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Brettanomyces bruxellensis population survey reveals a diploid-triploid complex structured according to substrate of isolation and geographical distribution

机译:布鲁塔酵母菌种群调查显示根据隔离和地理分布的底物构造的二倍体-三倍体复合体

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摘要

Brettanomyces bruxellensis is a unicellular fungus of increasing industrial and scientific interest over the past 15 years. Previous studies revealed high genotypic diversity amongst B. bruxellensis strains as well as strain-dependent phenotypic characteristics. Genomic assemblies revealed that some strains harbour triploid genomes and based upon prior genotyping it was inferred that a triploid population was widely dispersed across Australian wine regions. We performed an intraspecific diversity genotypic survey of 1488 B. bruxellensis isolates from 29 countries, 5 continents and 9 different fermentation niches. Using microsatellite analysis in combination with different statistical approaches, we demonstrate that the studied population is structured according to ploidy level, substrate of isolation and geographical origin of the strains, underlying the relative importance of each factor. We found that geographical origin has a different contribution to the population structure according to the substrate of origin, suggesting an anthropic influence on the spatial biodiversity of this microorganism of industrial interest. The observed clustering was correlated to variable stress response, as strains from different groups displayed variation in tolerance to the wine preservative sulfur dioxide (SO2). The potential contribution of the triploid state for adaptation to industrial fermentations and dissemination of the species B. bruxellensis is discussed.
机译:在过去的15年中,Bruttanomyces bruxellensis是一种具有日益增长的工业和科学兴趣的单细胞真菌。先前的研究揭示了B. bruxellensis菌株之间的高基因型多样性以及依赖菌株的表型特征。基因组组装揭示了一些菌株具有三倍体基因组,并且根据先前的基因分型,推断三倍体群体广泛分布于澳大利亚葡萄酒产区。我们对来自29个国家,5大洲和9个不同发酵位的1488株B. bruxellensis菌株进行了种内多样性基因型调查。使用微卫星分析结合不同的统计方法,我们证明了所研究的种群是根据倍性水平,菌株的分离底物和菌株的地理来源构成的,构成了每个因素的相对重要性。我们发现,根据起源的底物,地理起源对种群结构的贡献不同,这表明人为对该工业感兴趣的微生物的空间生物多样性有人类影响。观察到的聚类与可变的应力响应相关,因为来自不同组的菌株显示出对葡萄酒防腐剂二氧化硫(SO2)的耐受性变化。讨论了三倍体状态对适应工业发酵和B. bruxellensis物种传播的潜在贡献。

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