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酿酒酵母商业菌株在不同氮条件下的功能基因组分析

Functional genomic analysis of a commercial wine strain of Saccharomyces cerevisiae under differing nitrogen conditions.

作者信息

Backhus L E, DeRisi J, Bisson L F

机构信息

Department of Viticulture and Enology, University of California, Davis 95616-8749, USA.

出版信息

FEMS Yeast Res. 2001 Jul;1(2):111-25. doi: 10.1111/j.1567-1364.2001.tb00022.x.

Abstract

DNA microarray analysis was used to profile gene expression in a commercial isolate of Saccharomyces cerevisiae grown in a synthetic grape juice medium under conditions mimicking a natural environment for yeast: High-sugar and variable nitrogen conditions. The high nitrogen condition displayed elevated levels of expression of genes involved in biosynthesis of macromolecular precursors across the time course as compared to low-nitrogen. In contrast, expression of genes involved in translation and oxidative carbon metabolism were increased in the low-nitrogen condition, suggesting that respiration is more nitrogen-conserving than fermentation. Several genes under glucose repression control were induced in low-nitrogen in spite of very high (17%) external glucose concentrations, but there was no general relief of glucose repression. Expression of many stress response genes was elevated in stationary phase. Some of these genes were expressed regardless of the nitrogen concentration while others were found at higher levels only under high nitrogen conditions. A few genes, FSP2, RGS2, AQY1, YFL030W, were expressed more strongly with nitrogen limitation as compared to other conditions.

摘要

利用DNA微阵列分析技术,对酿酒酵母的一个商业分离株在模拟酵母自然环境的条件下,即在高糖和可变氮条件下,于合成葡萄汁培养基中生长时的基因表达进行了分析。与低氮条件相比,在整个时间进程中,高氮条件下参与大分子前体生物合成的基因表达水平升高。相反,在低氮条件下,参与翻译和氧化碳代谢的基因表达增加,这表明呼吸作用比发酵作用更能节省氮。尽管外部葡萄糖浓度非常高(17%),但在低氮条件下,几个受葡萄糖阻遏控制的基因被诱导表达,但并没有普遍解除葡萄糖阻遏。许多应激反应基因在稳定期表达升高。其中一些基因的表达与氮浓度无关,而另一些基因仅在高氮条件下表达水平更高。与其他条件相比,少数基因FSP2、RGS2、AQY1、YFL030W在氮限制条件下表达更强。

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