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代谢工程改造 Thermoanaerobacter mathranii 提高乙醇产量。

Metabolic engineering to improve ethanol production in Thermoanaerobacter mathranii.

机构信息

BioScience and Technology Group, BioCentrum, Technical University of Denmark, 2800, Lyngby, Denmark.

出版信息

Appl Microbiol Biotechnol. 2010 Sep;88(1):199-208. doi: 10.1007/s00253-010-2703-3. Epub 2010 Jun 16.

Abstract

Thermoanaerobacter mathranii can produce ethanol from lignocellulosic biomass at high temperatures, but its biotechnological exploitation will require metabolic engineering to increase its ethanol yield. With a cofactor-dependent ethanol production pathway in T. mathranii, it may become crucial to regenerate cofactor to increase the ethanol yield. Feeding the cells with a more reduced carbon source, such as mannitol, was shown to increase ethanol yield beyond that obtained with glucose and xylose. The ldh gene coding for lactate dehydrogenase was previously deleted from T. mathranii to eliminate an NADH oxidation pathway. To further facilitate NADH regeneration used for ethanol formation, a heterologous gene gldA encoding an NAD(+)-dependent glycerol dehydrogenase was expressed in T. mathranii. One of the resulting recombinant strains, T. mathranii BG1G1 (Deltaldh, P(xyl)GldA), showed increased ethanol yield in the presence of glycerol using xylose as a substrate. With an inactivated lactate pathway and expressed glycerol dehydrogenase activity, the metabolism of the cells was shifted toward the production of ethanol over acetate, hence restoring the redox balance. It was also shown that strain BG1G1 acquired the capability to utilize glycerol as an extra carbon source in the presence of xylose, and utilization of the more reduced substrate glycerol resulted in a higher ethanol yield.

摘要

热厌氧菌(Thermoanaerobacter mathranii)可以在高温下从木质纤维素生物质中生产乙醇,但要实现其生物技术开发,就需要进行代谢工程以提高其乙醇产量。由于 T. mathranii 存在依赖辅酶的乙醇生产途径,因此可能需要再生辅酶以提高乙醇产量。向细胞中添加更还原的碳源,如甘露醇,可提高乙醇产量,超过葡萄糖和木糖的产量。先前已经从 T. mathranii 中删除了编码乳酸脱氢酶的 ldh 基因,以消除 NADH 氧化途径。为了进一步促进用于乙醇形成的 NADH 再生,在 T. mathranii 中表达了编码 NAD(+)-依赖性甘油脱氢酶的异源基因 gldA。由此产生的重组菌株之一,T. mathranii BG1G1(Deltaldh,P(xyl)GldA),在以木糖为底物并添加甘油时,乙醇产量增加。由于乳酸途径失活且甘油脱氢酶活性表达,细胞的代谢转向生产乙醇而非乙酸,从而恢复了氧化还原平衡。还表明,BG1G1 菌株在存在木糖的情况下获得了利用甘油作为额外碳源的能力,并且利用更还原的底物甘油可导致更高的乙醇产量。

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