Ruegger M, Meyer K, Cusumano J C, Chapple C
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907-1153, USA.
Plant Physiol. 1999 Jan;119(1):101-10. doi: 10.1104/pp.119.1.101.
Sinapic acid is an intermediate in syringyl lignin biosynthesis in angiosperms, and in some taxa serves as a precursor for soluble secondary metabolites. The biosynthesis and accumulation of the sinapate esters sinapoylglucose, sinapoylmalate, and sinapoylcholine are developmentally regulated in Arabidopsis and other members of the Brassicaceae. The FAH1 locus of Arabidopsis encodes the enzyme ferulate-5-hydroxylase (F5H), which catalyzes the rate-limiting step in syringyl lignin biosynthesis and is required for the production of sinapate esters. Here we show that F5H expression parallels sinapate ester accumulation in developing siliques and seedlings, but is not rate limiting for their biosynthesis. RNA gel-blot analysis indicated that the tissue-specific and developmentally regulated expression of F5H mRNA is distinct from that of other phenylpropanoid genes. Efforts to identify constructs capable of complementing the sinapate ester-deficient phenotype of fah1 mutants demonstrated that F5H expression in leaves is dependent on sequences 3' of the F5H coding region. In contrast, the positive regulatory function of the downstream region is not required for F5H transcript or sinapoylcholine accumulation in embryos.
芥子酸是被子植物中紫丁香基木质素生物合成的中间体,在一些分类群中作为可溶性次生代谢产物的前体。在拟南芥和十字花科的其他成员中,芥子酸酯(芥子酰葡萄糖、芥子酰苹果酸和芥子酰胆碱)的生物合成和积累受到发育调控。拟南芥的FAH1位点编码阿魏酸-5-羟化酶(F5H),该酶催化紫丁香基木质素生物合成中的限速步骤,是芥子酸酯产生所必需的。在这里,我们表明F5H表达与发育中的角果和幼苗中芥子酸酯的积累平行,但对其生物合成不是限速的。RNA凝胶印迹分析表明,F5H mRNA的组织特异性和发育调控表达与其他苯丙烷类基因不同。鉴定能够补充fah1突变体芥子酸酯缺陷表型的构建体的努力表明,叶片中F5H的表达依赖于F5H编码区3'端的序列。相反,胚胎中F5H转录本或芥子酰胆碱积累不需要下游区域的正向调节功能。