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生物技术在白藜芦醇生产及其化学多样性方面的进展。

Biotechnological Advances in Resveratrol Production and its Chemical Diversity.

机构信息

Department of Life Science and Biochemical Engineering, Sun Moon University, Chungnam 31460, Korea.

Department of Pharmaceutical Engineering and Biotechnology, Sun Moon University, Chungnam 31460, Korea.

出版信息

Molecules. 2019 Jul 15;24(14):2571. doi: 10.3390/molecules24142571.

Abstract

The very well-known bioactive natural product, resveratrol (3,5,4'-trihydroxystilbene), is a highly studied secondary metabolite produced by several plants, particularly grapes, passion fruit, white tea, and berries. It is in high demand not only because of its wide range of biological activities against various kinds of cardiovascular and nerve-related diseases, but also as important ingredients in pharmaceuticals and nutritional supplements. Due to its very low content in plants, multi-step isolation and purification processes, and environmental and chemical hazards issues, resveratrol extraction from plants is difficult, time consuming, impracticable, and unsustainable. Therefore, microbial hosts, such as , , and , are commonly used as an alternative production source by improvising resveratrol biosynthetic genes in them. The biosynthesis genes are rewired applying combinatorial biosynthetic systems, including metabolic engineering and synthetic biology, while optimizing the various production processes. The native biosynthesis of resveratrol is not present in microbes, which are easy to manipulate genetically, so the use of microbial hosts is increasing these days. This review will mainly focus on the recent biotechnological advances for the production of resveratrol, including the various strategies used to produce its chemically diverse derivatives.

摘要

非常著名的生物活性天然产物白藜芦醇(3,5,4'-三羟基二苯乙烯)是一种由多种植物,特别是葡萄、西番莲、白茶和浆果产生的高度研究的次生代谢产物。它的需求很高,不仅因为它对各种心血管和神经相关疾病具有广泛的生物活性,还因为它是药物和营养补充剂的重要成分。由于其在植物中的含量非常低,需要经过多步分离和纯化过程,以及存在环境和化学危害问题,因此从植物中提取白藜芦醇既困难又耗时,不切实际且不可持续。因此,微生物宿主,如、、和,通常被用作替代生产源,通过在其中改进白藜芦醇生物合成基因来实现。通过组合生物合成系统,包括代谢工程和合成生物学,对白藜芦醇生物合成基因进行重布线,同时优化各种生产工艺。微生物中不存在白藜芦醇的天然生物合成,它们很容易进行基因操作,因此微生物宿主的使用正在增加。本文主要综述了近年来生产白藜芦醇的生物技术进展,包括用于生产其化学多样性衍生物的各种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8227/6680439/457164d205a3/molecules-24-02571-g001.jpg

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