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Comparative analysis of methods for gene transcription profiling data derived from different microarray technologies in rat and mouse models of diabetes

机译:糖尿病大鼠和小鼠模型中不同微阵列技术的基因转录谱数据分析方法的比较分析

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Background Microarray technologies are widely used to quantify the abundance of transcripts corresponding to thousands of genes. To maximise the robustness of transcriptome results, we have tested the performance and reproducibility of rat and mouse gene expression data obtained with Affymetrix, Illumina and Operon platforms. Results We present a thorough analysis of the degree of reproducibility provided by analysing the transcriptomic profile of the same animals of several experimental groups under different popular microarray technologies in different tissues. Concordant results from inter- and intra-platform comparisons were maximised by testing many popular computational methods for generating fold changes and significances and by only considering oligonucleotides giving high expression levels. The choice of Affymetrix signal extraction technique was shown to have the greatest effect on the concordance across platforms. In both species, when choosing optimal methods, the agreement between data generated on the Affymetrix and Illumina was excellent; this was verified using qRT-PCR on a selection of genes present on all platforms. Conclusion This study provides an extensive assessment of analytical methods best suited for processing data from different microarray technologies and can assist integration of technologically different gene expression datasets in biological systems.
机译:背景技术微阵列技术被广泛用于量化与数千种基因相对应的转录本的丰度。为了最大化转录组结果的鲁棒性,我们测试了通过Affymetrix,Illumina和Operon平台获得的大鼠和小鼠基因表达数据的性能和可重复性。结果我们通过在不同组织中不同流行的微阵列技术下,通过分析几个实验组的相同动物的转录组谱,提供了对可重复性程度的彻底分析。通过测试许多流行的计算方法以产生倍数变化和显着性,并且仅考虑提供高表达水平的寡核苷酸,可以最大化平台间和平台内比较的一致结果。事实证明,选择Affymetrix信号提取技术对跨平台的一致性影响最大。在这两个物种,选择最佳的方法时,在Affymetrix公司生成的数据之间的一致性和Illumina的是优异的;使用qRT-PCR对所有平台上存在的选定基因进行了验证。结论这项研究对最适合于处理来自不同微阵列技术的数据的分析方法进行了广泛的评估,并可以帮助将技术上不同的基因表达数据集整合到生物系统中。

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