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甜菊糖苷全合成的合理设计 。 (你提供的原文似乎不完整,最后的“in.”后面应该还有具体内容)

Rational Design for the Complete Synthesis of Stevioside in .

作者信息

Huang Wei, Liu Yongheng, Ma Xiaomei, Ma Cilang, Jiang Yuting, Su Jianyu

机构信息

School of Life Science, Ning Xia University, Yinchuan 750000, China.

出版信息

Microorganisms. 2024 May 31;12(6):1125. doi: 10.3390/microorganisms12061125.

Abstract

Stevioside is a secondary metabolite of diterpenoid glycoside production in plants. It has been used as a natural sweetener in various foods because of its high sweetness and low-calorie content. In this study, we constructed a strain for the complete synthesis of stevioside using a metabolic engineering strategy. Firstly, the synthesis pathway of steviol was modularly constructed in BY4742, and the precursor pathway was strengthened. The yield of steviol was used as an indicator to investigate the expression effect of different sources of diterpene synthases under different combinations, and the strains with further improved steviol yield were screened. Secondly, glycosyltransferases were heterologously expressed in this strain to produce stevioside, the sequence of glycosyltransferase expression was optimized, and the uridine diphosphate-glucose (UDP-Glc) supply was enhanced. Finally, the results showed that the strain SST-302III-ST2 produced 164.89 mg/L of stevioside in a shake flask experiment, and the yield of stevioside reached 1104.49 mg/L in an experiment employing a 10 L bioreactor with batch feeding, which was the highest yield reported. We constructed strains with a high production of stevioside, thus laying the foundation for the production of other classes of steviol glycosides and holding good prospects for application and promotion.

摘要

甜菊糖苷是植物中双萜糖苷生产的次生代谢产物。由于其高甜度和低热量含量,它已被用作各种食品中的天然甜味剂。在本研究中,我们采用代谢工程策略构建了一株用于完全合成甜菊糖苷的菌株。首先,在BY4742中模块化构建了甜菊醇的合成途径,并强化了前体途径。以甜菊醇产量为指标,研究不同来源的双萜合酶在不同组合下的表达效果,筛选出甜菊醇产量进一步提高的菌株。其次,在该菌株中异源表达糖基转移酶以生产甜菊糖苷,优化糖基转移酶的表达序列,并增强尿苷二磷酸 - 葡萄糖(UDP - Glc)的供应。最后,结果表明,菌株SST - 302III - ST2在摇瓶实验中产生了164.89 mg/L的甜菊糖苷,在采用10 L生物反应器分批补料的实验中甜菊糖苷产量达到1104.49 mg/L,这是报道的最高产量。我们构建了高产甜菊糖苷的菌株,从而为其他类甜菊醇糖苷的生产奠定了基础,并具有良好的应用和推广前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04f0/11206123/e91d99e0c682/microorganisms-12-01125-g001.jpg

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