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Engineering Escherichia coli for the production of terpene mixture enriched in caryophyllene and caryophyllene alcohol as potential aviation fuel compounds

机译:工程大肠杆菌用于生产富含作为潜在航空燃料化合物的石竹烯和石竹烯醇的萜烯混合物

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摘要

Recent studies have revealed that caryophyllene and its stereoisomers not only exhibit multiple biological activities but also have desired properties as renewable candidates for ground transportation and jet fuel applications. This study presents the first significant production of caryophyllene and caryolan-1-ol by an engineered E. coli with heterologous expression of mevalonate pathway genes with a caryophyllene synthase and a caryolan-1-ol synthase. By optimizing metabolic flux and fermentation parameters, the engineered strains yielded 449 mg/L of total terpene, including 406 mg/L sesquiterpene with 100 mg/L caryophyllene and 10 mg/L caryolan-1-ol. Furthermore, a marine microalgae hydrolysate was used as the sole carbon source for the production of caryophyllene and other terpene compounds. Under the optimal fermentation conditions, 360 mg/L of total terpene, 322 mg/L of sesquiterpene, and 75 mg/L caryophyllene were obtained from the pretreated algae hydrolysates. The highest yields achieved on the biomass basis were 48 mg total terpene/g algae and 10 mg caryophyllene/g algae and the caryophyllene yield is approximately ten times higher than that from plant tissues by solvent extraction. The study provides a sustainable alternative for production of caryophyllene and its alcohol from microalgae biomass as potential candidates for next generation aviation fuels.
机译:最近的研究表明,石竹烯及其立体异构体不仅具有多种生物活性,而且还具有作为地面运输和喷气燃料应用的可再生候选物所需的特性。这项研究提出了一种工程化的大肠杆菌首次显着地生产出石竹烯和石竹烯-1-醇,并带有石竹烯合酶和石竹烯-1-醇合酶的甲羟戊酸途径基因的异源表达。通过优化代谢通量和发酵参数,工程菌株产生了449 mg / L的总萜烯,包括406 mg / L的倍半萜与100 mg / L的石竹烯和10 mg / L的Caryolan-1-ol。此外,海洋微藻水解产物被用作生产石竹烯和其他萜烯化合物的唯一碳源。在最佳发酵条件下,从预处理的藻类水解产物中获得了360 mg / L的总萜烯,322 mg / L的倍半萜烯和75 mg / L的石竹烯。以生物质为基础的最高产量为48 mg总萜烯/ g藻类和10 mg石竹烯/ g藻类,并且通过溶剂提取法获得的石竹烯产量比植物组织高约十倍。该研究为从微藻类生物质生产石竹烯及其醇类提供了一种可持续的替代方法,作为下一代航空燃料的潜在候选者。

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