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Genetic Engineering of Inhibitor-Tolerant Saccharomyces cerevisiae for Improved Xylose Utilization in Ethanol Production

机译:耐受性酿酒酵母的遗传工程可提高乙醇生产中木糖的利用率

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摘要

For economical lignocellulose-to-ethanol production, a desirable biocatalyst should tolerate inhibitors derived from preteatment of lignocellulose and be able to utilize heterogeneous biomass sugars of hexoses and pentoses. Previously, we developed an inhibitor-tolerant Saccharomyces cerevisiae strain NRRL Y-50049 that is able to in situ detoxify common aldehyde inhibitors such as 2-furaldehyde (furfural) and 5-(hydroxymethyl)-2-furaldehyde (HMF). In this study, we genetically engineered Y-50049 to enable and enhance its xylose utilization capability. A codon-optimized xylose isomerase gene for yeast (YXI) was synthesized and introduced into a defined chromosomal locus of Y-50049. Two newly identified xylose transport related genes XUT4 and XUT6, and previously reported xylulokinase gene (XKS1), and xylitol dehydrogenase gene (XYL2) from Scheffersomyces stipitis were also engineered into the yeast resulting in strain NRRL Y-50463. The engineered strain was able to grow on xylose as sole carbon source and a minimum ethanol production of 38.6 g l−1 was obtained in an anaerobic fermentation on mixed sugars of glucose and xylose in the presence of furfural and HMF.
机译:为了经济地生产木质纤维素到乙醇,理想的生物催化剂应能耐受木质纤维素预处理产生的抑制剂,并能够利用己糖和戊糖的异质生物质糖。以前,我们开发了一种耐抑制剂的酿酒酵母菌株NRRL Y-50049,该菌株能够原位解毒常见的醛类抑制剂,例如2-糠醛(糠醛)和5-(羟甲基)-2-糠醛(HMF)。在这项研究中,我们对Y-50049进行了基因工程改造,以增强其木糖利用能力。合成了用于酵母(YXI)的密码子优化的木糖异构酶基因,并将其引入到Y-50049的确定染色体位点中。两个新发现的与木糖运输相关的基因XUT4和XUT6,以及先前报道的裂殖酵母中木酮糖激酶基因(XKS1)和木糖醇脱氢酶基因(XYL2)也被工程化到酵母中,产生了NRRL Y-50463菌株。该工程菌株能够在木糖作为唯一碳源的条件下生长,并且在糠醛和HMF的存在下,在葡萄糖和木糖的混合糖上进行厌氧发酵后,乙醇的最低产量为38.6 g-1。

著录项

  • 来源
    《Bioenergy research》 |2012年第2期|459-469|共11页
  • 作者单位

    1.Bioenergy Research Unit National Center for Agricultural Utilization Research U.S. Department of Agriculture—Agricultural Research Service 1815 N University Street Peoria IL 61604 USA 2.Department of Microbiology College of Resource and Environmental Sciences Sichuan Agricultural University Wenjiang 611130 People’s Republic of China;

    1.Bioenergy Research Unit National Center for Agricultural Utilization Research U.S. Department of Agriculture—Agricultural Research Service 1815 N University Street Peoria IL 61604 USA;

    1.Bioenergy Research Unit National Center for Agricultural Utilization Research U.S. Department of Agriculture—Agricultural Research Service 1815 N University Street Peoria IL 61604 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cellulosic ethanol Glucose–xylose co-fermentation Metabolic engineering Xylose utilization;

    机译:纤维素乙醇葡萄糖-木糖共发酵代谢工程木糖利用;

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