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首页> 外文期刊>Journal of applied microbiology >The role of GAP1 gene in the nitrogen metabolism of Saccharomyces cerevisiae during wine fermentation.
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The role of GAP1 gene in the nitrogen metabolism of Saccharomyces cerevisiae during wine fermentation.

机译:GAP1 基因在酿酒酵母发酵过程中对酿酒酵母氮代谢的作用。

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Aim: The aim of this study was to analyse the relevance of the general amino acid permease gene (GAP1) of the wine yeast Saccharomyces cerevisiae on nitrogen metabolism and fermentation performance. Methods and Results: We constructed a gap1 mutant in a wine strain. We compared fermentation rate, biomass production and nitrogen consumption between the gap1 mutant and its parental strain during fermentations with different nitrogen concentrations. The fermentation capacity of the gap1 mutant strain was impaired in the nitrogen-limited and -excessive conditions. The nitrogen consumption rate between the wild strain and the mutant was different for some amino acids, especially those affected by nitrogen catabolite repression (NCR). The deletion of GAP1 gene also modified the gene expression of other permeases. Conclusions: The Gap1 permease seems to be important during wine fermentations with low and high nitrogen content, not only because of its amino acid transporter role but also because of its function as an amino acid sensor. Significance and Impact of the Study: A possible biotechnological advantage of a gap1 mutant is its scarce consumption of arginine, whose metabolism has been related to the production of the carcinogenic ethyl carbamate.
机译:目的:本研究的目的是分析酿酒酵母酿酒酵母中的一般氨基酸通透酶基因( GAP1 )与氮代谢和发酵性能的相关性。方法和结果:我们在葡萄酒菌株中构建了一个 gap1 突变体。我们比较了在不同氮浓度的发酵过程中 gap1 突变体及其亲本菌株之间的发酵速率,生物量生产和氮消耗。在缺氮和过量的条件下, gap1 突变菌株的发酵能力受到损害。对于某些氨基酸,野生菌株和突变体之间的氮消耗率是不同的,尤其是那些受氮分解代谢物阻抑(NCR)影响的氨基酸。 GAP1 基因的缺失也修饰了其他通透酶的基因表达。结论:Gap1渗透酶似乎在低氮和高氮葡萄酒发酵中很重要,这不仅是由于其氨基酸转运蛋白的作用,而且还因为其作为氨基酸传感器的功能。该研究的意义和影响: gap1 突变体可能的生物技术优势是精氨酸的消耗少,精氨酸的代谢与致癌的氨基甲酸乙酯的产生有关。

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