CAS Key Laboratory of Biofuels, Shandong Provincial Key Laboratory of Synthetic Biology, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, Shandong 266101, China; Dalian National Laboratory for Clean Energy, Dalian, China; University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing, China.
Biotechnol Adv. 2020 May-Jun;40:107535. doi: 10.1016/j.biotechadv.2020.107535. Epub 2020 Feb 24.
Lignocellulosic biomass is the most abundant sustainable carbon source on the planet and has enormous potential to substitute fossil resources on the premise of cost-effective conversion. Efforts have been made to develop various lignocellulosic bioconversion strategies to overcome biomass recalcitrance, promote product conversion efficiency and reduce process cost. Consolidated bio-saccharification (CBS), a consolidated bioprocessing (CBP) derived strategy, is herein proposed for lignocellulose bioconversion by integrating enzyme production and hydrolysis steps but separating fermentation from the integrated process. This strategy employs cellulosome-producing microorganisms as a biocatalyst to enhance lignocellulose solubilization and produces lignocellulose-derived fermentable sugars as a platform product for fermentations aiming at various products. The success of CBS depends on robust biocatalysts with high activity, suitable pretreatments for efficient delignification, and downstream fermentations with process compatibility. The review introduces the updated progress on lignocellulose bioconversion following the CBS route, discusses key factors for optimization of the CBS process, and, more importantly, highlights challenges and promising solutions for the CBS strategy in the industrial application of lignocellulose bioconversion.
木质纤维素生物质是地球上最丰富的可持续碳源,在具有成本效益的转化前提下,具有替代化石资源的巨大潜力。人们已经努力开发各种木质纤维素生物转化策略,以克服生物质的抗降解性,提高产物转化效率并降低工艺成本。在这里,我们提出了一种整合生物糖化(CBS)策略,它源自整合生物加工(CBP),通过整合酶生产和水解步骤,同时将发酵与整合过程分离,从而实现木质纤维素的生物转化。该策略采用产纤维素酶的微生物作为生物催化剂,以增强木质纤维素的溶解,并产生木质纤维素衍生的可发酵糖作为平台产物,用于针对各种产物的发酵。CBS 的成功取决于具有高活性的强大生物催化剂、高效脱木质素的合适预处理以及与工艺兼容性好的下游发酵。本文综述了按照 CBS 路线进行木质纤维素生物转化的最新进展,讨论了优化 CBS 工艺的关键因素,更重要的是,强调了 CBS 策略在木质纤维素生物转化的工业应用中面临的挑战和有前景的解决方案。