Development of a Golden Gate Assembly-Based Genetic Toolbox for Lactiplantibacillus plantarum and Its Application for Engineering Monoterpenoid Biosynthesis

工具箱 合成生物学 代谢工程 益生菌 植物乳杆菌 生物合成 有机体 计算生物学 食品加工 生物技术 生物 生化工程 食品科学 细菌 计算机科学 乳酸 遗传学 基因 工程类 程序设计语言
作者
Xiangang Li,Pascal Y. Schönberg,T. Wucherpfennig,Christoph Hinze,Flavia Sulaj,Thomas Henle,Thorsten Mascher
出处
期刊:ACS Synthetic Biology [American Chemical Society]
卷期号:13 (9): 2764-2779 被引量:2
标识
DOI:10.1021/acssynbio.4c00075
摘要

Lactiplantibacillus plantarum is a food-grade lactic acid bacterium widely used in the food and beverage industry. Recently, this probiotic organism has been applied as a biofactory for the production of pharmaceutical and food-related compounds, but existing promoters and expression vectors for the genetic engineering of L. plantarum rely on inefficient cloning strategies and are usually not well-characterized. We therefore developed a modular and standardized Golden Gate Assembly-based toolbox for the de novo assembly of shuttle vectors from Escherichia coli to L. plantarum. A collection of the most relevant genetic parts, e.g., different origins of replication and promoters, was incorporated in our toolbox and thoroughly characterized by flow cytometry and the fluorescence assay. Standardized fusion sites allow combining the genetic part freely into a plasmid in one step. This approach allows for the high-throughput assembly of numerous constructs in a standardized genetic context, thus improving the efficiency and predictability of metabolic engineering in L. plantarum. Using our toolbox, we were able to produce the aroma compounds linalool and geraniol in L. plantarum by extending its native mevalonate pathway with plant-derived monoterpenoid synthases.
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