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Heterologous production of pentane in the oleaginous yeast Yarrowia lipolytica

机译:产油酵母解脂耶氏酵母中异戊烷的产生

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The complete biosynthetic replacement of petroleum transportation fuels requires a metabolic pathway capable of producing short chain n-alkanes. Here, we report and characterize a proof-of-concept pathway that enables microbial production of the C-5 n-alkane, pentane. This pathway utilizes a soybean lipoxygenase enzyme to cleave linoleic acid to pentane and a tridecadienoic acid byproduct. Initial expression of the soybean lipoxygenase enzyme within a Yarrowia lipolytica host yielded 1.56 mg/L pentane. Efforts to improve pentane yield by increasing substrate availability and strongly overexpressing the lipoxygenase enzyme successfully increased pentane production three-fold to 4.98 mg/L. This work represents the first-ever microbial production of pentane and demonstrates that short chain n-alkane synthesis is conceivable in model cellular hosts. In this regard, we demonstrate the potential pliability of Y. lipolytica toward the biosynthetic production of value-added molecules from its generous fatty acid reserves
机译:石油运输燃料的完全生物合成替代需要能够产生短链正构烷烃的代谢途径。在这里,我们报告并表征概念验证途径,使微生物能够生产C-5正构烷烃,戊烷。该途径利用大豆脂氧合酶将亚油酸裂解为戊烷和十三碳二烯酸副产物。在解脂耶氏酵母宿主中大豆脂氧合酶的初始表达产生1.56mg / L的戊烷。通过增加底物利用率和强烈过量表达脂氧合酶来提高戊烷产量的努力成功地将戊烷产量提高了三倍,达到4.98 mg / L。这项工作代表了戊烷的首次微生物生产,并证明了在模型细胞宿主中短链正构烷烃的合成是可行的。在这方面,我们证明了解脂耶氏酵母对从其大量脂肪酸储备中生物合成增值分子的潜在柔韧性

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