Improving ethanol tolerance of Saccharomyces cerevisiae industrial strain by directed evolution of SPT3
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Natural Science Foundation of China (No. 30500011), National High Technology Research and Development Program of China (863 Program) (No. 2007AA10Z358).

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    Abstract:

    Directed evolution of transcription factors can be employed to effectively improve the phenotypes which are controlled by multiple genetic loci. In this study, we used error-prone PCR for the directed evolution of SPT3, which is the component of yeast Spt-Ada-Gcn5-acetyltransferase (SAGA) complex responsible for the transcription of stress-related genes, and studied its effect on the improvement of ethanol tolerance. Mutant library was constructed by ligating the error-prone PCR products with a modified pYES2.0 plasmid, and the expression plasmids were subsequently transformed to yeast industrial strain Saccharomyces cerevisiae 4126. One mutant strain M25 showing superior growth in presence of 10% ethanol was selected. M25 produced 11.7% more ethanol than the control strain harboring the empty vector when 125 g/L glucose was used as substrate. This study revealed that SPT3 is an important transcription factor for the metabolic engineering of yeast ethanol tolerance.

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赵心清,姜如娇,李宁,杨晴,白凤武. 利用SPT3的定向进化提高工业酿酒酵母乙醇耐受性[J]. Chinese Journal of Biotechnology, 2010, 26(2): 159-164

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  • Received:October 16,2009
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