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Fermentation of hexose and pentose sugars using a novel ethanologenic Escherichia coli strain

机译:使用新型产乙醇的大肠杆菌菌株发酵己糖和戊糖

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We developed a novel xylose-utilizing ethanologenic Escherichia coli strain FBR3 with the potential for fermentation of mixed sugars from lignocellulosic hydrolysates into ethanol in an antibiotic-free media, This stain carries the plasmid pLOI297 which contains the genes from Zymomonas mobilis necessary for efficiently converting pyruvate into ethanol. Strain FBR3 selectively maintains pLOI297 when grown anaerobically. Cultures of strain FBR3 were serially transferred ten times in aerobic and anaerobic cultures containing either glucose or xylose with no selective antibiotic. An average of 97.4 +/- 3.5% of the cells maintained pLOI297 in anaerobic cultures. In contrast, the plasmid quickly disappeared from aerobic cultures. Plasmid maintenance depends upon deletion of two enzyme activities: pyruvate formate lyase (pfl) and lactate dehydrogenase (Idh). The stability of the pfl mutation was confirmed by the absence of hydrogen gas production, an indirect assay for pfl activity, in each of the cultures. The FBR3 strain was transferred on xylose-containing medium and tested in pH-controlled batch fermentations for efficient conversion of pentoses and hexoses into ethanol. The batch medium contained either 10% (w/v) arabinose, glucose, xylose, or a mixture of these sugars. Fermentations were completed in 70-80 h and ethanol yields were 90-91% of theoretical; maximum ethanol concentrations were 4.38-4.66% (w/v). The fermentation performance of the new FBR3 strain compared favorably to the previously reported performance of strain K011. (C) 1998 Elsevier Science Inc. [References: 27]
机译:我们开发了一种利用木糖的产乙醇大肠埃希氏菌菌株FBR3,它具有在无抗生素培养基中将木质纤维素水解产物中的混合糖发酵成乙醇的潜力,该染料带有质粒pLOI297,该质粒包含来自运动发酵单胞菌的基因,该基因对于有效转化丙酮酸是必需的。转化为乙醇。当厌氧生长时,菌株FBR3选择性地维持pLOI297。 FBR3菌株的培养物在含有葡萄糖或木糖,无选择性抗生素的需氧和厌氧培养物中连续转移十次。在厌氧培养物中,平均97.4 +/- 3.5%的细胞维持pLOI297。相反,质粒从有氧培养物中迅速消失。质粒的维持取决于两种酶活性的缺失:丙酮酸甲酸裂解酶(pfl)和乳酸脱氢酶(Idh)。通过在每种培养物中不产生氢气(一种间接检测pfl活性的方法)来证实pfl突变的稳定性。将FBR3菌株转移到含木糖的培养基上,并在pH控制的分批发酵中进行测试,以将戊糖和己糖有效转化为乙醇。批料培养基包含10%(w / v)的阿拉伯糖,葡萄糖,木糖或这些糖的混合物。发酵在70-80小时内完成,乙醇收率是理论值的90-91%。最大乙醇浓度为4.38-4.66%(w / v)。新的FBR3菌株的发酵性能优于先前报道的K011菌株的发酵性能。 (C)1998 Elsevier Science Inc. [参考:27]

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