical role in the regulation of the AsA pool during fruit development and ripening.
甜椒(Capsicum annuum L.)是一种被广泛认可的富含抗坏血酸(AsA)的蔬菜。然而,其 AsA 生物合成、循环和降解的代谢途径及其对 AsA 浓度的相对贡献尚未确定。在本工作中,分析了不同 AsA 浓度的甜椒品种 Palermo 的果实发育和成熟过程以及四个品种(Lipari、C-116、Surrentino 和 Italverde)成熟果实中与 AsA 生物合成、降解和循环途径相关的选定基因的表达水平。发现生物合成基因的表达与 AsA 浓度呈负相关,这可能表明反馈机制调节了甜椒果实中 AsA 的动态平衡。有趣的是,分析参与 AsA 降解的抗坏血酸氧化酶的 mRNA 水平表明,该酶在果实发育和成熟过程中对 AsA 库的调节起着关键作用。