Fang Xu, Qin Yuqi, Li Xuezhi, Wang Lushan, Wang Tianhong, Zhu Mingtian, Qu Yinbo
State Key Laboratory of Microbial Technology, Shandong University, Jinan 250100, China.
Sheng Wu Gong Cheng Xue Bao. 2010 Jul;26(7):864-9.
Biofuels and bio-based chemicals from lignocellulosic biomass are sustainable, making them alternatives to petroleum-derived fuels and chemicals to address the challenges of the shortage of crude oil supply and climate change resulted from the overconsumption of petroleum-based products, particularly in China. However, high cost in liberating sugars from lignocellulosic biomass is still the bottleneck of the commercialization of biofuels and bio-based chemicals. In this article, the major components of cellulases and their synergistic role in the hydrolysis of pre-treated biomass is reviewed, followed by how to evaluate the enzymatic hydrolysis. With the elucidation of the underlying mechanism of the conformations of the enzyme molecules and their effectiveness in attacking cellulose substrate, more efficient enzymes are expected to be developed. Using the high production strain Penicillium decumbens, the on-site production of cellulases for cellulose ethanol production is discussed.
来自木质纤维素生物质的生物燃料和生物基化学品具有可持续性,这使其成为石油衍生燃料和化学品的替代品,以应对原油供应短缺以及石油基产品过度消费导致的气候变化等挑战,在中国尤其如此。然而,从木质纤维素生物质中释放糖的高成本仍然是生物燃料和生物基化学品商业化的瓶颈。本文综述了纤维素酶的主要成分及其在预处理生物质水解中的协同作用,随后介绍了如何评估酶促水解。随着酶分子构象及其攻击纤维素底物有效性的潜在机制的阐明,有望开发出更高效的酶。利用高产菌株斜卧青霉,讨论了用于纤维素乙醇生产的纤维素酶的现场生产。