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JProGO: a novel tool for the functional interpretation of prokaryotic microarray data using Gene Ontology information

机译:JProGO:使用基因本体论信息对原核微阵列数据进行功能解释的新型工具

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摘要

A novel program suite was implemented for the functional interpretation of high-throughput gene expression data based on the identification of Gene Ontology (GO) nodes. The focus of the analysis lies on the interpretation of microarray data from prokaryotes. The three well established statistical methods of the threshold value-based Fisher's exact test, as well as the threshold value-independent Kolmogorov–Smirnov and Student's t-test were employed in order to identify the groups of genes with a significantly altered expression profile. Furthermore, we provide the application of the rank-based unpaired Wilcoxon's test for a GO-based microarray data interpretation. Further features of the program include recognition of the alternative gene names and the correction for multiple testing. Obtained results are visualized interactively both as a table and as a GO subgraph including all significant nodes. Currently, JProGO enables the analysis of microarray data from more than 20 different prokaryotic species, including all important model organisms, and thus constitutes a useful web service for the microbial research community. JProGO is freely accessible via the web at the following address:
机译:基于基因本体论(GO)节点的识别,实现了一种用于高通量基因表达数据功能解释的新颖程序套件。分析的重点在于对原核生物芯片数据的解释。基于阈值的Fisher精确检验以及与阈值无关的Kolmogorov–Smirnov和Student t检验的三种公认的统计方法被用来鉴定表达谱有显着改变的基因组。此外,我们提供了基于秩的未配对Wilcoxon检验在基于GO的微阵列数据解释中的应用。该程序的其他功能包括识别替代基因名称和进行多次测试的更正。获得的结果以表格和GO子图的形式交互式地可视化,包括所有重要节点。目前,JProGO能够分析来自20多种不同原核物种(包括所有重要的模式生物)的微阵列数据,因此构成了微生物研究社区的有用Web服务。可通过以下地址通过Web自由访问JProGO:

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