首页> 外文期刊>Acta Biochimica Polonica >Expression of GPD1 and SIP18 genes during rehydration in active dry industrial Saccharomyces cerevisiae cider-making yeast strains (ADY)
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Expression of GPD1 and SIP18 genes during rehydration in active dry industrial Saccharomyces cerevisiae cider-making yeast strains (ADY)

机译:在活性干燥工业酿酒酵母癌酵母菌酵母菌菌株中的再水中GPD1和SIP18基因的表达(Ady)

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摘要

In this study we determined the influence of different sugar concentration in media, time of rehydration and type of strain on relative expression level of GPD1 and SIP18 genes of active dry cider-making yeast strains, followed by the assessment of the impact of rehydration on the fermentation process. High expression of SIP18 at the beginning of rehydration was shown to be due to high transcription of the gene during the drying process. High sugar concentrations of media initiated transcription of the GPD1 gene and triggered the cellular glycerol biosynthesis pathway in examined strains. Rehydration time and type of strain showed to have no statistically significant impact on the course of the fermentation; RT qPCR results depended mainly on the time of rehydration and sugar concentration of the medium. This is the first attempt to confront rehydration time and molecular mechanisms acting upon rehydration with the course of the fermentation process.
机译:在这项研究中,我们确定了不同糖浓度在培养基中的影响,再水合时间和菌株的菌株类型对有源干燥苹果酱酵母菌菌株的GPD1和SIP18基因的相对表达水平,其次是评估再水化对的影响 发酵过程。 在再水解开始时SiP18的高表达被证明是由于在干燥过程中对该基因的高转录。 高糖浓度的培养基引发了GPD1基因的转录,并引发了检查菌株中的细胞甘油生物合成途径。 再水化时间和菌株的类型显示在发酵过程中没有统计学意义; RT QPCR结果主要依赖于再水化时间和培养基的糖浓度。 这是第一次尝试与发酵过程的过程中的再水化时间和分子机制作用。

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