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首页> 外文期刊>Applied and Environmental Microbiology >Mitochondrial DNA loss caused by ethanol in Saccharomyces flor yeasts.
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Mitochondrial DNA loss caused by ethanol in Saccharomyces flor yeasts.

机译:乙醇在弗氏酵母中引起线粒体DNA丢失。

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Saccharomyces flor yeasts proliferate at the surface of sherry wine, which contains over 15% (vol) ethanol. Since ethanol is a powerful inducer of respiration-deficient mutants, this alcohol has been proposed to be the source of the high diversity found in the mitochondrial genomes of flor yeasts and other wine yeasts. Southern blot analysis suggests that mitochondrial DNA (mtDNA) polymorphic changes are due to minor lesions in the mitochondrial genome. As determined in this work by pulsed-field gel electrophoresis, restriction analysis, and Southern blot analysis, ethanol-induced petite mutants completely lack mtDNA (rho zero). Ethanol-induced changes in the mitochondrial genome that could explain the observed mtDNA polymorphism in flor yeasts were not found. The transfer of two different mtDNA variants from flor yeasts to a laboratory strain conferred in both cases an increase in ethanol tolerance in the recipient strain, suggesting that mtDNAs are probably subjected to positive selection pressure concerning their ability to confer ethanol tolerance.
机译:酵母菌的酵母菌在雪利酒表面扩散,酒精含量超过15%(体积)。由于乙醇是呼吸不足突变体的有力诱因,因此有人提出,这种酒精是在弗洛尔酵母和其他葡萄酒酵母的线粒体基因组中发现的高度多样性的来源。 Southern印迹分析表明线粒体DNA(mtDNA)的多态性变化是由于线粒体基因组中的微小损伤所致。正如这项工作通过脉冲场凝胶电泳,限制性酶切分析和Southern印迹分析所确定的,乙醇诱导的娇小突变体完全缺乏mtDNA(rho零)。没有发现乙醇诱导的线粒体基因组变化,可以解释在花酵母中发现的mtDNA多态性。在两种情况下,两种不同的mtDNA变体从花粉酵母到实验室菌株的转移均导致受体菌株对乙醇的耐受性增加,这表明mtDNA可能承受正向选择压力,因为它们赋予了乙醇耐受性。

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