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首页> 外文期刊>Nucleic acids research >Computational inference and experimental validation of the nitrogen assimilation regulatory network in cyanobacterium Synechococcus sp. WH 8102
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Computational inference and experimental validation of the nitrogen assimilation regulatory network in cyanobacterium Synechococcus sp. WH 8102

机译:蓝藻Synechococcus sp。中氮同化调控网络的计算推断和实验验证。 WH 8102

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Deciphering the regulatory networks encoded in the genome of an organism represents one of the most interesting and challenging tasks in the post-genome sequencing era. As an example of this problem, we have predicted a detailed model for the nitrogen assimilation network in cyanobacterium Synechococcus sp. WH 8102 (WH8102) using a computational protocol based on comparative genomics analysis and mining experimental data from related organisms that are relatively well studied. This computational model is in excellent agreement with the microarray gene expression data collected under ammonium-rich versus nitrate-rich growth conditions, suggesting that our computational protocol is capable of predicting biological pathwaysetworks with high accuracy. We then refined the computational model using the microarray data, and proposed a new model for the nitrogen assimilation network in WH8102. An intriguing discovery from this study is that nitrogen assimilation affects the expression of many genes involved in photosynthesis, suggesting a tight coordination between nitrogen assimilation and photosynthesis processes. Moreover, for some of these genes, this coordination is probably mediated by NtcA through the canonical NtcA promoters in their regulatory regions.
机译:解密生物体基因组中编码的调节网络代表了后基因组测序时代最有趣和最具挑战性的任务之一。作为此问题的一个示例,我们已经预测了蓝藻Synechococcus sp。中氮同化网络的详细模型。 WH 8102(WH8102)使用基于比较基因组分析的计算协议,并从相对深入的相关生物中提取了实验数据。该计算模型与在富含铵和富含硝酸盐的生长条件下收集的微阵列基因表达数据高度吻合,这表明我们的计算协议能够准确预测生物途径/网络。然后,我们使用微阵列数据完善了计算模型,并为WH8102中的氮同化网络提出了一个新模型。这项研究的一个有趣发现是氮同化会影响许多参与光合作用的基因的表达,这表明氮同化和光合作用过程之间存在紧密的协调。此外,对于这些基因中的某些,这种协调可能是由NtcA通过其调节区域中的规范NtcA启动子介导的。

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