Recent Advances in the Metabolic Engineering of Yeasts for Ginsenoside Biosynthesis

Ginsenosides are a group of glycosylated triterpenes isolated from species. Ginsenosides are promising candidates for the prevention and treatment of cancer as well as food additives. However, owing to a lack of efficient approaches for ginsenoside production from plants and chemical synthesis, gins...

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Veröffentlicht in:Frontiers in bioengineering and biotechnology 2020-02, Vol.8, p.139-139
Hauptverfasser: Chu, Luan Luong, Montecillo, Jake Adolf V, Bae, Hanhong
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Sprache:eng
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Zusammenfassung:Ginsenosides are a group of glycosylated triterpenes isolated from species. Ginsenosides are promising candidates for the prevention and treatment of cancer as well as food additives. However, owing to a lack of efficient approaches for ginsenoside production from plants and chemical synthesis, ginsenosides may not yet have reached their full potential as medicinal resources. In recent years, an alternative approach for ginsenoside production has been developed using the model yeast and non-conventional yeasts such as and . In this review, various metabolic engineering strategies, including heterologous gene expression, balancing, and increasing metabolic flux, and enzyme engineering, have been described as recent advanced engineering techniques for improving ginsenoside production. Furthermore, the usefulness of a systems approach and fermentation strategy has been presented. Finally, the present challenges and future research direction for industrial cell factories have been discussed.
ISSN:2296-4185
2296-4185
DOI:10.3389/fbioe.2020.00139