首页> 外文期刊>Journal of applied microbiology >Improved ethanol production of a newly isolated thermotolerant Saccharomyces cerevisiae strain after high-energy-pulse-electron beam.
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Improved ethanol production of a newly isolated thermotolerant Saccharomyces cerevisiae strain after high-energy-pulse-electron beam.

机译:高能脉冲电子束作用后,新分离的耐热啤酒酵母菌株的乙醇产量提高。

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Aims: To isolate thermotolerant Saccharomyces cerevisiae with high-energy-pulse-electron (HEPE) beam, to optimize the mutation strain fermentation conditions for ethanol production and to conduct a preliminary investigation into the thermotolerant mechanisms. Methods and Results: After HEPE beam radiation, the thermotolerant S. cerevisiae strain Y43 was obtained at 45 degrees C. Moreover, the fermentation conditions of mutant Y43 were optimized by L33 orthogonal experiment. The optimal glucose content and initial pH for fermentation were 20% g l-1 and 4.5, respectively; peptone content was the most neglected important factor. Under this condition, ethanol production of Y43 was 83.1 g l-1 after fermentation for 48 h at 43 degrees C, and ethanol yield was 0.42 g g-1, which was about 81.5% of the theoretical yield. The results also showed that the trehalose content and the expression of the genes MSN2, SSA3 and TPS1 in Y43 were higher than those in the original strain (YE0) under the same stress conditions. Conclusions: A genetically stable mutant strain with high ethanol yield under heat stress was obtained using HEPE. This mutant may be a suitable candidate for the industrial-scale ethanol production. Significance and Impact of the Study: High-energy-pulse-electron radiation is a new efficient technology in breeding micro-organisms. The mutant obtained in this work has the advantages in industrial ethanol production under thermostress.
机译:目的:用高能脉冲电子束(HEPE)分离耐热酿酒酵母(Saccharomyces cerevisiae),优化生产乙醇的突变菌株发酵条件,并对耐热机理进行初步研究。方法和结果:HEPE束辐射后,耐热性 S。在45℃下获得酿酒酵母菌株Y43。此外,通过L3 3 正交试验优化了突变体Y43的发酵条件。发酵的最佳葡萄糖含量和初始pH分别为20%g l -1 和4.5;蛋白ept含量是最被忽略的重要因素。在此条件下,43℃发酵48h后,Y43的乙醇产量为83.1gl -1 ,乙醇产率为0.42gg -1 ,约为81.5。理论收率的%。结果还表明,Y43菌株中海藻糖含量和 MSN2 , SSA3 和 TPS1 基因的表达均高于原始菌株。 (YE0)在相同的压力条件下。结论:利用HEPE技术获得了高产乙醇的遗传稳定突变株。该突变体可能是工业规模乙醇生产的合适候选者。研究的意义和影响:高能脉冲电子辐射是一种新的高效微生物繁殖技术。这项工作中获得的突变体在热应力下工业乙醇生产中具有优势。

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