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Obtaining High-Purity Docosahexaenoic Acid Oil in Thraustochytrid <i>Aurantiochytrium</i> through a Combined Metabolic Engineering Strategy

Zhuojun Wang, Sen Wang, Yingang Feng, Weijian Wan, Huidan Zhang, Xinfeng Bai, Qiu Cui, Xiaojin Song

2021Journal of Agricultural and Food Chemistry50 citationsDOI

Abstract

High-purity docosahexaenoic acid (DHA) resources are insufficient in the pharmaceutical and food industries. Although many efforts have attempted to obtain the high-purity DHA production, few reports have been successful. Here, a combined metabolic engineering strategy was employed to increase the DHA purity in the oleaginous thraustochytrid Aurantiochytrium. The strategy includes both partial deactivation of the competing pathway of DHA biosynthesis, by disrupting one copy of the fatty acid synthase gene, and strengthening of substrate supply and triacylglycerol synthesis, by the overexpression of acetyl-CoA carboxylase and diacylglycerol acyltransferase. With this strategy, a final mutant was obtained with a DHA purity of 61% in total fatty acids and a content of 331 mg/g dry cell weight. This study provides an advanced strategy for sustainable high-purity DHA production and highlights the strategy for producing designer oils in industrial oleaginous microorganisms.

Topics & Concepts

Docosahexaenoic acidMetabolic engineeringBiochemistryFood scienceChemistryPolyunsaturated fatty acidBiosynthesisFatty acidEnzymeLipid metabolism and biosynthesisEnzyme Catalysis and ImmobilizationMicrobial Metabolic Engineering and Bioproduction
Obtaining High-Purity Docosahexaenoic Acid Oil in Thraustochytrid <i>Aurantiochytrium</i> through a Combined Metabolic Engineering Strategy | Litcius