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Integrative analysis of large scale expression profiles reveals core transcriptional response and coordination between multiple cellular processes in a cyanobacterium

机译:大规模表达谱的综合分析揭示了蓝细菌的核心转录反应和多个细胞过程之间的协调

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摘要

BackgroundCyanobacteria are the only known prokaryotes capable of oxygenic photosynthesis. They play significant roles in global biogeochemical cycles and carbon sequestration, and have recently been recognized as potential vehicles for production of renewable biofuels. Synechocystis sp. PCC 6803 has been extensively used as a model organism for cyanobacterial studies. DNA microarray studies in Synechocystis have shown varying degrees of transcriptome reprogramming under altered environmental conditions. However, it is not clear from published work how transcriptome reprogramming affects pre-existing networks of fine-tuned cellular processes.
机译:背景蓝细菌是已知的能够进行光合作用的唯一原核生物。它们在全球生物地球化学循环和碳固存中发挥重要作用,最近被公认为是生产可再生生物燃料的潜在工具。集胞藻PCC 6803已被广泛用作蓝细菌研究的模型生物。蓝藻的DNA芯片研究表明,在变化的环境条件下,转录组的重编程程度不同。然而,从已发表的著作中尚不清楚转录组重编程如何影响微调的细胞过程的预先存在的网络。

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