生物炼制
生物转化
废物管理
生化工程
生物燃料
环境友好型
纤维素酶
沼气
酵母
发酵
生物技术
环境科学
化学
工程类
纤维素
生物
生物化学
生态学
作者
Zhuo Liu,Shih‐Hsin Ho,Tomohisa Hasunuma,Jo‐Shu Chang,Nan-Qi Ren,Akihiko Kondo
标识
DOI:10.1016/j.biortech.2016.03.132
摘要
Waste biorefinery aims to maximize the output of value-added products from various artificial/agricultural wastes by using integrated bioprocesses. To make waste biorefinery economically feasible, it is thus necessary to develop a low-cost, environment-friendly technique to perform simultaneous biodegradation and bioconversion of waste materials. Cell-surface display engineering is a novel, cost-effective technique that can auto-immobilize proteins on the cell exterior of microorganisms, and has been applied for use with waste biofinery. Through tethering different enzymes (e.g., cellulase, lipase, and protease) or metal-binding peptides on cell surfaces, various yeast strains can effectively produce biofuels and biochemicals from sugar/protein-rich waste materials, catalyze waste oils into biodiesels, or retrieve heavy metals from wastewater. This review critically summarizes recent applications of yeast cell-surface display on various types of waste biorefineries, highlighting its potential and future challenges with regard to commercializing this technology.
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