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木质素工程

Lignin engineering.

作者信息

Vanholme Ruben, Morreel Kris, Ralph John, Boerjan Wout

机构信息

Department of Plant Systems Biology, Flanders Institute for Biotechnology VIB, Technologiepark 927,Gent, Belgium.

出版信息

Curr Opin Plant Biol. 2008 Jun;11(3):278-85. doi: 10.1016/j.pbi.2008.03.005. Epub 2008 Apr 21.

Abstract

Lignins are aromatic polymers that are present mainly in secondarily thickened plant cell walls. Several decades of research have elucidated the main biosynthetic routes toward the monolignols and demonstrated that lignin amounts can be engineered and that plants can cope with large shifts in p-hydroxyphenyl/guaiacyl/syringyl (H/G/S) lignin compositional ratios. It has also become clear that lignins incorporate many more units than the three monolignols described in biochemistry textbooks. Together with the theory that lignin polymerization is under chemical control, observations hint at opportunities to design lignin structure to the needs of agriculture. An increasing number of examples illustrates that lignin engineering can improve the processing efficiency of plant biomass for pulping, forage digestibility and biofuels. Systems approaches, in which the plant's response to engineering of a single gene in the pathway is studied at the organismal level, are beginning to shed light on the interaction of lignin biosynthesis with other metabolic pathways and processes.

摘要

木质素是主要存在于次生加厚植物细胞壁中的芳香族聚合物。几十年的研究已经阐明了生成单木质醇的主要生物合成途径,并证明了木质素含量可以被调控,而且植物能够应对对羟基苯/愈创木基/紫丁香基(H/G/S)木质素组成比例的大幅变化。同样明确的是,木质素包含的单元比生物化学教科书中描述的三种单木质醇要多得多。结合木质素聚合受化学控制这一理论,观察结果暗示了根据农业需求设计木质素结构的可能性。越来越多的例子表明,木质素工程可以提高植物生物质用于制浆、饲料消化率和生物燃料的加工效率。在生物体水平上研究植物对途径中单个基因工程改造的反应的系统方法,正开始揭示木质素生物合成与其他代谢途径和过程之间的相互作用。

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