Graduate School of Environmental and Human Sciences, Meijo University, Nagoya, 468-8502, Japan.
Research Institute, Meijo University, Nagoya, 468-8502, Japan.
Plant Physiol Biochem. 2019 Sep;142:211-216. doi: 10.1016/j.plaphy.2019.07.011. Epub 2019 Jul 9.
Choline is a vital metabolite in plant and synthesized from phosphocholine by phosphocholine phosphatase. The Arabidopsis At1g17710 was identified as the first plant gene encoding the phosphatase for both phosphoethanolamine and phosphocholine (PECP) with much higher catalytic efficiency (>10-fold) for former. In betaine accumulating plants, choline is further required for betaine synthesis. In this report, we found three putative PECP genes in sugar beet, betaine accumulating plants. Two genes encode the proteins of 274 amino acid residues and designated as BvPECP1S and BvPECP2S. Another gene encodes the 331 amino acid protein (BvPECP2L) consisted of BvPECP2S with extra C-terminal amino acid. Enzymatic assays of BvPECP1S revealed that BvPECP1S exhibited the phosphatase activity for both phosphoethanolamine and phosphocholine with higher affinity (>1.8-fold) and catalytic efficiency (>2.64-fold) for phosphocholine. BvPECP2L exhibited low activity. RT-PCR experiments for BvPECP1S showed the increased expression in young leaf and root tip under salt-stress whereas the increased expression in all organs under phosphate deficiency. The expression level of BvPECP2L in salt stressed young leaf and root tip was induced by phosphate deficient. Physiological roles of BvPECP1S and BvPECP2L for the betaine synthesis were discussed.
胆碱是植物中一种重要的代谢物,由磷酸胆碱通过磷酸胆碱磷酸酶合成。拟南芥 At1g17710 被鉴定为第一个编码磷酸乙醇胺和磷酸胆碱磷酸酶(PECP)的植物基因,对前者的催化效率(>10 倍)更高。在甜菜碱积累植物中,胆碱进一步用于甜菜碱的合成。在本报告中,我们在甜菜碱积累植物中发现了三个推定的 PECP 基因。两个基因编码 274 个氨基酸残基的蛋白质,分别命名为 BvPECP1S 和 BvPECP2S。另一个基因编码由 BvPECP2S 加上额外的 C 末端氨基酸组成的 331 个氨基酸蛋白(BvPECP2L)。BvPECP1S 的酶促测定表明,BvPECP1S 对磷酸乙醇胺和磷酸胆碱均具有磷酸酶活性,对磷酸胆碱的亲和力(>1.8 倍)和催化效率(>2.64 倍)更高。BvPECP2L 表现出低活性。BvPECP1S 的 RT-PCR 实验表明,盐胁迫下幼叶和根尖表达增加,而磷酸盐缺乏下所有器官表达增加。缺磷条件下,盐胁迫下幼叶和根尖 BvPECP2L 的表达水平被诱导。讨论了 BvPECP1S 和 BvPECP2L 在甜菜碱合成中的生理作用。