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高温下木质纤维原料生产乙醇过程中基因工程酿酒酵母基因表达的比较分析。

Gene expression cross-profiling in genetically modified industrial Saccharomyces cerevisiae strains during high-temperature ethanol production from xylose.

机构信息

Department of Chemical Science and Engineering, Graduate School of Engineering, Kobe University, Nada, Kobe 657-8501, Japan.

出版信息

J Biotechnol. 2013 Jan 10;163(1):50-60. doi: 10.1016/j.jbiotec.2012.10.017. Epub 2012 Nov 3.

Abstract

Production of ethanol from xylose at high temperature would be an economical approach since it reduces risk of contamination and allows both the saccharification and fermentation steps in SSF to be running at elevated temperature. Eight recombinant xylose-utilizing Saccharomyces cerevisiae strains developed from industrial strains were constructed and subjected to high-temperature fermentation at 38 °C. The best performing strain was sun049T, which produced up to 15.2 g/L ethanol (63% of the theoretical production), followed by sun048T and sun588T, both with 14.1 g/L ethanol produced. Via transcriptomic analysis, expression profiling of the top three best ethanol producing strains compared to a negative control strain, sun473T, led to the discovery of genes in common that were regulated in the same direction. Identification of the 20 most highly up-regulated and the 20 most highly down-regulated genes indicated that the cells regulate their central metabolism and maintain the integrity of the cell walls in response to high temperature. We also speculate that cross-protection in the cells occurs, allowing them to maintain ethanol production at higher concentration under heat stress than the negative controls. This report provides further transcriptomics information in the interest of producing a robust microorganism for high-temperature ethanol production utilizing xylose.

摘要

在高温下从木糖生产乙醇将是一种经济的方法,因为它降低了污染的风险,并允许 SSF 中的糖化和发酵步骤在高温下运行。从工业菌株中构建了 8 株重组木糖利用酿酒酵母菌株,并在 38°C 下进行高温发酵。表现最好的菌株是 sun049T,可生产高达 15.2 g/L 的乙醇(理论产量的 63%),其次是 sun048T 和 sun588T,两者均生产 14.1 g/L 的乙醇。通过转录组分析,将前三种产乙醇能力最强的菌株与阴性对照菌株 sun473T 的表达谱进行比较,发现了共同调节的基因。鉴定出 20 个上调表达最多和 20 个下调表达最多的基因表明,细胞调节其中心代谢并保持细胞壁的完整性以应对高温。我们还推测细胞中存在交叉保护,使它们能够在高温应激下比阴性对照保持更高浓度的乙醇生产。本报告提供了进一步的转录组学信息,旨在生产一种利用木糖进行高温乙醇生产的稳健微生物。

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