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A Modified Saccharomyces cerevisiae Strain That Consumes l-Arabinose and Produces Ethanol

机译:一种修饰的酿酒酵母菌株,其消耗l-阿拉伯糖并产生乙醇

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Metabolic engineering is a powerful method to improve, redirect, or generate new metabolic reactions or whole pathways in microorganisms. Here we describe the engineering of a Saccharomyces cerevisiae strain able to utilize the pentose sugar l-arabinose for growth and to ferment it to ethanol. Expanding the substrate fermentation range of S. cerevisiae to include pentoses is important for the utilization of this yeast in economically feasible biomass-to-ethanol fermentation processes. After overexpression of a bacterial l-arabinose utilization pathway consisting of Bacillus subtilis AraA and Escherichia coli AraB and AraD and simultaneous overexpression of the l-arabinose-transporting yeast galactose permease, we were able to select an l-arabinose-utilizing yeast strain by sequential transfer in l-arabinose media. Molecular analysis of this strain, including DNA microarrays, revealed that the crucial prerequisite for efficient utilization of l-arabinose is a lowered activity of l-ribulokinase. Moreover, high l-arabinose uptake rates and enhanced transaldolase activities favor utilization of l-arabinose. With a doubling time of about 7.9 h in a medium with l-arabinose as the sole carbon source, an ethanol production rate of 0.06 to 0.08 g of ethanol per g (dry weight)?·?h?1 under oxygen-limiting conditions, and high ethanol yields, this yeast strain should be useful for efficient fermentation of hexoses and pentoses in cellulosic biomass hydrolysates.
机译:代谢工程是改善,重定向或在微生物中产生新的代谢反应或整个途径的有效方法。在这里,我们描述了酿酒酵母菌株的工程设计,该菌株能够利用戊糖L-阿拉伯糖进行生长并将其发酵为乙醇。将酿酒酵母的底物发酵范围扩大到包括戊糖,对于在经济上可行的从生物质到乙醇的发酵过程中利用该酵母很重要。在由枯草芽孢杆菌AraA和大肠杆菌AraB和AraD组成的细菌l-阿拉伯糖利用途径的过表达以及l-阿拉伯糖运输酵母半乳糖通透酶的同时过表达之后,我们能够通过顺序选择使用l-阿拉伯糖的酵母菌株在l-阿拉伯糖培养基中转移。对该菌株(包括DNA微阵列)的分子分析显示,有效利用l-阿拉伯糖的关键前提是l-核糖激酶的活性降低。此外,高的1-阿拉伯糖摄取率和增强的转醛酶活性有利于利用1-阿拉伯糖。在以l-阿拉伯糖为唯一碳源的培养基中加倍时间约为7.9小时,在限氧条件下,每g(干重)?·?h?1的乙醇生产率为0.06-0.08 g乙醇,以及高乙醇产量,该酵母菌株应可用于纤维素生物质水解产物中己糖和戊糖的有效发酵。

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