National Natural Science Foundation of China (No. NSFC31070094), Department of Education Research Projects of Hubei Province (No. Q20121405), Department of Science and Technology Research Projects of Hubei Province (Nos. 2011CDA008, 2011CDB076)
To realize the simultaneous fermentation of xylose and glucose, ptsG (one of the glucose-PTS genes) was deleted from the engineered ethanologenic Escherichia coli SZ470 (?pflB, ?frdABCD, ?ackA, ?ldhA), resulting in loss of glucose effect in the mutant SZ470P (?ptsG). When tested in 5% mixture of glucose (2.5%) and xylose (2.5%), SZ470P simultaneously used glucose (13 g/L) and xylose (20 g/L) whereas the parent strain SZ470 sequentially used glucose (25?g/L) then xylose (5 g/L). Upon completion of the fermentation, both strains achieved similar product yield of 89%. SZ470P produced 15.01 g/L of ethanol, which was 14.32% higher than that produced by SZ470 (12.86 g/L). Deleting ptsG gene enabled the mutant strain SZ470P to simultaneously use both glucose and xylose and achieve better ethanol production
严涛,赵锦芳,高文慧,王金华,王永泽,赵筱,周胜德. 大肠杆菌工程菌ptsG基因敲除及其缺陷株混合糖同型乙醇发酵[J]. Chinese Journal of Biotechnology, 2013, 29(7): 937-945
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