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Concordance between RNA-sequencing data and DNA microarray data in transcriptome analysis of proliferative and quiescent fibroblasts

机译:增殖和静止成纤维细胞转录组分析中RNA测序数据和DNA芯片数据之间的一致性

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摘要

DNA microarrays and RNA sequencing (RNA-seq) are major technologies for performing high-throughput analysis of transcript abundance. Recently, concerns have been raised regarding the concordance of data derived from the two techniques. Using cDNA libraries derived from normal human foreskin fibroblasts, we measured changes in transcript abundance as cells transitioned from proliferative growth to quiescence using both DNA microarrays and RNA-seq. The internal reproducibility of the RNA-seq data was greater than that of the microarray data. Correlations between the RNA-seq data and the individual microarrays were low, but correlations between the RNA-seq values and the geometric mean of the microarray values were moderate. The two technologies had good agreement when considering probes with the largest (both positive and negative) fold change (FC) values. An independent technique, quantitative reverse-transcription PCR (qRT-PCR), was used to measure the FC of 76 genes between proliferative and quiescent samples, and a higher correlation was observed between the qRT-PCR data and the RNA-seq data than between the qRT-PCR data and the microarray data.
机译:DNA微阵列和RNA测序(RNA-seq)是执行转录物丰度高通量分析的主要技术。最近,人们对从这两种技术得出的数据的一致性提出了关注。使用源自正常人包皮成纤维细胞的cDNA文库,我们使用DNA微阵列和RNA序列测定了细胞从增生性生长转变为静止时转录本丰度的变化。 RNA-seq数据的内部重现性高于微阵列数据。 RNA-seq数据与单个微阵列之间的相关性较低,但RNA-seq值与微阵列值的几何平均值之间的相关性中等。在考虑倍数变化(FC)值最大(正向和负向)的探针时,两种技术具有良好的一致性。一种独立的技术,定量逆转录PCR(qRT-PCR),用于测量增生和静止样品之间76个基因的FC,并且qRT-PCR数据和RNA-seq数据之间的相关性高于两者之间的相关性。 qRT-PCR数据和微阵列数据。

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