里氏木霉
纤维素酶
扩张素
化学
芒属
生物量(生态学)
β-葡萄糖苷酶
纤维素
水解
木质纤维素生物量
生物能源
木聚糖
酶水解
生物炼制
玉米浆
生物化学
食品科学
生物技术
发酵
生物燃料
生物
农学
基因表达
有机化学
原材料
基因
作者
Chengbao Xu,Tao Xia,Hao Peng,Peng Liu,Yanting Wang,Yanting Wang,Heng Kang,Jingfeng Tang,Muhammad Nauman Aftab,Liangcai Peng
标识
DOI:10.1016/j.biortech.2023.128844
摘要
In this study, bacterial BsEXLE1 gene was overexpressed into T. reesei (Rut-C30) to generate a desirable engineered TrEXLX10 strain. While incubated with alkali-pretreated Miscanthus straw as carbon source, the TrEXLX10 secreted the β-glucosidases, cellobiohydrolases and xylanses with activities raised by 34%, 82% and 159% compared to the Rut-C30. Supplying EXLX10-secreted crude enzymes and commercial mixed-cellulases for two-step lignocellulose hydrolyses of corn and Miscanthus straws after mild alkali pretreatments, this work measured consistently higher hexoses yields released by the EXLX10-secreted enzymes for synergistic enhancements of biomass saccharification in all parallel experiments examined. Meanwhile, this study detected that the expansin, purified from EXLX10-secreted solution, was of exceptionally high binding activities with wall polymers, and further determined its independent enhancement for cellulose hydrolysis. Therefore, this study raised a mechanism model to highlight EXLX/expansin dual-activation roles for both secretion of stable biomass-degradation enzymes at high activity and biomass enzymatic saccharification in bioenergy crops.
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