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首页> 外文期刊>Angewandte Chemie >CO2 to Terpenes: Autotrophic and Electroautotrophic alpha-Humulene Production with Cupriavidus necator
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CO2 to Terpenes: Autotrophic and Electroautotrophic alpha-Humulene Production with Cupriavidus necator

机译:CO2至Terpenes:具有Cupriavidus Necator的自养和电营养α-海豚生产

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摘要

We show that CO2 can be converted by an engineered "Knallgas" bacterium (Cupriavidus necator) into the terpene alpha-humulene. Heterologous expression of the mevalonate pathway and alpha-humulene synthase resulted in the production of approximately 10 mg alpha-humulene per gram cell dry mass (CDW) under heterotrophic conditions. This first example of chemolithoautotrophic production of a terpene from carbon dioxide, hydrogen, and oxygen is a promising starting point for the production of different high-value terpene compounds from abundant and simple raw materials. Furthermore, the production system was used to produce 17 mg alpha-humulene per gram CDW from CO2 and electrical energy in microbial electrosynthesis (MES) mode. Given that the system can convert CO2 by using electrical energy from solar energy, it opens a new route to artificial photosynthetic systems.
机译:我们表明CO2可以通过工程化的“knallgas”细菌(Cupriavidus Necator)转换为萜烯α-海豚。 异戊酯途径和α-海豚合酶的异源表达导致在异养的条件下每根克细胞干含量(CDW)产生约10mgα-海豚。 该从二氧化碳,氢气和氧的萜烯的化学纺织营养生产的第一个实施例是从丰富和简单的原料生产不同高价值萜烯化合物的有望起点。 此外,生产系统用于从微生物电气合成(MES)模式中的CO 2和电能产生17mgα-冲压液。 鉴于系统可以通过使用来自太阳能的电能转换CO2,它打开了一种新的人造光合系统。

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