Center for Bioinformatics Tübingen, Department of Information and Cognitive Sciences, University of Tübingen, D-72076 Tübingen, Germany.
BMC Genomics. 2010 Jan 6;11:10. doi: 10.1186/1471-2164-11-10.
During the lifetime of a fermenter culture, the soil bacterium S. coelicolor undergoes a major metabolic switch from exponential growth to antibiotic production. We have studied gene expression patterns during this switch, using a specifically designed Affymetrix genechip and a high-resolution time-series of fermenter-grown samples.
Surprisingly, we find that the metabolic switch actually consists of multiple finely orchestrated switching events. Strongly coherent clusters of genes show drastic changes in gene expression already many hours before the classically defined transition phase where the switch from primary to secondary metabolism was expected. The main switch in gene expression takes only 2 hours, and changes in antibiotic biosynthesis genes are delayed relative to the metabolic rearrangements. Furthermore, global variation in morphogenesis genes indicates an involvement of cell differentiation pathways in the decision phase leading up to the commitment to antibiotic biosynthesis.
Our study provides the first detailed insights into the complex sequence of early regulatory events during and preceding the major metabolic switch in S. coelicolor, which will form the starting point for future attempts at engineering antibiotic production in a biotechnological setting.
在发酵罐培养过程中,土壤细菌变铅青链霉菌经历了从指数生长到抗生素生产的重大代谢转变。我们使用专门设计的 Affymetrix 基因芯片和高分辨率的发酵罐培养样本时间序列,研究了这一转变过程中的基因表达模式。
令人惊讶的是,我们发现这个代谢转变实际上由多个精细协调的开关事件组成。强烈一致的基因簇显示,在经典定义的从初级代谢到次级代谢的转变阶段之前的许多小时,基因表达就发生了剧烈变化。主要的基因表达转变只需要 2 个小时,而抗生素生物合成基因的变化相对于代谢重排是延迟的。此外,形态发生基因的全局变化表明细胞分化途径参与了决定阶段,导致了对抗生素生物合成的承诺。
我们的研究首次详细了解了变铅青链霉菌主要代谢转变过程中和之前的复杂早期调控事件序列,这将为未来在生物技术环境中工程抗生素生产的尝试提供起点。