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设计用于淀粉质生物质到乙醇的综合生物加工的工业酵母。

Designing industrial yeasts for the consolidated bioprocessing of starchy biomass to ethanol.

机构信息

Department of Agronomy Food Natural Resources Animals and Environment (DAFNAE), University of Padova, Agripolis, Italy.

出版信息

Bioengineered. 2013 Mar-Apr;4(2):97-102. doi: 10.4161/bioe.22268. Epub 2012 Mar 1.

Abstract

Consolidated bioprocessing (CBP), which integrates enzyme production, saccharification and fermentation into a one step process, is a promising strategy for the effective ethanol production from cheap lignocellulosic and starchy materials. CBP requires a highly engineered microbial strain able to both hydrolyze biomass with enzymes produced on its own and convert the resulting simple sugars into high-titer ethanol. Recently, heterologous production of cellulose and starch-degrading enzymes has been achieved in yeast hosts, which has realized direct processing of biomass to ethanol. However, essentially all efforts aimed at the efficient heterologous expression of saccharolytic enzymes in yeast have involved laboratory strains and much of this work has to be transferred to industrial yeasts that provide the fermentation capacity and robustness desired for large scale bioethanol production. Specifically, the development of an industrial CBP amylolytic yeast would allow the one-step processing of low-cost starchy substrates into ethanol. This article gives insight in the current knowledge and achievements on bioethanol production from starchy materials with industrial engineered S. cerevisiae strains.

摘要

整合生物加工(CBP)将酶生产、糖化和发酵集成到一个步骤中,是从廉价的木质纤维素和淀粉材料中有效生产乙醇的有前途的策略。CBP 需要一种经过高度工程改造的微生物菌株,能够用自身产生的酶水解生物质,并将产生的简单糖转化为高浓度的乙醇。最近,在酵母宿主中实现了纤维素和淀粉降解酶的异源生产,这实现了对生物质的直接加工生产乙醇。然而,旨在在酵母中高效异源表达糖化酶的所有努力基本上都涉及实验室菌株,并且其中大部分工作必须转移到能够提供大规模生物乙醇生产所需的发酵能力和稳健性的工业酵母上。具体而言,开发一种工业 CBP 淀粉分解酵母将允许一步法处理低成本淀粉原料生产乙醇。本文深入了解了利用工业工程化酿酒酵母菌株从淀粉原料生产生物乙醇的最新知识和成就。

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