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Combining metabolic engineering and process optimization to improve production and secretion of fatty acids

机译:将代谢工程与工艺优化相结合,以提高脂肪酸的生产和分泌

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摘要

Microbial oils are sustainable alternatives to petroleum for the production of chemicals and fuels. Oleaginous yeasts are promising source of oils and Yarrowia lipolytica is the most studied and engineered one. Nonetheless the commercial production of biolipids is so far limited to high value products due to the elevated production and extraction costs. In order to contribute to overcoming these limitations we exploited the possibility of secreting lipids to the culture broth, uncoupling production and biomass formation and facilitating the extraction. We therefore considered two synthetic approaches, Strategy I where fatty acids are produced by enhancing the flux through neutral lipid formation, as typically occurs in eukaryotic systems and Strategy II where the bacterial system to produce free fatty acids is mimicked. The engineered strains, in a coupled fermentation and extraction process using alkanes, secreted the highest titer of lipids described so far, with a content of 120% of DCW. (C) 2016 The Authors. Published by Elsevier Inc. On behalf of International Metabolic Engineering Society.
机译:微生物油是用于生产化学品和燃料的石油的可持续替代品。含油酵母是有前途的油脂来源,解脂耶氏酵母是研究最多和设计最多的一种。然而,由于增加的生产和提取成本,到目前为止,生物脂的商业生产仅限于高价值产品。为了有助于克服这些局限性,我们利用了向培养液中分泌脂质,解偶联生产和生物质形成并促进提取的可能性。因此,我们考虑了两种合成方法:策略I(通过在中性脂质系统中增强通过中性脂质形成的通量来生产脂肪酸)和策略II(在策略II中模拟产生游离脂肪酸的细菌系统)。经过工程改造的菌株,在使用烷烃进行的发酵和提取的耦合过程中,分泌了迄今为止描述的最高滴度的脂质,含量为DCW的120%。 (C)2016作者。由Elsevier Inc.发行,代表国际代谢工程学会。

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