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Search for genes responsible for the remarkably high acetic acid tolerance of a Zygosaccharomyces bailii-derived interspecies hybrid strain

机译:寻找导致百日咳酵母属种间杂种菌株具有很高的乙酸耐受性的基因

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摘要

BackgroundZygosaccharomyces bailii is considered the most problematic acidic food spoilage yeast species due to its exceptional capacity to tolerate high concentrations of weak acids used as fungistatic preservatives at low pH. However, the mechanisms underlying its intrinsic remarkable tolerance to weak acids remain poorly understood. The identification of genes and mechanisms involved in Z. bailii acetic acid tolerance was on the focus of this study. For this, a genomic library from the highly acetic acid tolerant hybrid strain ISA1307, derived from Z. bailii and a closely related species and isolated from a sparkling wine production plant, was screened for acetic acid tolerance genes. This screen was based on the transformation of an acetic acid susceptible Saccharomyces cerevisiae mutant deleted for the gene encoding the acetic acid resistance determinant transcription factor Haa1.
机译:背景百日酵母被认为是最成问题的酸性食物变质酵母菌种,因为其在低pH值下耐受高浓度用作杀菌剂的弱酸的超强能力。但是,对其内在对弱酸的固有显着耐受性的机制仍知之甚少。百日草乙酸耐性基因和机制的鉴定是本研究的重点。为此,从高度耐酸的杂交菌株ISA1307的基因组文库中筛选出了耐乙酸基因,该菌株来自百日咳杆菌和密切相关的物种,并从起泡酒生产厂分离。该筛选基于对编码乙酸抗性决定簇转录因子Haa1的基因缺失的对乙酸敏感的酿酒酵母突变体的转化。

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