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The Transcriptional Landscape of the Photosynthetic Model Cyanobacterium Synechocystis sp. PCC6803

机译:光合模型蓝藻蓝藻的转录景观。 PCC6803

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摘要

Cyanobacteria exhibit a great capacity to adapt to different environmental conditions through changes in gene expression. Although this plasticity has been extensively studied in the model cyanobacterium Synechocystis sp. PCC 6803, a detailed analysis of the coordinated transcriptional adaption across varying conditions is lacking. Here, we report a meta-analysis of 756 individual microarray measurements conducted in 37 independent studies-the most comprehensive study of the Synechocystis transcriptome to date. Using stringent statistical evaluation, we characterized the coordinated adaptation of Synechocystis’ gene expression on systems level. Evaluation of the data revealed that the photosynthetic apparatus is subjected to greater changes in expression than other cellular components. Nevertheless, network analyses indicated a significant degree of transcriptional coordination of photosynthesis and various metabolic processes, and revealed the tight co-regulation of components of photosystems I, II and phycobilisomes. Detailed inspection of the integrated data led to the discovery a variety of regulatory patterns and novel putative photosynthetic genes. Intriguingly, global clustering analyses suggested contrasting transcriptional response of metabolic and regulatory genes stress to conditions. The integrated Synechocystis transcriptome can be accessed and interactively analyzed via the CyanoEXpress website
机译:蓝细菌具有通过改变基因表达来适应不同环境条件的巨大能力。尽管已经在模型蓝藻Synechocystis sp。中广泛研究了这种可塑性。 PCC 6803,缺乏在不同条件下的协调转录适应性的详细分析。在这里,我们报告了对37个独立研究中进行的756个单个微阵列测量值的荟萃分析,这是迄今为止囊突藻转录组最全面的研究。通过严格的统计评估,我们在系统水平上表征了突囊藻的基因表达的协调适应。数据评估表明,光合作用装置比其他细胞成分受到更大的表达变化。然而,网络分析表明光合作用和各种代谢过程的转录协调程度很高,并揭示了光系统I,II和藻胆体组分的紧密共调控。对集成数据的详细检查导致发现了多种调控模式和新颖的假定光合作用基因。有趣的是,全局聚类分析表明,代谢和调控基因应激对条件的转录反应不同。可以通过CyanoEXpress网站访问整合的集胞藻转录组,并进行交互式分析

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