Grabber John H, Hatfield Ronald D, Lu Fachuang, Ralph John
United States Dairy Forage Research Center, USDA-ARS, 1925 Linden Drive West, Madison, Wisconsin 53706, USA.
Biomacromolecules. 2008 Sep;9(9):2510-6. doi: 10.1021/bm800528f. Epub 2008 Aug 20.
Incorporating ester interunit linkages into lignin could facilitate fiber delignification and utilization. In model studies with maize cell walls, we examined how partial substitution of coniferyl alcohol (a normal monolignol) with coniferyl ferulate (an ester conjugate from lignan biosynthesis) alters the formation and alkaline extractability of lignin and the enzymatic hydrolysis of structural polysaccharides. Coniferyl ferulate moderately reduced lignification and cell-wall ferulate copolymerization with monolignols. Incorporation of coniferyl ferulate increased lignin extractability by up to 2-fold in aqueous NaOH, providing an avenue for producing fiber with less noncellulosic and lignin contamination or of delignifying at lower temperatures. Cell walls lignified with coniferyl ferulate were more readily hydrolyzed with fibrolytic enzymes, both with and without alkaline pretreatment. Based on our results, bioengineering of plants to incorporate coniferyl ferulate into lignin should enhance lignocellulosic biomass saccharification and particularly pulping for paper production.
将酯键引入木质素中有助于纤维脱木质素和利用。在玉米细胞壁的模型研究中,我们研究了用阿魏酸松柏酯(一种来自木脂素生物合成的酯共轭物)部分替代松柏醇(一种正常的单木质醇)如何改变木质素的形成、碱性提取率以及结构多糖的酶促水解。阿魏酸松柏酯适度降低了木质化程度以及细胞壁中阿魏酸与单木质醇的共聚作用。阿魏酸松柏酯的掺入使木质素在氢氧化钠水溶液中的提取率提高了两倍,为生产非纤维素和木质素污染较少的纤维或在较低温度下进行脱木质素提供了一条途径。无论有无碱性预处理,用阿魏酸松柏酯木质化的细胞壁都更容易被纤维分解酶水解。基于我们的研究结果,对植物进行生物工程改造以将阿魏酸松柏酯掺入木质素中,应该会提高木质纤维素生物质的糖化作用,特别是用于造纸生产的制浆过程。