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首页> 外文期刊>Biotechnology and Bioengineering >High-level production of 3-hydroxypropionic acid from glycerol as a sole carbon source using metabolically engineeredEscherichia coli
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High-level production of 3-hydroxypropionic acid from glycerol as a sole carbon source using metabolically engineeredEscherichia coli

机译:使用代谢工程化螺母Coli,来自甘油的3-羟基丙酸的3-羟基丙酸的高水平施用为唯一的碳源

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As climate change is an important environmental issue, the conventional petrochemical-based processes to produce valuable chemicals are being shifted toward eco-friendly biological-based processes. In this study, 3-hydroxypropionic acid (3-HP), an industrially important three carbon (C3) chemical, was overproduced by metabolically engineeredEscherichia coliusing glycerol as a sole carbon source. As the first step to construct a glycerol-dependent 3-HP biosynthetic pathway, thedhaB1234andgdrABgenes fromKlebsiella pneumoniaeencoding glycerol dehydratase and glycerol reactivase, respectively, were introduced intoE. colito convert glycerol into 3-hydroxypropionaldehyde (3-HPA). In addition, theydcWgene fromK. pneumoniaeencoding gamma-aminobutyraldehyde dehydrogenase, among five aldehyde dehydrogenases examined, was selected to further convert 3-HPA to 3-HP. Increasing the expression level of theydcWgene enhanced 3-HP production titer and reduced 1,3-propanediol production. To enhance 3-HP production, fed-batch fermentation conditions were optimized by controlling dissolved oxygen (DO) level and employing different feeding strategies including intermittent feeding, pH-stat feeding, and continuous feeding strategies. Fed-batch culture of the final engineeredE. colistrain with DO control and continuous feeding strategy produced 76.2 g/L of 3-HP with the yield and productivity of 0.457 g/g glycerol and 1.89 g center dot L-1 center dot h(-1), respectively. To the best of our knowledge, this is the highest 3-HP productivity achieved by any microorganism reported to date.
机译:随着气候变化是一个重要的环境问题,传统的基于石化的过程生产有价值的化学品正在转向环保基础生物学过程。在该研究中,通过代谢工程化晶体甲巯基作为唯一的碳源,过度引发了3-羟基丙酸(3-HP),是一种工业上重要的三种碳(C3)化学品。作为构建含甘油依赖性的3-HP生物合成途径的第一步,引入了甘油脱水酶和甘油反应酶的甘油蛋白酶和甘油反应酶。 Colito将甘油转化为3-羟基丙基(3-HPA)。此外,他们ofcwgene fromk。选择肺炎酸乙酰氨基丁醛脱氢酶,其中选择了五种醛脱氢酶中,选择进一步转化3-HPA至3-HP。增加梭菌的表达水平增强了3-HP生产滴度,降低了1,3-丙二醇的生产。为了增强3-HP生产,通过控制溶解的氧(DO)水平并采用不同的饲养策略,包括间歇喂养,pH态饲料和连续喂养策略,优化FED分批发酵条件。最终工程师的批量批量培养。具有DO控制和连续喂养策略的Colistain分别产生了76.2g / L的3-HP,产量和生产率为0.457g / g甘油和1.89g中心点L-1中心点H(-1)。据我们所知,这是迄今为止报告的任何微生物所取得的最高3-HP生产力。

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