Instituto de Recursos Naturales y Agrobiología de Sevilla, CSIC, P.O. Box 1052, E-41080 Seville, Spain.
Bioresour Technol. 2012 Sep;119:114-22. doi: 10.1016/j.biortech.2012.05.112. Epub 2012 May 30.
The ability of Trametes villosa laccase, in conjuction with 1-hydroxybenzotriazole (HBT) as mediator and alkaline extraction, to remove lignin was demonstrated during treatment of wood (Eucalyptus globulus) and non-wood (Pennisetum purpureum) feedstocks. At 50 Ug(-1) laccase and 2.5% HBT concentration, 48% and 32% of the Eucalyptus and Pennisetum lignin were removed, respectively. Two-dimensional nuclear magnetic resonance of the feedstocks, swollen in dimethylsulfoxide-d(6), revealed the removal of p-hydroxyphenyl, guaiacyl and syringyl lignin units and aliphatic (mainly β-O-4'-linked) side-chains of lignin, and a moderate removal of p-coumaric acid (present in Pennisetum) without a substantial change in polysaccharide cross-signals. The enzymatic pretreatment (at 25 Ug(-1)) of Eucalyptus and Pennisetum feedstocks increased the glucose (by 61% and 12% in 72 h) and ethanol (by 4 and 2 g L(-1) in 17 h) yields from both lignocellulosic materials, respectively, as compared to those without enzyme treatment.
纤孔菌漆酶与 1-羟基苯并三唑(HBT)作为共介体和碱性提取协同作用,用于去除木质素的能力在处理木材(桉树)和非木材(狼尾草)原料时得到了证明。在 50 Ug(-1)漆酶和 2.5% HBT 浓度下,分别去除了桉树和狼尾草木质素的 48%和 32%。在二甲基亚砜-d(6)中溶胀的原料的二维核磁共振表明,去除了对羟基苯基、愈创木基和丁香基木质素单元以及木质素的脂肪族(主要是β-O-4'-连接)侧链,并适度去除了对香豆酸(存在于狼尾草中),而多糖交叉信号没有明显变化。与未经酶处理相比,在 25 Ug(-1)下对桉树和狼尾草原料进行酶预处理分别提高了这两种木质纤维素材料中葡萄糖(72 小时内提高了 61%和 12%)和乙醇(17 小时内提高了 4 和 2 g L(-1))的产量。