Singh Jatinder, Kumar Deept, Ramakrishnan Naren, Singhal Vibha, Jervis Jody, Garst James F, Slaughter Stephen M, DeSantis Andrea M, Potts Malcolm, Helm Richard F
Virginia Tech Center for Genomics, Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.
Appl Environ Microbiol. 2005 Dec;71(12):8752-63. doi: 10.1128/AEM.71.12.8752-8763.2005.
A transcriptional analysis of the response of Saccharomyces cerevisiae strain BY4743 to controlled air-drying (desiccation) and subsequent rehydration under minimal glucose conditions was performed. Expression of genes involved in fatty acid oxidation and the glyoxylate cycle was observed to increase during drying and remained in this state during the rehydration phase. When the BY4743 expression profile for the dried sample was compared to that of a commercially prepared dry active yeast, strikingly similar expression changes were observed. The fact that these two samples, dried by different means, possessed very similar transcriptional profiles supports the hypothesis that the response to desiccation is a coordinated event independent of the particular conditions involved in water removal. Similarities between "stationary-phase-essential genes" and those upregulated during desiccation were also noted, suggesting commonalities in different routes to reduced metabolic states. Trends in extracellular and intracellular glucose and trehalose levels suggested that the cells were in a "holding pattern" during the rehydration phase, a concept that was reinforced by cell cycle analyses. Application of a "redescription mining" algorithm suggested that sulfur metabolism is important for cell survival during desiccation and rehydration.
对酿酒酵母BY4743菌株在最低葡萄糖条件下对可控风干(干燥)及随后复水的反应进行了转录分析。观察到参与脂肪酸氧化和乙醛酸循环的基因在干燥过程中表达增加,并在复水阶段保持这种状态。当将干燥样品的BY4743表达谱与商业制备的干活性酵母的表达谱进行比较时,观察到了惊人相似的表达变化。这两个通过不同方式干燥的样品具有非常相似的转录谱这一事实支持了以下假设:对干燥的反应是一个协调事件,与脱水所涉及的特定条件无关。还注意到“稳定期必需基因”与干燥过程中上调的基因之间的相似性,表明在不同的降低代谢状态途径中存在共性。细胞外和细胞内葡萄糖及海藻糖水平的趋势表明,细胞在复水阶段处于“维持模式”,细胞周期分析强化了这一概念。应用“重新描述挖掘”算法表明,硫代谢对干燥和复水过程中的细胞存活很重要。