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高效甜菊糖 Rebaudioside A 转化系统和体外酶分析揭示 UGT76G1 功能的新见解。

An Efficient Stevia rebaudiana Transformation System and In vitro Enzyme Assays Reveal Novel Insights into UGT76G1 Function.

机构信息

Department of Crop and Soil Sciences, North Carolina State University, Raleigh, NC, 27695, USA.

Elo Life Systems, 3054 East Cornwallis Road, Durham, NC, 27709, USA.

出版信息

Sci Rep. 2020 Feb 28;10(1):3773. doi: 10.1038/s41598-020-60776-y.

Abstract

Stevia rebaudiana (Bertoni) is one of a very few plant species that produce zero calorie, sweet compounds known as steviol glycosides (SG). SGs differ in their sweetness and organoleptic properties depending on the number and positioning of sugar groups on the core steviol backbone. There is great interest of modulating the SG profiles of the Stevia plant to enhance the flavor profile for a given application in the food and beverage industries. Here, we report a highly efficient Agrobacterium-mediated stable transformation system using axillary shoots as the initial explant. Using this system, we generated over 200 transgenic Stevia plants overexpressing a specific isoform of UGT76G1. By comparing the SG profiles among independent transgenic events, we demonstrated that altering UGT76G1 expression can change the ratios of specific SG species. Furthermore, using recombinant proteins produced in E. coli, we show that two closely related UGT76G1 isoforms differ in their substrate specificities, providing new insights into mechanisms underlying the diversity of SG profiles that are observed across Stevia germplasm. Finally, we found evidence suggesting that alternative and/or aberrant splicing may serve to influence the ability of the plant to produce functional UGT76G1 transcripts, and possibly produce enzyme variants within the plant.

摘要

甜菊(Bertoni)是极少数能产生零卡路里、甜味化合物的植物物种之一,这些化合物被称为甜菊糖苷(SG)。SG 的甜度和感官特性因核心甜菊醇骨架上糖基的数量和位置而异。人们对调节甜菊植物的 SG 图谱很感兴趣,以增强食品和饮料行业中特定应用的风味特征。在这里,我们报告了一种使用腋芽作为初始外植体的高效农杆菌介导的稳定转化系统。使用该系统,我们生成了超过 200 株过表达特定 UGT76G1 同工型的转基因甜菊植物。通过比较独立转基因事件之间的 SG 图谱,我们证明改变 UGT76G1 的表达可以改变特定 SG 物种的比例。此外,使用在大肠杆菌中产生的重组蛋白,我们表明两种密切相关的 UGT76G1 同工型在底物特异性上存在差异,为观察到的甜菊种质中 SG 图谱多样性的机制提供了新的见解。最后,我们发现有证据表明,选择性剪接或异常剪接可能会影响植物产生功能性 UGT76G1 转录本的能力,并可能在植物内产生酶变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f215/7048785/1df7aae41267/41598_2020_60776_Fig1_HTML.jpg

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