首页> 外文OA文献 >Population Structure and Comparative Genome Hybridization of European Flor Yeast Reveal a Unique Group of Saccharomyces cerevisiae Strains with Few Gene Duplications in Their Genome.
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Population Structure and Comparative Genome Hybridization of European Flor Yeast Reveal a Unique Group of Saccharomyces cerevisiae Strains with Few Gene Duplications in Their Genome.

机译:欧洲弗洛尔酵母的种群结构和比较基因组杂交揭示了一组独特的酿酒酵母菌株,其基因组中几乎没有基因重复。

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摘要

Wine biological aging is a wine making process used to produce specific beverages in several countries in Europe, including Spain, Italy, France, and Hungary. This process involves the formation of a velum at the surface of the wine. Here, we present the first large scale comparison of all European flor strains involved in this process. We inferred the population structure of these European flor strains from their microsatellite genotype diversity and analyzed their ploidy. We show that almost all of these flor strains belong to the same cluster and are diploid, except for a few Spanish strains. Comparison of the array hybridization profile of six flor strains originating from these four countries, with that of three wine strains did not reveal any large segmental amplification. Nonetheless, some genes, including YKL221W/MCH2 and YKL222C, were amplified in the genome of four out of six flor strains. Finally, we correlated ICR1 ncRNA and FLO11 polymorphisms with flor yeast population structure, and associate the presence of wild type ICR1 and a long Flo11p with thin velum formation in a cluster of Jura strains. These results provide new insight into the diversity of flor yeast and show that combinations of different adaptive changes can lead to an increase of hydrophobicity and affect velum formation.
机译:酒的生物老化是在欧洲的一些国家(包括西班牙,意大利,法国和匈牙利)用于生产特定饮料的酿酒过程。此过程涉及在葡萄酒表面形成一层薄纱。在这里,我们介绍了此过程中涉及的所有欧洲flor菌株的首次大规模比较。我们从它们的微卫星基因型多样性推断了这些欧洲弗洛尔菌株的种群结构,并分析了它们的倍性。我们显示,除少数西班牙菌株外,几乎所有这些弗洛尔菌株都属于同一簇,并且是二倍体。比较来自这四个国家的六个弗洛尔菌株与三个葡萄酒菌株的阵列杂交谱,没有发现任何大的片段扩增。但是,在六个flor菌株中有四个在基因组中扩增了一些基因,包括YKL221W / MCH2和YKL222C。最后,我们将ICR1 ncRNA和FLO11多态性与弗洛尔酵母种群结构相关联,并将野生型ICR1和长Flo11p的存在与朱拉菌株集群中的薄薄壁形成联系起来。这些结果提供了对弗洛尔酵母多样性的新见解,并表明不同适应性变化的组合可导致疏水性增加并影响膜形成。

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