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Global Analysis of Circadian Expression in the Cyanobacterium Synechocystis sp. Strain PCC 6803

机译:蓝藻蓝藻属中昼夜节律表达的整体分析。应变PCC 6803

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摘要

Cyanobacteria are the only bacterial species found to have a circadian clock. We used DNA microarrays to examine circadian expression patterns in the cyanobacterium Synechocystis sp. strain PCC 6803. Our analysis identified 54 (2%) and 237 (9%) genes that exhibited circadian rhythms under stringent and relaxed filtering conditions, respectively. The expression of most cycling genes peaked around the time of transition from subjective day to night, suggesting that the main role of the circadian clock in Synechocystis is to adjust the physiological state of the cell to the upcoming night environment. There were several chromosomal regions where neighboring genes were expressed with similar circadian patterns. The physiological functions of the cycling genes were diverse and included a wide variety of metabolic pathways, membrane transport, and signal transduction. Genes involved in respiration and poly(3-hydroxyalkanoate) synthesis showed coordinated circadian expression, suggesting that the regulation is important for the supply of energy and carbon source in the night. Genes involved in transcription and translation also followed circadian cycling patterns. These genes may be important for output of the rhythmic information generated by the circadian clock. Our findings provided critical insights into the importance of the circadian clock on cellular physiology and the mechanism of clock-controlled gene regulation.
机译:蓝细菌是唯一发现具有生物钟的细菌。我们使用DNA微阵列检查蓝藻Synechocystis sp中的昼夜节律表达模式。菌株PCC6803。我们的分析确定了分别在严格和宽松过滤条件下表现出昼夜节律的54个(2%)和237个(9%)基因。大多数循环基因的表达在从主观白天到夜晚过渡的时间附近达到峰值,这表明昼夜节律在突囊藻中的主要作用是将细胞的生理状态调节到即将到来的夜间环境。有几个染色体区域,其中邻近的基因以相似的昼夜节律模式表达。循环基因的生理功能是多种多样的,包括各种各样的代谢途径,膜转运和信号转导。参与呼吸作用和聚(3-羟基链烷酸酯)合成的基因显示协调的昼夜节律表达,这表明该调节对于夜间的能量和碳源供应很重要。参与转录和翻译的基因也遵循昼夜节律循环模式。这些基因对于生物钟产生的节奏信息的输出可能很重要。我们的发现为昼夜节律对细胞生理的重要性以及时钟控制的基因调控机制提供了重要的见解。

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