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Genome shuffling to improve thermotolerance, ethanol tolerance and ethanol productivity of Saccharomyces cerevisiae

机译:基因组改组以提高酿酒酵母的耐热性,乙醇耐受性和乙醇生产率

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摘要

Genome shuffling is a powerful strategy for rapid engineering of microbial strains for desirable industrial phenotypes. Here we improved the thermotolerance and ethanol tolerance of an industrial yeast strain SM-3 by genome shuffling while simultaneously enhancing the ethanol productivity. The starting population was generated by protoplast ultraviolet irradiation and then subjected for the recursive protoplast fusion. The positive colonies from the library, created by fusing the inactivated protoplasts were screened for growth at 35, 40, 45, 50 and 55 degrees C on YPD-agar plates containing different concentrations of ethanol. Characterization of all mutants and wild-type strain in the shake-flask indicated the compatibility of three phenotypes of thermotolerance, ethanol tolerance and ethanol yields enhancement. After three rounds of genome shuffling, the best performing strain, F34, which could grow on plate cultures up to 55 degrees C, was obtained. It was found capable of completely utilizing 20% (w/v) glucose at 45-48 degrees C, producing 9.95% (w/v) ethanol, and tolerating 25% (v/v) ethanol stress.
机译:基因组改组是为理想的工业表型快速改造微生物菌株的有效策略。在这里,我们通过基因组改组提高了工业酵母菌株SM-3的耐热性和乙醇耐受性,同时提高了乙醇生产率。通过原生质体紫外线照射产生起始群体,然后进行递归原生质体融合。通过在35、40、45、50和55℃下在含有不同浓度乙醇的YPD琼脂平板上筛选通过融合灭活的原生质体而产生的来自库的阳性菌落。摇瓶中所有突变体和野生型菌株的表征表明三种耐热性,乙醇耐受性和乙醇产量提高的表型的相容性。经过三轮基因组改组后,获得了表现最佳的菌株F34,该菌株可以在高达55摄氏度的平板培养物中生长。发现能够在45-48摄氏度下完全利用20%(w / v)的葡萄糖,产生9.95%(w / v)的乙醇,并能承受25%(v / v)的乙醇胁迫。

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