Biological Sciences Department, State University of New York at Cortland, Bowers Hall, Cortland, NY 13045, USA.
J Exp Bot. 2013 Jul;64(10):2793-804. doi: 10.1093/jxb/ert140. Epub 2013 Jun 7.
Ascorbic acid (AsA) is present at high levels in plants and is a potent antioxidant and cellular reductant. The major plant AsA biosynthetic pathway is through the intermediates D-mannose and L-galactose. Although there is ample evidence that plants respond to fluctuating environmental conditions with changes in the pool size of AsA, it is unclear how this regulation occurs. The AsA-deficient Arabidopsis thaliana mutants vtc3-1 and vtc3-2 define a locus that has been identified by positional cloning as At2g40860. Confirmation of this identification was through the study of AsA-deficient At2g40860 insertion mutants and by transgenic complementation of the AsA deficiency in vtc3-1 and vtc3-2 with wild-type At2g40860 cDNA. The very unusual VTC3 gene is predicted to encode a novel polypeptide with an N-terminal protein kinase domain tethered covalently to a C-terminal protein phosphatase type 2C domain. Homologues of this gene exist only within the Viridiplantae/Chloroplastida and the gene may therefore have arisen along with the D-mannose/L-galactose AsA biosynthetic pathway. The vtc3 mutant plants are defective in the ability to elevate the AsA pool in response to light and heat, suggestive of an important role for VTC3 in the regulation of the AsA pool size.
抗坏血酸(AsA)在植物中含量很高,是一种有效的抗氧化剂和细胞还原剂。植物中 AsA 的主要生物合成途径是通过 D-甘露糖和 L-半乳糖中间体。尽管有充分的证据表明,植物会根据环境条件的变化,改变 AsA 库的大小来做出响应,但目前尚不清楚这种调节是如何发生的。拟南芥的 AsA 缺陷突变体 vtc3-1 和 vtc3-2 定义了一个基因座,该基因座已通过定位克隆确定为 At2g40860。通过研究 AsA 缺陷的 At2g40860 插入突变体以及通过用野生型 At2g40860 cDNA 对 vtc3-1 和 vtc3-2 的 AsA 缺乏进行转基因互补,证实了这一鉴定。非常不寻常的 VTC3 基因预计编码一种具有 N 端蛋白激酶结构域的新型多肽,该结构域通过共价键与 C 端蛋白磷酸酶 2C 结构域连接。该基因的同源物仅存在于 Viridiplantae/Chloroplastida 中,因此该基因可能是与 D-甘露糖/L-半乳糖 AsA 生物合成途径一起产生的。vtc3 突变体植物在光和热下提高 AsA 库的能力有缺陷,这表明 VTC3 在调节 AsA 库大小方面可能发挥着重要作用。