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首页> 外文期刊>Biotechnology and Bioengineering >Enhancing Fatty Acid Ethyl Ester Production in Saccharomyces Cerevisiae Through Metabolic Engineering and Medium Optimization
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Enhancing Fatty Acid Ethyl Ester Production in Saccharomyces Cerevisiae Through Metabolic Engineering and Medium Optimization

机译:通过代谢工程和培养基优化提高酿酒酵母中脂肪酸乙酯的生产

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摘要

Biodiesels in the form of fatty acyl ethyl esters (FAEEs) are a promising next generation biofuel due to their chemical properties and compatibility with existing infrastructure. It has recently been shown that expression of a bacterial acyl-transferase in the established industrial workhorse Saccharomyces cerevisiae can lead to production of FAEEs by condensation of fatty acyl-CoAs and ethanol. In contrast to recent strategies to produce FAEEs in S. cerevisiae through manipulation of de novo fatty acid biosynthesis or a series of arduous genetic manipulations, we introduced a novel genetic background, which is comparable in titer to previous reports with a fraction of the genetic disruption by aiming at increasing the fatty acyl-CoA pools. In addition, we combined metabolic engineering with modification of culture conditions to produce a maximum titer of over 25 mg/L FAEEs, a 40% improvement over previous reports and a 17-fold improvement over our initial characterizations.
机译:脂肪酰基乙基酯(FAEEs)形式的生物柴油由于其化学性质和与现有基础设施的相容性而成为有前途的下一代生物燃料。最近显示,在已建立的工业主力酿酒酵母中,细菌酰基转移酶的表达可通过脂肪酰基辅酶A和乙醇的缩合导致FAEE的产生。与最近通过操纵从头脂肪酸生物合成或一系列艰巨的遗传操作在酿酒酵母中产生FAEE的策略相反,我们引入了一种新颖的遗传背景,其效价可与以前的报道相提并论,其中一部分是遗传破坏。通过增加脂肪酰基辅酶A库。另外,我们将代谢工程与培养条件的改变相结合,以产生最大滴度超过25 mg / L FAEEs,比以前的报告提高了40%,比我们的最初特性提高了17倍。

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