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木质素单体阿魏酸转移酶在木质素主链中引入化学不稳定的键。

Monolignol ferulate transferase introduces chemically labile linkages into the lignin backbone.

机构信息

Department of Plant Biology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Science. 2014 Apr 4;344(6179):90-3. doi: 10.1126/science.1250161.

Abstract

Redesigning lignin, the aromatic polymer fortifying plant cell walls, to be more amenable to chemical depolymerization can lower the energy required for industrial processing. We have engineered poplar trees to introduce ester linkages into the lignin polymer backbone by augmenting the monomer pool with monolignol ferulate conjugates. Herein, we describe the isolation of a transferase gene capable of forming these conjugates and its xylem-specific introduction into poplar. Enzyme kinetics, in planta expression, lignin structural analysis, and improved cell wall digestibility after mild alkaline pretreatment demonstrate that these trees produce the monolignol ferulate conjugates, export them to the wall, and use them during lignification. Tailoring plants to use such conjugates during cell wall biosynthesis is a promising way to produce plants that are designed for deconstruction.

摘要

重新设计木质素,即增强植物细胞壁的芳香族聚合物,使其更易于进行化学解聚,可以降低工业加工所需的能量。我们通过用松柏醇阿魏酸缀合物来增加单体池,从而设计出杨树,以便在木质素聚合物主链中引入酯键。在此,我们描述了一种能够形成这些缀合物的转移酶基因的分离及其在杨树中的木质部特异性导入。酶动力学、植物体内表达、木质素结构分析以及温和碱性预处理后细胞壁消化率的提高表明,这些树会产生松柏醇阿魏酸缀合物,将其运出细胞壁,并在木质化过程中使用它们。在细胞壁生物合成过程中对植物进行修饰以利用这些缀合物是生产专为解构而设计的植物的一种很有前途的方法。

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