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Deep sequencing-based expression analysis shows major advances in robustness, resolution and inter-lab portability over five microarray platforms

机译:基于深度测序的表达分析显示了在五个微阵列平台上的鲁棒性,分辨率和实验室间可移植性方面的重大进展

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摘要

The hippocampal expression profiles of wild-type mice and mice transgenic for δC-doublecortin-like kinase were compared with Solexa/Illumina deep sequencing technology and five different microarray platforms. With Illumina's digital gene expression assay, we obtained ∼2.4 million sequence tags per sample, their abundance spanning four orders of magnitude. Results were highly reproducible, even across laboratories. With a dedicated Bayesian model, we found differential expression of 3179 transcripts with an estimated false-discovery rate of 8.5%. This is a much higher figure than found for microarrays. The overlap in differentially expressed transcripts found with deep sequencing and microarrays was most significant for Affymetrix. The changes in expression observed by deep sequencing were larger than observed by microarrays or quantitative PCR. Relevant processes such as calmodulin-dependent protein kinase activity and vesicle transport along microtubules were found affected by deep sequencing but not by microarrays. While undetectable by microarrays, antisense transcription was found for 51% of all genes and alternative polyadenylation for 47%. We conclude that deep sequencing provides a major advance in robustness, comparability and richness of expression profiling data and is expected to boost collaborative, comparative and integrative genomics studies.
机译:使用Solexa / Illumina深度测序技术和五个不同的微阵列平台,比较了野生型小鼠和转基因δC-doublecortin样激酶的小鼠的海马表达谱。通过Illumina的数字基因表达分析,我们每个样品获得了约240万个序列标签,它们的丰度跨越了四个数量级。即使在实验室之间,结果的重现性也很高。使用专用的贝叶斯模型,我们发现3179个转录本的差异表达,估计的错误发现率为8.5%。这个数字比微阵列的数字高得多。深度测序和微阵列发现的差异表达转录本的重叠对于Affymetrix最为重要。通过深度测序观察到的表达变化大于通过微阵列或定量PCR观察到的表达变化。发现相关过程,例如钙调蛋白依赖性蛋白激酶活性和沿微管的囊泡运输,受深度测序影响,但不受微阵列影响。尽管无法通过微阵列检测到,但发现所有基因中有51%发生了反义转录,而47%发生了多聚腺苷酸化。我们得出的结论是,深度测序在表达谱数据的鲁棒性,可比性和丰富性方面提供了重大进展,并有望促进协作,比较和整合基因组学研究。

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