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利用全局代谢工程策略构建产生芳樟醇的酵母。

Construction of yeast producing patchoulol by global metabolic engineering strategy.

机构信息

Department of Chemical Engineering, Osaka Prefecture University, Osaka, Japan.

出版信息

Biotechnol Bioeng. 2020 May;117(5):1348-1356. doi: 10.1002/bit.27284. Epub 2020 Feb 3.

Abstract

Patchoulol is a sesquiterpene alcohol found in the leaves of the patchouli plant that can be extracted by steam distillation. Notably, patchoulol is an essential natural product frequently used in the chemical industry. However, patchouli produces an insignificant amount of patchoulol, not to mention steam distillation, and requires a lot of energy and time. Recombinant microorganisms that can be cultured in mild conditions and can produce patchoulol from renewable biomass resources may be a promising alternative. We previously developed the global metabolic engineering strategy (GMES), which produces a comprehensive metabolic modification in yeast, using the cocktail δ-integration method. In this study, we aimed to produce patchoulol by modifying engineered yeast. The expression of nine genes involved in patchoulol synthesis was modulated using GMES. Regarding patchoulol production, the resultant strain, YPH499/PAT167/MVA442, showed a concentration of 42.1 mg/L, a production rate of 8.42 mg/L/d, and a yield of 2.05 mg/g-glucose, respectably. These concentration values, production rate, and yield obtained through batch-fermentation in this study were high level when compared to previously reported recombinant microorganism studies. GMES could be used as a potential strategy for producing secondary metabolites from plants in recombinant Saccharomyces cerevisiae.

摘要

广藿香醇是一种倍半萜醇,存在于广藿香植物的叶子中,可以通过水蒸气蒸馏提取。值得注意的是,广藿香醇是一种重要的天然产物,在化学工业中经常使用。然而,广藿香产生的广藿香醇数量微不足道,更不用说水蒸气蒸馏了,而且需要大量的能源和时间。能够在温和条件下培养并能够利用可再生生物质资源生产广藿香醇的重组微生物可能是一种有前途的替代方法。我们之前开发了全球代谢工程策略(GMES),该策略使用鸡尾酒δ整合方法在酵母中产生全面的代谢修饰。在这项研究中,我们旨在通过修饰工程酵母来生产广藿香醇。使用 GMES 调节了参与广藿香醇合成的九个基因的表达。关于广藿香醇的生产,所得菌株 YPH499/PAT167/MVA442 的浓度为 42.1mg/L,生产速率为 8.42mg/L/d,产率为 2.05mg/g-葡萄糖,分别。与之前报道的重组微生物研究相比,本研究通过分批发酵获得的这些浓度值、生产速率和产率均处于较高水平。GMES 可以用作在重组酿酒酵母中从植物生产次生代谢物的潜在策略。

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