Suppr超能文献

用于生产藏红花醛的工程化微生物共生体。

Engineered Microbial Consortium for Production of Sclareolide.

机构信息

State Key Laboratory of Microbial Technology, Shandong University, No. 72 Binhai Road, Qingdao, Shandong 266237, China.

Angel Yeast Co., Ltd., Yichang, Hubei 443003, China.

出版信息

J Agric Food Chem. 2024 Sep 11;72(36):19977-19984. doi: 10.1021/acs.jafc.4c05506. Epub 2024 Aug 30.

Abstract

Sclareolide, a natural product with bioactive and fragrant properties, is not only utilized in the food, healthcare, and cosmetics industries but also serves as a precursor for the production of ambroxide and some bioactive compounds. Currently, there are three primary methods for producing sclareolide: direct extraction from plants, chemical synthesis using sclareol as a precursor, and the biotransformation of sclareol. Here, we established a platform for producing sclareolide through a modular coculture system with and ATCC 20918. was engineered for sclareol biosynthesis from glucose, while enabled the production of sclareolide via sclareol biotransformation. To enhance the supply of sclareol, a recombinant yeast strain was constructed through metabolic engineering to produce 536.2 mg/L of sclareol. Further improvement of the coculture system for sclareolide production was achieved by incorporating Triton X-100 facilitated intermediate permeability, inoculation proportion adjustment, and culture temperature optimization. These refinements culminated in a sclareolide yield of 626.3 mg/L. This study presents a novel streamlined and efficient approach for sclareolide preparation, showcasing the potential of the microbial consortium in sustainable bioproduction.

摘要

布藜萝内酯是一种具有生物活性和芳香特性的天然产物,不仅应用于食品、保健和化妆品行业,还可用作 Ambroxide 和一些生物活性化合物的前体。目前,生产布藜萝内酯的主要方法有三种:直接从植物中提取、以布藜醇为前体的化学合成,以及布藜醇的生物转化。在这里,我们建立了一个通过与 和 ATCC 20918 的模块化共培养系统生产布藜萝内酯的平台。 被工程化为从葡萄糖合成 布藜萝内酯,而 则通过布藜醇的生物转化来生产布藜萝内酯。为了增加布藜醇的供应,通过代谢工程构建了一株重组酵母菌株,可生产 536.2 mg/L 的布藜醇。通过添加 Triton X-100 以增加中间通透性、调整接种比例和优化培养温度,进一步改进了布藜萝内酯的共培养系统。最终,布藜萝内酯的产量达到 626.3 mg/L。本研究提出了一种新颖的、高效的布藜萝内酯制备方法,展示了微生物共混物在可持续生物生产中的潜力。

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