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首页> 外文期刊>Journal of Biotechnology >Microaerobic conversion of xylose to ethanol in recombinant Saccharomyces cerevisiae SX6(MUT) expressing cofactor-balanced xylose metabolic enzymes and deficient in ALD6
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Microaerobic conversion of xylose to ethanol in recombinant Saccharomyces cerevisiae SX6(MUT) expressing cofactor-balanced xylose metabolic enzymes and deficient in ALD6

机译:表达辅助因子平衡的木糖代谢酶且缺乏ALD6的重组酿酒酵母SX6(MUT)中的木糖微有氧转化为乙醇

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摘要

Xylose is a major monosugar in cellulosic biomass and should be utilized for cost-effective ethanol production. In this study, xylose-converting ability of recombinant Saccharomyces cerevisiae SX6MUT expressing NADH-preferring xylose reductase mutant (R276H) and other xylose-metabolic enzymes, and deficient in aldehyde dehydrogenase 6 (Ald6p) were characterized at microaerobic conditions using various sugar mixtures. The reduction of air supply from 0.5 vvm to 0.1 vvm increased specific ethanol production rate by 75% and did not affect specific xylose consumption rate. In batch fermentations using various concentrations of xylose (50-104 g/L), higher xylose concentration enhanced xylose consumption rate and ethanol productivity but reduced ethanol yield, owing to the accumulation of xylitol and glycerol from xylose. SX6MUT consumed monosugars in pitch pine hydrolysates and produced 23.1 g/L ethanol from 58.7 g/L sugars with 0.39 g/g ethanol yield, which was 14% higher than the host strain of S. cerevisiae D452-2 without the xylose assimilating enzymes. In conclusion, S. cerevisiae SX6(MUT) was characterized to possess high xylose-consuming ability in microaerobic conditions and a potential for ethanol production from cellulosic biomass. (C) 2016 Elsevier B.V. All rights reserved.
机译:木糖是纤维素生物质中的主要单糖,应用于生产经济高效的乙醇。在这项研究中,重组酿酒酵母SX6MUT的表达NADH优先的木糖还原酶突变体(R276H)和其他木糖代谢酶,以及缺乏醛脱氢酶6(Ald6p)的木糖转化能力使用多种糖混合物进行了表征。将空气供应量从0.5 vvm减少到0.1 vvm,可使乙醇的单位比生产率提高75%,并且不影响特定的木糖消耗率。在使用各种浓度的木糖(50-104 g / L)的分批发酵中,由于木糖中木糖醇和甘油的积累,较高的木糖浓度可提高木糖消耗率和乙醇生产率,但会降低乙醇产量。 SX6MUT在沥青松木水解物中消耗了单糖,并从58.7 g / L糖中产生了23.1 g / L乙醇,乙醇产量为0.39 g / g,这比不含木糖同化酶的酿酒酵母D452-2的宿主菌株高14%。总之,酿酒酵母SX6(MUT)具有在微需氧条件下具有较高的木糖消耗能力,并具有从纤维素生物质生产乙醇的潜力。 (C)2016 Elsevier B.V.保留所有权利。

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