Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, PR China.
Key Laboratory of Forestry Genetics & Biotechnology (Nanjing Forestry University), Ministry of Education, Nanjing 210037, PR China.
Bioresour Technol. 2022 Jul;355:127255. doi: 10.1016/j.biortech.2022.127255. Epub 2022 May 5.
A better understanding of the relationship between lignin structures and their inhibitory effects in enzymatic saccharification would facilitate the development of lignocellulose biorefinery process. However, the heterogeneity of lignins challenges the elucidation of lignin structure-inhibition correlation. In this study, two types of lignin fractions including ethanol soluble lignins and ethanol insoluble lignins were respectively isolated from the poplars pretreated with various severities. The impacts of pretreatment severities on the structural changes of lignin fractions were studied from the perspective of inter-units linkages, condensed aromatic substructure, and hydroxyl groups. Furthermore, it was observed that lignin addition strongly inhibited the enzymatic saccharification of pure cellulose by 13.3 ∼ 56.3%. Lignin inhibition extents were increased with the elevated pretreatment severity. The relationships between the lignin structural features and lignin inhibition were analyzed, which revealed that the contents of condensed aromatic units and phenolic hydroxyl were crucial factors determining the lignin inhibition.
更好地理解木质素结构与其在酶解糖化中抑制作用之间的关系,将有助于木质纤维素生物炼制工艺的发展。然而,木质素的异质性给木质素结构-抑制相关性的阐明带来了挑战。在本研究中,分别从不同预处理程度的杨木中分离出了醇溶木质素和醇不溶木质素两种木质素级分。从联键、缩合芳基结构和羟基的角度研究了预处理程度对木质素级分结构变化的影响。此外,观察到木质素的添加强烈抑制了纯纤维素的酶解糖化,抑制率为 13.3%~56.3%。木质素抑制程度随预处理程度的升高而增加。分析了木质素结构特征与木质素抑制之间的关系,结果表明,缩合芳基单元和酚羟基的含量是决定木质素抑制的关键因素。