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New integrative computational approaches unveil the Saccharomyces cerevisiae pheno-metabolomic fermentative profile and allow strain selection for winemaking

机译:新的综合计算方法揭示了酿酒酵母的表型代谢发酵谱,并为酿酒提供了菌株选择

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摘要

During must fermentation by Saccharomyces cerevisiae strains thousands of volatile aroma compounds are formed. The objective of the present work was to adapt computational approaches to analyze pheno-metabolomic diversity of a S. cerevisiae strain collection with different origins. Phenotypic and genetic characterization together with individual must fermentations were performed, and metabolites relevant to aromatic profiles were determined. Experimental results were projected onto a common coordinates system, revealing 17 statistical-relevant multi-dimensional modules, combining sets of most-correlated features of noteworthy biological importance. The present method allowed, as a breakthrough, to combine genetic, phenotypic and metabolomic data, which has not been possible so far due to difficulties in comparing different types of data. Therefore, the proposed computational approach revealed as successful to shed light into the holistic characterization of S. cerevisiae pheno-metabolome in must fermentative conditions. This will allow the identification of combined relevant features with application in selection of good winemaking strains.
机译:在酿酒酵母的发酵过程中,形成了数千种挥发性香气化合物。本工作的目的是采用计算方法来分析具有不同起源的酿酒酵母菌株集合的表型代谢多样性。进行了表型和遗传鉴定,并进行了必不可少的发酵,并确定了与芳香成分有关的代谢产物。实验结果被投影到一个公共坐标系上,揭示了17个统计相关的多维模块,结合了具有重要生物学意义的最相关特征集。作为突破,本方法允许组合遗传,表型和代谢组学数据,由于难以比较不同类型的数据,到目前为止,这是不可能的。因此,所提出的计算方法成功地揭示了必须发酵条件下啤酒酵母表型代谢组的整体特征。这将有助于确定相关的相关特征,并将其应用于选择优质酿酒菌株中。

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