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Combinatorial Engineering of Yarrowia lipolytica as a Promising Cell Biorefinery Platform for the de novo Production of Multi-Purpose Long Chain Dicarboxylic Acids

机译:解脂耶氏酵母作为有希望的细胞生物精制平台的组合工程,用于从头生产多用途长链二元羧酸

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This proof-of-concept study establishes Yarrowia lipolytica ( Y. lipolytica ) as a whole cell factory for the de novo production of long chain dicarboxylic acid (LCDCA-16 and 18) using glycerol as the sole source of carbon. Modification of the fatty acid metabolism pathway enabled creating a pool of fatty acids in a β-oxidation deficient strain. We then selectively upregulated the native fatty acid ω-oxidation pathway for the enhanced terminal oxidation of the endogenous fatty acid precursors. Nitrogen-limiting conditions and leucine supplementation were employed to induce fatty acid biosynthesis in an engineered Leu ? modified strain. Our genetic engineering strategy allowed a minimum production of 330 mg/L LCDCAs in shake flask. Scale up to a 1-L bioreactor increased the titer to 3.49 g/L. Our engineered yeast also produced citric acid as a major by-product at a titer of 39.2 g/L. These results provide basis for developing Y. lipolytica as a safe biorefinery platform for the sustainable production of high-value LCDCAs from non-oily feedstock.
机译:这项概念验证研究建立了解脂耶氏酵母(Yarrowia lipolytica)作为整个细胞工厂,以甘油为唯一碳源从头生产长链二元羧酸(LCDCA-16和18)。脂肪酸代谢途径的修饰使得能够在β-氧化缺陷型菌株中产生脂肪酸池。然后,我们选择性地上调天然脂肪酸ω-氧化途径,以增强内源性脂肪酸前体的末端氧化。氮限制条件和亮氨酸补充被用于诱导工程亮氨酸中的脂肪酸生物合成。改良菌株。我们的基因工程策略允许摇瓶中最低生产330 mg / L LCDCA。放大至1 L生物反应器可使效价提高至3.49 g / L。我们的工程酵母还以39.2 g / L的滴度生产柠檬酸作为主要副产物。这些结果为开发解脂耶氏酵母作为一种安全的生物精炼平台提供了基础,该平台可从非油性原料可持续生产高价值的LCDCA。

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