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A set of haploid strains available for genetic studies of Saccharomyces cerevisiae flor yeasts

机译:一组可用于酿酒酵母花酵母遗传研究的单倍体菌株

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Flor yeasts of Saccharomyces cerevisiae have been extensively studied for biofilm formation, however the lack of specific haploid model strains has limited the application of genetic approaches such as gene knockout, allelic replacement and Quantitative Trait Locus mapping for the deciphering of the molecular basis of velum formation under biological ageing. The aim of this work was to construct a set of flor isogenic haploid strains easy to manipulate genetically. The analysis of the allelic variations at 12 minisatellite loci of 174 Saccharomyces cerevisiae strains allowed identifying three flor parental strains with different phylogenic positions. These strains were characterized for sporulation efficiency, growth on galactose, adherence to polystyrene, agar invasion, growth on wine and ability to develop a biofilm. Interestingly, the inability to grow on galactose was found associated with a frameshift in GAL4 gene that seems peculiar of flor strains. From these wild flor strains, isogenic haploid strains were constructed by deleting HO gene with a loxP-KanMX-loxP cassette followed by the removal of the kanamycin cassette. Haploid strains obtained were characterized for their phenotypic and genetic properties and compared with the parental strains. Preliminary results showed that the haploid strains represent new tools for genetic studies and breeding programs on biofilm formation.The inability to metabolize galactose was found to be a useful selectable marker in flor yeast strain development programs.The inability to metabolize galactose was found to be a useful selectable marker in flor yeast strain development programs.
机译:酿酒酵母的弗洛尔酵母已经广泛研究了生物膜的形成,但是缺乏特定的单倍体模型菌株限制了遗传方法的应用,例如基因敲除,等位基因置换和定量性状基因座定位,以破译蛋白质形成的分子基础。在生物老化下。这项工作的目的是构建一套易于遗传操作的花等基因单倍体菌株。对174个酿酒酵母菌株的12个小卫星位点的等位基因变异进行分析,可以鉴定出三个具有不同系统发生位置的弗洛伦亲本菌株。这些菌株的孢子形成效率,在半乳糖上的生长,对聚苯乙烯的粘附,琼脂的入侵,在葡萄酒上的生长以及形成生物膜的能力被表征。有趣的是,发现无法在半乳糖上生长与GAL4基因的移码有关,这似乎是弗洛尔菌株的特有现象。从这些野生的flor菌株中,通过用loxP-KanMX-loxP盒删除HO基因,然后去除卡那霉素盒,来构建同基因的单倍体菌株。对获得的单倍体菌株的表型和遗传特性进行表征,并与亲本菌株进行比较。初步结果表明,单倍体菌株代表了用于遗传学研究和生物膜形成育种程序的新工具。无法代谢半乳糖是在弗氏酵母菌株开发计划中有用的选择标记。发现无法代谢半乳糖是一种潜在的选择。在花酵母菌株开发程序中有用的选择标记。

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