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基于UDPG循环系统从酪醇高效合成红景天苷

[Efficient synthesis of salidroside from tyrosol based on UDPG recycling system].

作者信息

Wei Chenyu, Huang Zhuying, Shen Zhixing, Zhang Xian, Rao Zhiming, Hu Xiaoqing, Xu Meijuan

机构信息

Key Laboratory of Industrial Biotechnology of Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, Jiangsu, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2024 Sep 25;40(9):3127-3141. doi: 10.13345/j.cjb.240145.

Abstract

Salidroside is a functional ingredient with wide applications in food and pharmaceutical fields. It is conventionally produced by extraction from plants, the application of which is limited by the scarcity of raw materials and cumbersome process. This study achieved the efficient production of salidroside by biosynthesis with tyrosol as the substrate. While utilizing glycosyltransferases for tyrosol glycosylation, we introduced sucrose synthase to construct the uridine diphosphate glucose (UDPG) recycling system. The glycosyltransferase UGT33 and sucrose synthase SUS were screened out by comparison, and the recombinant strain BL21/pETDuet-- was constructed. The copy number of the gene was optimized and the optimal copy number ratio of glycosyltransferase to sucrose synthase was determined to be 3:1. The whole-cell transformation conditions (temperature, pH, inoculum amount, substrate concentration, and concentrations of metal ions) of the recombinant strain were optimized, and the highest yield of salidroside reached 8.17 g/L after fermentation under the optimal conditions in a 5 L fermenter for 24 h. This study provides a reference for the efficient production of salidroside by microorganisms.

摘要

红景天苷是一种在食品和制药领域有广泛应用的功能性成分。传统上它是通过从植物中提取来生产的,但其应用受到原材料稀缺和工艺繁琐的限制。本研究以酪醇为底物,通过生物合成实现了红景天苷的高效生产。在利用糖基转移酶对酪醇进行糖基化时,我们引入了蔗糖合酶来构建尿苷二磷酸葡萄糖(UDPG)循环系统。通过比较筛选出糖基转移酶UGT33和蔗糖合酶SUS,并构建了重组菌株BL21/pETDuet-。对基因拷贝数进行了优化,确定糖基转移酶与蔗糖合酶的最佳拷贝数比为3:1。对重组菌株的全细胞转化条件(温度、pH、接种量、底物浓度和金属离子浓度)进行了优化,在5 L发酵罐中于最佳条件下发酵24 h后,红景天苷的最高产量达到8.17 g/L。本研究为微生物高效生产红景天苷提供了参考。

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