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木糖发酵:木质纤维素燃料和化学品商业化面临的挑战

Xylose fermentation as a challenge for commercialization of lignocellulosic fuels and chemicals.

作者信息

Sànchez Nogué Violeta, Karhumaa Kaisa

机构信息

C5 Ligno Technologies in Lund AB, P.O. Box 124, 22100, Lund, Sweden,

出版信息

Biotechnol Lett. 2015 Apr;37(4):761-72. doi: 10.1007/s10529-014-1756-2. Epub 2014 Dec 19.

Abstract

Fuel ethanol production from lignocellulosic materials is at a level where commercial biofuel production is becoming a reality. The solubilization of the hemicellulose fraction in lignocellulosic-based feedstocks results in a large variety of sugar mixtures including xylose. However, allowing xylose fermentation in yeast that normally is used for fuel ethanol production requires genetic engineering. Moreover, the efficiency of lignocellulosic pretreatment, together with the release and generation of inhibitory compounds in this step, are some of the new challenges faced during second generation ethanol production. Successful advances in all these aspects will improve ethanol yield, productivity and titer, which will reduce the impact on capital and operating costs, leading to the consolidation of the fermentation of lignocellulosic biomass as an economically feasible option for the production of renewable fuels. Therefore the development of yeast strains capable of fermenting a wide variety of sugars in a highly inhibitory environment, while maintaining a high ethanol yield and production rate, is required. This review provides an overview of the current status in the use of xylose-engineered yeast strains and describes the remaining challenges to achieve an efficient deployment of lignocellulosic-based ethanol production.

摘要

从木质纤维素材料生产燃料乙醇已达到一定水平,商业生物燃料生产正成为现实。木质纤维素基原料中半纤维素部分的溶解会产生包括木糖在内的多种糖混合物。然而,要让通常用于燃料乙醇生产的酵母发酵木糖,就需要进行基因工程改造。此外,木质纤维素预处理的效率,以及该步骤中抑制性化合物的释放和生成,是第二代乙醇生产过程中面临的一些新挑战。在所有这些方面取得成功进展将提高乙醇产量、生产率和滴度,这将降低对资本和运营成本的影响,从而巩固木质纤维素生物质发酵作为生产可再生燃料的经济可行选择。因此,需要开发能够在高度抑制性环境中发酵多种糖,同时保持高乙醇产量和生产率的酵母菌株。本文综述了木糖工程酵母菌株的使用现状,并描述了实现木质纤维素基乙醇生产高效应用所面临的剩余挑战。

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