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Production of medium chain length fatty alcohols from glucose in Escherichia coli

机译:在大肠杆菌中由葡萄糖生产中等链长的脂肪醇

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摘要

Metabolic engineering offers the opportunity to produce a wide range of commodity chemicals that are currently derived from petroleum or other non-renewable resources. Microbial synthesis of fatty alcohols is an attractive process because it can control the distribution of chain lengths and utilize low cost fermentation substrates. Specifically, primary alcohols with chain lengths of 12 to 14 carbons have many uses in the production of detergents, surfactants, and personal care products. The current challenge is to produce these compounds at titers and yields that would make them economically competitive. Here, we demonstrate a metabolic engineering strategy for producing fatty alcohols from glucose. To produce a high level of 1-dodecanol and 1-tetradecanol, an acyl-ACP thioesterase (BTE), an acyl-CoA ligase (FadD), and an acyl-CoA/aldehyde reductase (MAACR) were overexpressed in an engineered strain of Escherichia coli. Yields were improved by balancing expression levels of each gene, using a fed-batch cultivation strategy, and adding a solvent to the culture for extracting the product from cells. Using these strategies, a titer of over 1.6 g/L fatty alcohol with a yield of over 0.13 g fatty alcohol / g carbon source was achieved. These are the highest reported yield of fatty alcohols produced from glucose in E. coli.
机译:代谢工程学提供了生产多种目前从石油或其他不可再生资源中提取的商品化学品的机会。脂肪醇的微生物合成是一个有吸引力的过程,因为它可以控制链长的分布并利用低成本的发酵底物。具体而言,链长为12至14个碳的伯醇在洗涤剂,表面活性剂和个人护理产品的生产中有许多用途。当前的挑战是要以滴度和产量生产这些化合物,使其具有经济竞争力。在这里,我们演示了从葡萄糖生产脂肪醇的代谢工程策略。为了生产高水平的1-十二烷醇和1-十四烷醇,在A.A.的工程菌株中过表达了AAC酰基-ACP酰基酯,CoA连接性FacD和AAC /醛还原酶。大肠杆菌。通过使用分批补料培养策略平衡每个基因的表达水平,并向培养物中添加溶剂以从细胞中提取产物,可以提高产量。使用这些策略,可获得超过1.6 g / L脂肪醇的滴定度,产量超过0.13 g脂肪醇/ g碳源。这些是从大肠杆菌中葡萄糖产生的脂肪醇的最高报道产率。

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