Nadal D, Colomer B, Piña B
Centre d'Investigació i Desenvolupament, Consejo Superior de Investigaciones Científicas, Barcelona, Spain.
Appl Environ Microbiol. 1996 Jun;62(6):1944-50. doi: 10.1128/aem.62.6.1944-1950.1996.
Electrophoretic karyotyping and mitochondrial DNA restriction analysis were used to analyze natural yeast populations from fermenting musts in El Penedès, Spain. Both analyses revealed a considerable degree of polymorphism, indicating heterogeneous natural populations. By specifically designed genetic selection protocols, strains showing potentially interesting phenotypes, such as high tolerance to ethanol and temperature or the ability to grow and to ferment in wine-water-sugar mixtures, were isolated from these natural populations. Genetic analysis showed a strong correlation between the selected phenotypes and mitochondrial DNA polymorphisms. Karyotype analysis revealed several genetically similar yeast lineages in the natural yeast microflora, which we interpret as genetically isolated subpopulations of yeast strains with distinct genetic traits, which may correspond to specific microenvironments. Thus, molecular polymorphism analysis may be useful not only to study the geographical distribution of natural yeast strains but also to identify strains with specific phenotypic properties.
采用电泳核型分析和线粒体DNA限制性分析方法,对西班牙佩内德斯地区发酵葡萄汁中的天然酵母菌群进行了分析。两种分析均显示出相当程度的多态性,表明天然菌群具有异质性。通过专门设计的遗传选择方案,从这些天然菌群中分离出了表现出潜在有趣表型的菌株,如对乙醇和温度具有高耐受性,或能够在葡萄酒 - 水 - 糖混合物中生长和发酵。遗传分析表明,所选表型与线粒体DNA多态性之间存在很强的相关性。核型分析揭示了天然酵母微生物区系中几个遗传相似的酵母谱系,我们将其解释为具有不同遗传特征的酵母菌株的遗传隔离亚群,这可能对应于特定的微环境。因此,分子多态性分析不仅可用于研究天然酵母菌株的地理分布,还可用于鉴定具有特定表型特性的菌株。