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首页> 外文期刊>Nucleic acids research >Prediction of functional modules based on comparative genome analysis and Gene Ontology application
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Prediction of functional modules based on comparative genome analysis and Gene Ontology application

机译:基于比较基因组分析和基因本体论应用的功能模块预测

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We present a computational method for the prediction of functional modules encoded in microbial genomes. In this work, we have also developed a formal measure to quantify the degree of consistency between the predicted and the known modules, and have carried out statistical significance analysis of consistency measures. We first evaluate the functional relationship between two genes from three different perspectives—phylogenetic profile analysis, gene neighborhood analysis and Gene Ontology assignments. We then combine the three different sources of information in the framework of Bayesian inference, and we use the combined information to measure the strength of gene functional relationship. Finally, we apply a threshold-based method to predict functional modules. By applying this method to Escherichia coli K12, we have predicted 185 functional modules. Our predictions are highly consistent with the previously known functional modules in E.coli. The application results have demonstrated that our approach is highly promising for the prediction of functional modules encoded in a microbial genome.
机译:我们提出了一种预测微生物基因组中编码的功能模块的计算方法。在这项工作中,我们还开发了一种形式化的方法来量化预测模块和已知模块之间的一致性程度,并进行了一致性度量的统计显着性分析。我们首先从三个不同的角度评估两个基因之间的功能关系-系统发育谱分析,基因邻域分析和基因本体论分配。然后,我们在贝叶斯推断的框架中结合了三种不同的信息源,并使用结合的信息来衡量基因功能关系的强度。最后,我们应用基于阈值的方法来预测功能模块。通过将此方法应用于大肠杆菌K12,我们已经预测了185个功能模块。我们的预测与大肠杆菌中以前已知的功能模块高度一致。应用结果表明,我们的方法对于预测微生物基因组中编码的功能模块非常有前途。

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