Metabolite profiling reveals a role for atypical cinnamyl alcohol dehydrogenase CAD1 in the synthesis of coniferyl alcohol in tobacco xylem

被引:50
作者
Damiani, I
Morreel, K
Danoun, S
Goeminne, G
Yahiaoui, N
Marque, C
Kopka, J
Messens, E
Goffner, D
Boerjan, W
Boudet, AM
Rochange, S
机构
[1] UMR UPS CNRS 5546 Surfaces Cellulaires & Signalis, F-31326 Castanet Tolosan, France
[2] State Univ Ghent VIB, Dept Plant Syst Biol, B-9052 Ghent, Belgium
[3] Max Planck Inst Mol Plant Physiol, D-14476 Golm, Germany
关键词
cinnamyl alcohol dehydrogenase; coniferyl alcohol; lignin; xylem;
D O I
10.1007/s11103-005-0947-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In angiosperms, lignin is built from two main monomers, coniferyl and sinapyl alcohol, which are incorporated respectively as G and S units in the polymer. The last step of their synthesis has so far been considered to be performed by a family of dimeric cinnamyl alcohol dehydrogenases (CAD2). However, previous studies on Eucalyptus gunnii xylem showed the presence of an additional, structurally unrelated, monomeric CAD form named CAD1. This form reduces coniferaldehyde to coniferyl alcohol, but is inactive on sinapaldehyde. In this paper, we report the functional characterization of CAD1 in tobacco (Nicotiana tabacum L.). Transgenic tobacco plants with reduced CAD1 expression were obtained through an RNAi strategy. These plants displayed normal growth and development, and detailed biochemical studies were needed to reveal a role for CAD1. Lignin analyses showed that CAD1 down-regulation does not affect Klason lignin content, and has a moderate impact on G unit content of the non-condensed lignin fraction. However, comparative metabolic profiling of the methanol-soluble phenolic fraction from basal xylem revealed significant differences between CAD1 down-regulated and wild-type plants. Eight compounds were less abundant in CAD1 down-regulated lines, five of which were identified as dimers or trimers of monolignols, each containing at least one moiety derived from coniferyl alcohol. In addition, 3-trans-caffeoyl quinic acid accumulated in the transgenic plants. Together, our results support a significant contribution of CAD1 to the synthesis of coniferyl alcohol in planta, along with the previously characterized CAD2 enzymes.
引用
收藏
页码:753 / 769
页数:17
相关论文
共 65 条
[1]  
[Anonymous], 1999, Comprehensive Natural Products Chemistry
[2]   Trends in lignin modification: a comprehensive analysis of the effects of genetic manipulations/mutations on lignification and vascular integrity [J].
Anterola, AM ;
Lewis, NG .
PHYTOCHEMISTRY, 2002, 61 (03) :221-294
[3]   QUANTITATIVE RELATIONSHIP BETWEEN PHENYLALANINE AMMONIA-LYASE LEVELS AND PHENYLPROPANOID ACCUMULATION IN TRANSGENIC TOBACCO IDENTIFIES A RATE-DETERMINING STEP IN NATURAL PRODUCT SYNTHESIS [J].
BATE, NJ ;
ORR, J ;
NI, WT ;
MEROMI, A ;
NADLERHASSAR, T ;
DOERNER, PW ;
DIXON, RA ;
LAMB, CJ ;
ELKIND, Y .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (16) :7608-7612
[4]   Down-regulation of cinnamyl alcohol dehydrogenase in transgenic alfalfa (Medicago sativa L.) and the effect on lignin composition and digestibility [J].
Baucher, M ;
Bernard-Vailhé, MA ;
Chabbert, B ;
Besle, JM ;
Opsomer, C ;
Van Montagu, M ;
Botterman, J .
PLANT MOLECULAR BIOLOGY, 1999, 39 (03) :437-447
[5]   Red xylem and higher lignin extractability by down-regulating a cinnamyl alcohol dehydrogenase in poplar [J].
Baucher, M ;
Chabbert, B ;
Pilate, G ;
VanDoorsselaere, J ;
Tollier, MT ;
PetitConil, M ;
Cornu, D ;
Monties, B ;
VanMontagu, M ;
Inze, D ;
Jouanin, L ;
Boerjan, W .
PLANT PHYSIOLOGY, 1996, 112 (04) :1479-1490
[6]   The macromolecular aromatic domain in suberized tissue: A changing paradigm [J].
Bernards, MA ;
Lewis, NG .
PHYTOCHEMISTRY, 1998, 47 (06) :915-+
[7]   Lignin biosynthesis [J].
Boerjan, W ;
Ralph, J ;
Baucher, M .
ANNUAL REVIEW OF PLANT BIOLOGY, 2003, 54 :519-546
[8]   The polymorphism of the genes/enzymes involved in the last two reductive steps of monolignol synthesis: what is the functional significance? [J].
Boudet, AM ;
Hawkins, S ;
Rochange, S .
COMPTES RENDUS BIOLOGIES, 2004, 327 (9-10) :837-845
[9]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[10]   Molecular characterisation and expression of a wound-inducible cDNA encoding a novel cinnamyl-alcohol dehydrogenase enzyme in lucerne (Medicago sativa L.) [J].
Brill, EM ;
Abrahams, S ;
Hayes, CM ;
Jenkins, CLD ;
Watson, JM .
PLANT MOLECULAR BIOLOGY, 1999, 41 (02) :279-291