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Complex Nature of the Genome in a Wine Spoilage Yeast Dekkera bruxellensis

机译:葡萄酒腐败酵母Dekkera bruxellensis中基因组的复杂性质

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摘要

When the genome organizations of 30 native isolates belonging to a wine spoilage yeast, Dekkera (Brettanomyces) bruxellensis, a distant relative of Saccharomyces cerevisiae, were examined, the numbers of chromosomes varied drastically, from 4 to at least 9. When single gene probes were used in Southern analysis, the corresponding genes usually mapped to at least two chromosomal bands, excluding a simple haploid organization of the genome. When different loci were sequenced, in most cases, several different haplotypes were obtained for each single isolate, and they belonged to two subtypes. Phylogenetic reconstruction using haplotypes revealed that the sequences from different isolates belonging to one subtype were more similar to each other than to the sequences belonging to the other subtype within the isolate. Reanalysis of the genome sequence also confirmed that partially sequenced strain Y879 is not a simple haploid and that its genome contains approximately 1% polymorphic sites. The present situation could be explained by (i) a hybridization event where two similar but different genomes have recently fused together or (ii) an event where the diploid progenitor of all analyzed strains lost a regular sexual cycle, and the genome started to accumulate mutations.
机译:当检查了30种来自葡萄酒变质酵母的近缘分离株的基因组组织时,酿酒酵母的远亲Dekkera(Brettanomyces)bruxellensis的染色体数目发生了巨大变化,从4到至少9个。用于Southern分析时,通常将对应的基因定位到至少两个染色体条带上,但不包括基因组的简单单倍体组织。当对不同的基因座进行测序时,在大多数情况下,每个单独的分离株都获得了几种不同的单倍型,它们属于两个亚型。使用单倍型的系统发生重建显示,来自属于一个亚型的不同分离株的序列彼此之间比与属于该分离物中另一种亚型的序列更相似。对基因组序列的重新分析还证实,部分测序的菌株Y879不是简单的单倍体,其基因组包含大约1%的多态性位点。当前的情况可以通过(i)最近两个相似但不同的基因组融合在一起的杂交事件或(ii)所有分析菌株的二倍体祖细胞失去规则的性周期,基因组开始积累突变的事件来解释。 。

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