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Identification of a gene FMP21 whose expression levels are involved in thermotolerance in Saccharomyces cerevisiae

机译:鉴定酿酒酵母耐热性涉及基因FMP21

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摘要

Elucidation of the mechanism of high temperature tolerance in yeasts is important for the molecular breeding of high temperature-tolerant yeasts that can be used in bioethanol production. We identified genes whose expression is correlated with the degree of thermotolerance in Saccharomyces cerevisiae by DNA microarray analysis. Gene expression profiles of three S. cerevisiae strains showing different levels of thermotolerance were compared, and we chose three of them as candidate genes. Among these genes, FMP21 was investigated as a thermotolerance-related gene in S. cerevisiae by comparing the growth at high temperature with the gene expression in eight strains. The expression ratio of FMP21 at 37°C was correlated with the doubling time ratio at a coefficient of determination of 0.787. The potential involvement of the Fmp21 in the thermotolerance of yeasts was evaluated. The FMP21 deletion variant showed a decreased respiratory growth rate and increased thermosensitivity. Furthermore, the overexpression of FMP21 improved thermotolerance in yeasts. In conclusion, the function of Fmp21 is important for thermotolerance in yeasts.
机译:阐明酵母中的高温耐受性机制对于可用于生物乙醇生产的耐高温酵母的分子育种很重要。我们通过DNA芯片分析鉴定了其表达与酿酒酵母耐热性相关的基因。比较了三种耐热性不同的酿酒酵母菌株的基因表达谱,我们选择了其中三个作为候选基因。在这些基因中,通过比较高温下的生长与8个菌株中的基因表达,研究了FMP21作为酿酒酵母中的耐热性相关基因。 FMP21在37°C的表达比与倍增时间比相关,确定系数为0.787。 Fmp21可能参与酵母的耐热性评估。 FMP21缺失变体显示出降低的呼吸生长速率和增加的热敏性。此外,FMP21的过表达提高了酵母的耐热性。总之,Fmp21的功能对于酵母的耐热性很重要。

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