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通过漆酶的异源表达开发一种对木质纤维素水解产物中酚类发酵抑制剂具有增强抗性的酿酒酵母菌株。

Development of a Saccharomyces cerevisiae strain with enhanced resistance to phenolic fermentation inhibitors in lignocellulose hydrolysates by heterologous expression of laccase.

作者信息

Larsson S, Cassland P, Jönsson L J

机构信息

Department of Applied Microbiology, Lund University, SE-221 00 Lund, Sweden.

出版信息

Appl Environ Microbiol. 2001 Mar;67(3):1163-70. doi: 10.1128/AEM.67.3.1163-1170.2001.

Abstract

To improve production of fuel ethanol from renewable raw materials, laccase from the white rot fungus Trametes versicolor was expressed under control of the PGK1 promoter in Saccharomyces cerevisiae to increase its resistance to phenolic inhibitors in lignocellulose hydrolysates. It was found that the laccase activity could be enhanced twofold by simultaneous overexpression of the homologous t-SNARE Sso2p. The factors affecting the level of active laccase obtained, besides the cultivation temperature, included pH and aeration. Laccase-expressing and Sso2p-overexpressing S. cerevisiae was cultivated in the presence of coniferyl aldehyde to examine resistance to lignocellulose-derived phenolic fermentation inhibitors. The laccase-producing transformant had the ability to convert coniferyl aldehyde at a faster rate than a control transformant not expressing laccase, which enabled faster growth and ethanol formation. The laccase-producing transformant was also able to ferment a dilute acid spruce hydrolysate at a faster rate than the control transformant. A decrease in the content of low-molecular-mass aromatic compounds, accompanied by an increase in the content of high-molecular-mass compounds, was observed during fermentation with the laccase-expressing strain, illustrating that laccase was active even at the very low levels of oxygen supplied. Our results demonstrate the importance of phenolic compounds as fermentation inhibitors and the advantage of using laccase-expressing yeast strains for producing ethanol from lignocellulose.

摘要

为了提高利用可再生原料生产燃料乙醇的效率,将来自白腐真菌云芝的漆酶在酿酒酵母中PGK1启动子的控制下进行表达,以增强其对木质纤维素水解产物中酚类抑制剂的抗性。研究发现,通过同时过表达同源t-SNARE蛋白Sso2p,漆酶活性可提高两倍。除培养温度外,影响活性漆酶产量的因素还包括pH值和通气情况。在松柏醛存在的条件下培养表达漆酶和过表达Sso2p的酿酒酵母,以检测其对木质纤维素衍生的酚类发酵抑制剂的抗性。产生漆酶的转化体比不表达漆酶的对照转化体能够更快地转化松柏醛,这使得其生长和乙醇形成速度更快。产生漆酶的转化体发酵稀酸云杉水解产物的速度也比对照转化体快。在用表达漆酶的菌株进行发酵的过程中,观察到低分子量芳香族化合物含量降低,同时高分子量化合物含量增加,这表明即使在供应的氧气水平非常低的情况下,漆酶仍然具有活性。我们的结果证明了酚类化合物作为发酵抑制剂的重要性,以及使用表达漆酶的酵母菌株从木质纤维素生产乙醇的优势。

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