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拟南芥中木质素单体的组成由一种细胞色素P450依赖性单加氧酶的表达所决定。

Lignin monomer composition is determined by the expression of a cytochrome P450-dependent monooxygenase in Arabidopsis.

作者信息

Meyer K, Shirley A M, Cusumano J C, Bell-Lelong D A, Chapple C

机构信息

Department of Biochemistry, Purdue University, West Lafayette, IN 47907-1153, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Jun 9;95(12):6619-23. doi: 10.1073/pnas.95.12.6619.

Abstract

The phenylpropanoid pathway provides precursors for the biosynthesis of soluble secondary metabolites and lignin in plants. Ferulate-5-hydroxylase (F5H) catalyzes an irreversible hydroxylation step in this pathway that diverts ferulic acid away from guaiacyl lignin biosynthesis and toward sinapic acid and syringyl lignin. This fact led us to postulate that F5H was a potential regulatory step in the determination of lignin monomer composition. To test this hypothesis, we have used Arabidopsis to examine the impact of F5H overexpression. Arabidopsis is a useful model system in which to study lignification because in wild-type plants, guaiacyl and syringyl lignins are deposited in a tissue-specific fashion, while the F5H-deficient fah1 mutant accumulates only guaiacyl lignin. Here we show that ectopic overexpression of F5H in Arabidopsis abolishes tissue-specific lignin monomer accumulation. Surprisingly, overexpression of F5H under the control of the lignification-associated cinnamate-4-hydroxylase promoter, but not the commonly employed cauliflower mosaic virus 35S promoter, generates a lignin that is almost entirely comprised of syringylpropane units. These experiments demonstrate that modification of F5H expression may enable engineering of lignin monomer composition in agronomically important plant species.

摘要

苯丙烷途径为植物中可溶性次生代谢产物和木质素的生物合成提供前体。阿魏酸 -5- 羟化酶(F5H)催化该途径中的一个不可逆羟基化步骤,使阿魏酸从愈创木基木质素生物合成转向芥子酸和紫丁香基木质素的合成。这一事实使我们推测F5H是木质素单体组成决定过程中的一个潜在调控步骤。为了验证这一假设,我们利用拟南芥来研究F5H过表达的影响。拟南芥是研究木质化的一个有用模型系统,因为在野生型植物中,愈创木基和紫丁香基木质素以组织特异性方式沉积,而F5H缺陷型fah1突变体仅积累愈创木基木质素。在此我们表明,拟南芥中F5H的异位过表达消除了组织特异性木质素单体积累。令人惊讶的是,在与木质化相关的肉桂酸 -4- 羟化酶启动子控制下而非常用的花椰菜花叶病毒35S启动子控制下过表达F5H,会产生一种几乎完全由紫丁香基丙烷单元组成的木质素。这些实验表明,改变F5H的表达可能有助于对具有重要农艺价值的植物物种的木质素单体组成进行工程改造。

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