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Kinetic modeling of free fatty acid production in Escherichia coli based on continuous cultivation of a plasmid free strain

机译:基于无质粒菌株连续培养的大肠杆菌中游离脂肪酸生成的动力学模型

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摘要

The microbial production of free fatty acids (FFAs) and reduced derivatives is an attractive process for the renewable production of diesel fuels. Toward this goal, a plasmid-free strain of Escherichia coli was engineered to produce FFAs by integrating three copies of a thioesterase gene from Umbellularia californica (BTE) under the control of an inducible promoter onto the chromosome. In batch culture, the resulting strain produced identical titers to a previously reported strain that expressed the thioesterase from a plasmid. The growth rate, glucose consumption rate, and FFA production rate of this strain were studied in continuous cultivation under carbon limitation. The highest yield of FFA on glucose was observed at a dilution rate of 0.05h ~(-1) with the highest specific productivity observed at a dilution rate of 0.2h ~(-1). The observed yields under the lowest dilution rate were 15% higher than that observed in batch cultures. An increase in both productivity and yield (~40%) was observed when the composition of the nutrients was altered to shift the culture toward non-carbon limitation. A deterministic model of the production strain has been proposed and indicates that maintenance requirements for this strain are significantly higher than wild-type E. coli.
机译:微生物生产游离脂肪酸(FFA)和还原的衍生物是可再生生产柴油燃料的有吸引力的方法。为了实现这一目标,通过在诱导型启动子的控制下,将三份来自加州伞形目(Bmallum californica,BTE)的硫酯酶基因拷贝整合到染色体上,对无质粒大肠杆菌进行了工程改造,以产生FFA。在分批培养中,所得菌株产生的滴度与先前报道的从质粒表达硫酯酶的菌株相同。研究了在碳限制下连续培养该菌株的生长速率,葡萄糖消耗速率和FFA产生速率。在0.05h〜(-1)的稀释率下观察到FFA在葡萄糖上的最高产量,而在0.2h〜(-1)的稀释率下观察到最高的比生产率。在最低稀释率下观察到的产量比分批培养物中观察到的产量高15%。当改变营养成分以使培养物向无碳限制的方向转变时,观察到生产率和产量均增加(约40%)。已经提出了生产菌株的确定性模型,该模型表明该菌株的维持要求明显高于野生型大肠杆菌。

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