4.7 Article

Optimizing Eicosapentaenoic Acid Production by Grafting a Heterologous Polyketide Synthase Pathway in the Thraustochytrid Aurantiochytrium

期刊

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 68, 期 40, 页码 11253-11260

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.0c04299

关键词

2A peptide; Aurantiochytrium; eicosapentaenoic acid; polyketide synthase; polyunsaturated fatty acids

资金

  1. National Key Research and Development Program [2019YFD0901904, 2016YFA0601400]
  2. Major Program of Shandong Province Natural Science Foundation [ZR2018ZB0208]
  3. Key Research and Development Program of Shandong Province [2019GHY112006, 2019YYSP003]
  4. Key Deployment Project of Centre for Ocean Mega-Research of Science, Chinese Academy of Science [COMS2019J07]
  5. Qingdao source innovation program applied basic research project [18-2-2-50-jch]
  6. QIBEBT [QIBEBT I201933]

向作者/读者索取更多资源

Eicosapentaenoic acid (EPA) is an essential nutritional supplement for human health. The most prominent dietary source of EPA is fish oil, which is unsustainable because of the decline in fishery resources and serious environmental pollution. Alternatively, a heterologous polyketide synthase pathway for EPA biosynthesis was assembled in Thraustochytrid Aurantiochytrium. A 2A peptide-based facile assembly platform that can achieve multigene expression as a polycistron was first established. The platform was then applied to express the EPA biosynthetic gene cluster from Shewanella japonica in Aurantiochytrium. In the shake flask fermentation, the lipid and PUFA yields of the mutant were increased by 26.9 and 36.0%, respectively, and led to about 5-fold increase of the EPA yield. The final EPA titer reached 2.7 g/L in fed-batch fermentation. This study provides a novel metabolic engineering strategy to regulate the EPA ratio in microalgal oil for human nutritional supplementation.

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