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原生质体融合构建乳糖同化高产乙醇酵母。

Construction of lactose-assimilating and high-ethanol-producing yeasts by protoplast fusion.

机构信息

University of California, Davis, California 95616.

出版信息

Appl Environ Microbiol. 1986 Feb;51(2):362-7. doi: 10.1128/aem.51.2.362-367.1986.

Abstract

The availability of a yeast strain which is capable of fermenting lactose and at the same time is tolerant to high concentrations of ethanol would be useful for the production of ethanol from lactose. Kluyveromyces fragilis is capable of fermenting lactose, but it is not as tolerant as Saccharomyces cerevisiae to high concentrations of ethanol. In this study, we have used the protoplast fusion technique to construct hybrids between auxotrophic strains of S. cerevisiae having high ethanol tolerance and an auxotrophic strain of lactose-fermenting K. fragilis isolated by ethyl methanesulfonate mutagenesis. The fusants obtained were prototrophic and capable of assimilating lactose and producing ethanol in excess of 13% (vol/vol). The complementation frequency of fusion was about 0.7%. Formation of fusants was confirmed by the increased amount of chromosomal DNA per cell. Fusants contained 8 x 10 to 16 x 10 mug of DNA per cell as compared with about 4 x 10 mug of DNA per cell for the parental strains, suggesting that multiple fusions had taken place.

摘要

如果有一种酵母菌株能够发酵乳糖,同时又能耐受高浓度的乙醇,那么从乳糖生产乙醇将是非常有用的。脆弱克鲁维酵母能够发酵乳糖,但它对高浓度乙醇的耐受性不如酿酒酵母。在这项研究中,我们使用原生质体融合技术,在具有高乙醇耐受性的酿酒酵母营养缺陷型菌株和通过乙磺酸甲酯诱变分离的乳糖发酵脆弱克鲁维酵母营养缺陷型菌株之间构建杂种。获得的融合体是原养型的,能够同化乳糖并产生超过 13%(体积/体积)的乙醇。融合的互补频率约为 0.7%。通过每个细胞的染色体 DNA 量的增加来确认融合体的形成。融合体每个细胞中含有 8 x 10 到 16 x 10 mug 的 DNA,而亲本菌株每个细胞中约含有 4 x 10 mug 的 DNA,这表明发生了多次融合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc70/238874/0585fbb4cdcf/aem00137-0154-a.jpg

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