纤维素酶
纤维素
半纤维素
木质素
化学
木质纤维素生物量
生物量(生态学)
水解
生物化学
制浆造纸工业
生物技术
有机化学
生物
工程类
生态学
作者
Manish Paul,Sonali Mohapatra,Pradeep K. Das Mohapatra,Hrudayanath Thatoi
标识
DOI:10.1016/j.biortech.2021.125710
摘要
The inherent resistance of lignocellulosic biomass makes it impervious for industrially important enzymes such as cellulases to hydrolyze cellulose. Further, the competitive absorption behavior of lignin and hemicellulose for cellulases, due to their electron-rich surfaces augments the inappropriate utilization of these enzymes. Hence, modification of the surface charge of the cellulases to reduce its non-specific binding to lignin and enhance its affinity for cellulose is an urgent necessity. Further, maintaining the stability of cellulases by the preservation of their secondary structures using immobilization techniques will also play an integral role in its industrial production. In silico approaches for increasing the catalytic activity of cellulase enzymes is also significant along with a range of substrate specificity. In addition, enhanced productivity of cellulases by tailoring the related genes through the process of genetic engineering and higher cellulase recovery after saccharification seems to be promising areas for efficient and large-scale enzyme production concepts.
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