Construction of an ethanologenic Escherichia coli strain expressing β-glucosidase
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National Basic Research Program of China (973 Program) (No. 2011CB707406), National High Technology Research and Development Program of China (863 Program) (No. 2012AA022301), China Postdoctoral Science Foundation (No. 2012M520850), the Fundamental Research Funds for the Central Universities of China (Nos. WF0913005, WF1314036).

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    Abstract:

    Constructing ethanologenic strains with cellulose activity is important to achieve consolidated bioprocessing of lignocellulose for ethanol production. In this study, we integrated the pyruvate decarboxylase gene pdc and alcohol dehydrogenase gene adhB from Zymomonas mobilis ZM4 into Escherichia coli JM109 by Red recombination method to generatea recombinant strain E. coli P81that could produce ethanol from glucose. Aβ-glucosidase gene bglB from Bacillus polymyxa 1.794 was cloned into the recombinant E. coli P81 and β-glucosidase was expressed to give a new recombinant strain E. coli P81 (pUC19-bglB) with dual functions of cellobiose degradation and ethanol production. The extracellularβ-glucosidaseactivity was 84.78 mU/mL broth and the extracellular cellobiase activity of E. coli P81 (pUC19-bglB) was 32.32 mU/mL broth. E. coli P81(pUC19-bglB) fermented cellobiose to ethanol with a yield of 55.8% of the theoretical value, and when glucose and cellobiose were co-fermented, the ethanol yield reached 46.5% of thetheoretical value. The construction of consolidated bioprocessing strain opens the possibility to convert cellobiose to ethanol in a single bioprocess.

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张瑶,罗紫臣,高秋强,鲍杰. 构建伴有β-葡萄糖苷酶表达的乙醇发酵大肠杆菌[J]. Chinese Journal of Biotechnology, 2013, 29(9): 1254-1267

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  • Received:March 16,2013
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  • Online: September 04,2013
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