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Synthetic Biology-Driven Microbial Production of Resveratrol: Advances and Perspectives

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FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.833920

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resveratrol; physiological function; microorganism; metabolic engineering; synthetic biology

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Resveratrol, a bioactive natural product, has attracted much attention in the medicine and health care products fields due to its remarkable biological activities. Recent advances in biosynthesis and strain development have provided a safe and efficient route for large-scale resveratrol production. This review summarizes the physiological functions, market applications, and future prospects of resveratrol.
Resveratrol, a bioactive natural product found in many plants, is a secondary metabolite and has attracted much attention in the medicine and health care products fields due to its remarkable biological activities including anti-cancer, anti-oxidation, anti-aging, anti-inflammation, neuroprotection and anti-glycation. However, traditional chemical synthesis and plant extraction methods are impractical for industrial resveratrol production because of low yield, toxic chemical solvents and environmental pollution during the production process. Recently, the biosynthesis of resveratrol by constructing microbial cell factories has attracted much attention, because it provides a safe and efficient route for the resveratrol production. This review discusses the physiological functions and market applications of resveratrol. In addition, recent significant biotechnology advances in resveratrol biosynthesis are systematically summarized. Furthermore, we discuss the current challenges and future prospects for strain development for large-scale resveratrol production at an industrial level.

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