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利用基因工程酿酒酵母菌株通过埃利希途径提高2-苯乙醇产量。

Improving 2-phenylethanol production via Ehrlich pathway using genetic engineered Saccharomyces cerevisiae strains.

作者信息

Yin Sheng, Zhou Hui, Xiao Xiao, Lang Tiandan, Liang Jingru, Wang Chengtao

机构信息

School of Food and Chemical Engineering, Beijing Technology and Business University, Beijing, China.

出版信息

Curr Microbiol. 2015 May;70(5):762-7. doi: 10.1007/s00284-015-0785-y. Epub 2015 Feb 14.

Abstract

2-phenylethanol (2-PE) is an important aromatic compound with a rose-like fragrance widely used in food industry and cosmetic manufacture. In order to obtain "natural" 2-PE, the genetically modified budding yeasts were developed and applied for the 2-PE production. The gene ARO8 encoding transaminase and the gene ARO10 encoding decarboxylase in the Ehrlich pathway were expressed in Saccharomyces cerevisiae S288c. The activities of transaminase and decarboxylase were both enhanced in the corresponding recombinant strains. Consequently, the 2-PE yield in the recombinant strains with ARO8 and ARO10 were increased by 9.3 and 16.3 %, respectively, than that in the wild strain. A co-expression vector harboring ARO8 and ARO10 was then introduced into S. cerevisiae S288c, generating the recombinant strain SPO810. The fed-batch fermentation results indicated that the 2-PE yield in SPO810 reached 2.61 g L(-1) after 60 h of cultivation, which was 36.8 % higher than that in the wild strain. These results demonstrated that the 2-PE production was significantly improved by enhanced expression of the two key enzymes encoded by ARO8 and ARO10 in the Ehrlich pathway, providing new perspectives for enhancing "natural" 2-PE production in S. cerevisiae.

摘要

2-苯乙醇(2-PE)是一种重要的芳香族化合物,具有玫瑰般的香气,广泛应用于食品工业和化妆品制造。为了获得“天然”的2-苯乙醇,人们开发了转基因酿酒酵母并将其应用于2-苯乙醇的生产。在酿酒酵母S288c中表达了艾氏途径中编码转氨酶的基因ARO8和编码脱羧酶的基因ARO10。相应重组菌株中转氨酶和脱羧酶的活性均得到增强。因此,含有ARO8和ARO10的重组菌株中2-苯乙醇的产量分别比野生菌株提高了9.3%和16.3%。然后将携带ARO8和ARO10的共表达载体导入酿酒酵母S288c,构建了重组菌株SPO810。补料分批发酵结果表明,培养60 h后,SPO810中2-苯乙醇的产量达到2.61 g L(-1),比野生菌株高36.8%。这些结果表明,通过增强艾氏途径中由ARO8和ARO10编码的两种关键酶的表达,2-苯乙醇的产量得到显著提高,为提高酿酒酵母中“天然”2-苯乙醇的产量提供了新的思路。

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