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蓝藻中Pho调控子的计算预测

Computational prediction of Pho regulons in cyanobacteria.

作者信息

Su Zhengchang, Olman Victor, Xu Ying

机构信息

Bioinformatics Research Center and Department of Computer Science, the University of North Carolina at Charlotte, Charlotte, NC 28233, USA.

出版信息

BMC Genomics. 2007 Jun 8;8:156. doi: 10.1186/1471-2164-8-156.

Abstract

BACKGROUND

Phosphorus is an essential element for all life forms. However, it is limiting in most ecological environments where cyanobacteria inhabit. Elucidation of the phosphorus assimilation pathways in cyanobacteria will further our understanding of the physiology and ecology of this important group of microorganisms. However, a systematic study of the Pho regulon, the core of the phosphorus assimilation pathway in a cyanobacterium, is hitherto lacking.

RESULTS

We have predicted and analyzed the Pho regulons in 19 sequenced cyanobacterial genomes using a highly effective scanning algorithm that we have previously developed. Our results show that different cyanobacterial species/ecotypes may encode diverse sets of genes responsible for the utilization of various sources of phosphorus, ranging from inorganic phosphate, phosphodiester, to phosphonates. Unlike in E. coli, some cyanobacterial genes that are directly involved in phosphorus assimilation seem to not be under the regulation of the regulator SphR (orthologue of PhoB in E coli.) in some species/ecotypes. On the other hand, SphR binding sites are found for genes known to play important roles in other biological processes. These genes might serve as bridging points to coordinate the phosphorus assimilation and other biological processes. More interestingly, in three cyanobacterial genomes where no sphR gene is encoded, our results show that there is virtually no functional SphR binding site, suggesting that transcription regulators probably play an important role in retaining their binding sites.

CONCLUSION

The Pho regulons in cyanobacteria are highly diversified to accommodate to their respective living environments. The phosphorus assimilation pathways in cyanobacteria are probably tightly coupled to a number of other important biological processes. The loss of a regulator may lead to the rapid loss of its binding sites in a genome.

摘要

背景

磷是所有生命形式所必需的元素。然而,在大多数蓝藻栖息的生态环境中,磷是一种限制性元素。阐明蓝藻中的磷同化途径将有助于我们进一步了解这一重要微生物群体的生理学和生态学。然而,迄今为止,尚未对蓝藻中磷同化途径的核心——Pho调控子进行系统研究。

结果

我们使用先前开发的高效扫描算法,对19个已测序的蓝藻基因组中的Pho调控子进行了预测和分析。我们的结果表明,不同的蓝藻物种/生态型可能编码负责利用各种磷源的不同基因集,这些磷源包括无机磷酸盐、磷酸二酯和膦酸盐。与大肠杆菌不同,在某些物种/生态型中,一些直接参与磷同化的蓝藻基因似乎不受调节因子SphR(大肠杆菌中PhoB的同源物)的调控。另一方面,在已知在其他生物过程中起重要作用的基因中发现了SphR结合位点。这些基因可能作为连接点来协调磷同化和其他生物过程。更有趣的是,在三个未编码sphR基因的蓝藻基因组中,我们的结果表明几乎没有功能性的SphR结合位点,这表明转录调节因子可能在保留其结合位点方面发挥重要作用。

结论

蓝藻中的Pho调控子高度多样化,以适应其各自的生存环境。蓝藻中的磷同化途径可能与许多其他重要的生物过程紧密耦合。调节因子的缺失可能导致其在基因组中的结合位点迅速丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a09/1906773/a90c16802789/1471-2164-8-156-1.jpg

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