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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >An auto-inducible Escherichia coli strain obtained by adaptive laboratory evolution for fatty acid synthesis from ionic liquid-treated bamboo hydrolysate
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An auto-inducible Escherichia coli strain obtained by adaptive laboratory evolution for fatty acid synthesis from ionic liquid-treated bamboo hydrolysate

机译:通过适应性实验室进化从离子液体处理的竹水解产物合成脂肪酸而获得的自诱导大肠杆菌菌株

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摘要

Adaptive laboratory evolution (ALE) is a useful metabolic engineering strategy, which allows the selection of the microorganisms with beneficial phenotype through accumulative beneficial mutations among genetic variations occurrencely. Following ALE strategy, a rational constructed Escherichia coli strain DQ101 for fatty acids synthesis was adaptively evolved for 90 days with increasing [C(4)mim] Cl concentration from 1% to 7% (w/v). The evolved strain DQ102 reached a final OD600 of 4.93 at the end of the 24 h culture with 7% (w/v) ionic liquid. DQ102/pDQTES with a thioesterase 'TesA overexpression could produce 1.12 g/L fatty acid with a productivity of 0.023 g/L-h from ionic liquid-treated bamboo hydrolysate. With another beta-hydroxyacyl-ACP dehydratases (fabZ) overexpression, DQ102/pDQTESZ could reach a higher concentration of 2.29 g/L with a productivity of 0.048 g/L-h. These results indicated that ALE could be implemented as a useful tool for metabolic engineering and production of bio-fuels, as well as commodity and specialty chemicals. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自适应实验室进化(ALE)是一种有用的代谢工程策略,它允许通过发生的遗传变异中的累积有益突变来选择具有有益表型的微生物。遵循ALE策略,随着脂肪酸[C(4)mim] Cl浓度从1%增加到7%(w / v),适应性发展了90天的用于脂肪酸合成的合理构建的大肠杆菌DQ101。在24 h培养结束时,用7%(w / v)离子液体培养的进化菌株DQ102的最终OD600为4.93。带有硫酯酶'TesA的过表达的DQ102 / pDQTES可以通过离子液体处理的竹水解物生产1.12 g / L的脂肪酸,生产率为0.023 g / L-h。随着另一个β-羟酰基-ACP脱水酶(fabZ)的过表达,DQ102 / pDQTESZ可以达到2.29 g / L的更高浓度,生产率为0.048 g / L-h。这些结果表明,ALE可以作为代谢工程和生物燃料生产以及商品和特种化学品的有用工具来实施。 (C)2016 Elsevier Ltd.保留所有权利。

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