Goujon Thomas, Ferret Valérie, Mila Isabelle, Pollet Brigitte, Ruel Katia, Burlat Vincent, Joseleau Jean-Paul, Barrière Yves, Lapierre Catherine, Jouanin Lise
Biologie Cellulaire, Institut National de la Recherche Agronomique, 78026, Versailles Cedex, France.
Planta. 2003 Jun;217(2):218-28. doi: 10.1007/s00425-003-0987-6. Epub 2003 Feb 22.
Cinnamoyl CoA reductase (CCR; EC 1.2.1.44) is the first enzyme specific to the biosynthetic pathway leading to monolignols. Arabidopsis thaliana (L.) Heynh. plants transformed with a vector containing a full-length AtCCR1 cDNA in an antisense orientation were obtained and characterized. The most severely down-regulated homozygous plants showed drastic alterations to their phenotypical features. These plants had a 50% decrease in lignin content accompanied by changes in lignin composition and structure, with incorporation of ferulic acid into the cell wall. Microscopic analyses coupled with immunolabelling revealed a decrease in lignin deposition in normally lignified tissues and a dramatic loosening of the secondary cell wall of interfascicular fibers and vessels. Evaluation of in vitro digestibility demonstrated an increase in the enzymatic degradability of these transgenic lines. In addition, culture conditions were shown to play a substantial role in lignin level and structure in the wild type and in the effects of AtCCR1 repression efficiency.
肉桂酰辅酶A还原酶(CCR;EC 1.2.1.44)是木质素生物合成途径中的首个特异性酶。获得了用含有反义方向的全长AtCCR1 cDNA的载体转化的拟南芥植株,并对其进行了表征。下调最严重的纯合植株在表型特征上表现出剧烈变化。这些植株的木质素含量降低了50%,同时伴随着木质素组成和结构的变化,阿魏酸掺入到细胞壁中。显微镜分析结合免疫标记显示,正常木质化组织中的木质素沉积减少,束间纤维和导管的次生细胞壁显著疏松。体外消化率评估表明,这些转基因株系的酶促降解性有所提高。此外,培养条件在野生型的木质素水平和结构以及AtCCR1抑制效率的影响方面发挥了重要作用。