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Intergeneric hybrids of Saccharomyces cerevisiae and Zygosaccharomyces fermentati obtained by protoplast fusion.

机译:通过原生质体融合获得酿酒酵母和发酵酵母的种间杂种。

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摘要

To obtain strains that are able to efficiently produce ethanol from different carbohydrates, mainly cellulose hydrolysates, several species of the genus Candida and a Zygosaccharomyces fermentati strain were examined for their ability to utilize cellobiose and produce ethanol, as well as for their thermotolerance and the possibility of genetic manipulation. Candida obtusa and Zygosaccharomyces fermentati tolerated the maximal temperature for growth, possessed the highest cellobiase activity, and offered the possibility of genetic manipulation, although neither of them proved to be a good producer of ethanol. Intergeneric hybrids of Saccharomyces cerevisiae and Z. fermentati were obtained after protoplast fusion. They were selected as prototrophic strains, after isolation of auxotrophic mutants from Z. fermentati and fusion with an S. cerevisiae strain which was also auxotrophic. The hybrids, which appeared at a frequency of 2 X 10(-7), presented characteristics of both parents, such as resistance to certain drugs and the ability to grow with either cellobiose or lactic acid as the sole carbon source; they were very stable, even under nonselective conditions. These hybrids may have important industrial applications as good fermenting strains.
机译:为了获得能够有效地从不同的碳水化合物(主要是纤维素水解产物)生产乙醇的菌株,研究了念珠菌属和发酵酵母菌的几种菌种利用纤维二糖和生产乙醇的能力,以及它们的耐热性和可能性。基因操作。钝角念珠菌和发酵酵母菌耐受最高的生长温度,具有最高的纤维二糖酶活性,并提供了遗传操作的可能性,尽管它们都不被证明是乙醇的良好生产者。原生质体融合后获得酿酒酵母和发酵的Z.酵母的属间杂种。从发酵发酵单胞菌中分离出营养缺陷型突变体并与同样是营养缺陷型的酿酒酵母菌株融合后,将它们选为营养缺陷型菌株。杂种以2 X 10(-7)的频率出现,表现出父母双方的特征,例如对某些药物的抗性以及以纤维二糖或乳酸为唯一碳源的生长能力。即使在非选择性条件下,它们也非常稳定。这些杂种作为优良的发酵菌株可能具有重要的工业应用。

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