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Microarray studies on lager brewer's yeasts reveal cell status in the process of autolysis

机译:大型啤酒酵母的微阵列研究揭示了自溶过程中的细胞状态

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In this work, we performed DNA microarray studies on lager brewer's yeast Saccharomyces pastorianus to investigate changes in gene expression in the process of autolysis. The two strains we used were Qing2 and 5-2. Strain 5-2 is a mutant of Qing2 and autolyzes much more slowly than its parent strain. Four samples of these two strains during different autolysis stages (0% and 15%) were tested using DNA microarray containing >10000 yeast's genes. Analysis of genes with the same transcription pattern (up- or down-regulated in both strains) showed that the same 99 genes were up-regulated (transcription levels were increased), and the same 97 genes were down-regulated (transcription levels were decreased) by fivefold or more during autolysis. Genes involved in energy production/utilization, protein anabolism, and stress response were down-regulated. Genes related to cell wall organization and biogenesis, starvation response and DNA damage response were up-regulated. Analysis of genes with opposite transcription patterns (up-regulated in one strain and down-regulated in the other one) showed that 246 genes were up-regulated in 5-2 (autolyzes slowly) and down-regulated in Qing2 (autolyzes rapidly). Another 18 genes had opposite transcription levels, indicating that the strain which autolyzes slowly had better cell vitality despite the same autolysis stage. These findings might further promote the global understanding of autolysis in yeast.
机译:在这项工作中,我们对啤酒酵母酵母巴斯德酵母进行了DNA芯片研究,以研究自溶过程中基因表达的变化。我们使用的两个菌株是Qing2和5-2。 5-2菌株是Qing2的突变体,其自溶速度比其亲本菌株慢得多。使用包含> 10000个酵母基因的DNA微阵列测试了这两个菌株在不同自溶阶段(0%和15%)的四个样品。对具有相同转录模式的基因进行分析(两种菌株均上调或下调),结果显示相同的99个基因上调(转录水平升高),相同的97个基因下调(转录水平降低) )在自溶过程中增加五倍或更多。参与能源生产/利用,蛋白质合成代谢和应激反应的基因被下调。与细胞壁组织和生物发生,饥饿反应和DNA损伤反应有关的基因被上调。对具有相反转录模式的基因进行分析(在一株中上调,在另一株中下调)显示,246个基因在5-2中上调(缓慢地自动溶解),在Qing2中下调(快速地自动溶解)。另外18个基因具有相反的转录水平,表明尽管相同的自溶阶段,缓慢自溶的菌株具有更好的细胞活力。这些发现可能会进一步促进全球对酵母自溶作用的理解。

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