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一种从甘油生产氢气和乙醇的进化型大肠杆菌菌株。

An evolved Escherichia coli strain for producing hydrogen and ethanol from glycerol.

机构信息

Department of Chemical Engineering, 220 Jack E Brown Building, Texas A&M University College Station, TX 77843-3122, USA.

出版信息

Biochem Biophys Res Commun. 2010 Jan 1;391(1):1033-8. doi: 10.1016/j.bbrc.2009.12.013. Epub 2009 Dec 11.

Abstract

Glycerol is an attractive feedstock for biofuels since it accumulates as a byproduct during biodiesel operations; hence, here we consider converting glycerol to hydrogen using the formate hydrogen lyase system of Escherichia coli which converts pyruvate to hydrogen. Starting with E. coli BW25113 frdC that lacks fumarate reductase (this mutation reduces repression of hydrogen synthesis during glycerol fermentation) and by using both adaptive evolution and chemical mutagenesis combined with a selection method based on increased growth on glycerol, we obtained an improved strain, HW2, that produces 20-fold more hydrogen in glycerol medium (0.68+/-0.16 mmol/L/h). HW2 also grows 5-fold faster (0.25+/-0.01/h) than BW25113 frdC on glycerol, so it achieves a reasonable anaerobic growth rate. Corroborating the increase in hydrogen production, glycerol dehydrogenase activity in HW2 increased 4-fold compared to BW25113 frdC. In addition, a whole-transcriptome study revealed that several pathways that would decrease hydrogen yields were repressed in HW2 (fbp, focA, and gatYZ) while a beneficial pathway which encodes enolase was induced. Ethanol production was also increased 5-fold in the evolved HW2 strain.

摘要

甘油是生物燃料的有吸引力的原料,因为它在生物柴油操作过程中作为副产物积累; 因此,在这里我们考虑使用大肠杆菌的甲酸氢裂解酶系统将甘油转化为氢气,该系统将丙酮酸转化为氢气。从缺乏延胡索酸还原酶的大肠杆菌 BW25113 frdC 开始(这种突变减少了甘油发酵过程中对氢气合成的抑制),并通过自适应进化和化学诱变相结合,并结合基于甘油生长增加的选择方法,我们获得了一种改良的菌株 HW2,其在甘油培养基中产生的氢气增加了 20 倍(0.68+/-0.16 mmol/L/h)。HW2 在甘油上的生长速度也比 BW25113 frdC 快 5 倍(0.25+/-0.01/h),因此它实现了合理的厌氧生长速率。证实了氢气产量的增加,HW2 中的甘油脱氢酶活性比 BW25113 frdC 增加了 4 倍。此外,全转录组研究表明,HW2 中几种会降低氢气产量的途径受到抑制(fbp、focA 和 gatYZ),而编码烯醇酶的有益途径被诱导。在进化后的 HW2 菌株中,乙醇的产量也增加了 5 倍。

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