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首页> 外文期刊>Scientific reports. >QuantSeq. 3′ Sequencing combined with Salmon provides a fast, reliable approach for high throughput RNA expression analysis
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QuantSeq. 3′ Sequencing combined with Salmon provides a fast, reliable approach for high throughput RNA expression analysis

机译:Quansseq。 3'测序与鲑鱼相结合,为高通量RNA表达分析提供了一种快速,可靠的方法

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摘要

RNA-Seq is increasingly used for the diagnosis of patients, targeting of therapies and for single cell transcriptomics. These applications require cost effective, fast and reliable ways of capturing and analyzing gene expression data. Here we compared Lexogen's QuantSeq which captures only the 3' end of RNA transcripts and Illumina's TruSeq, using both Tophat2 and Salmon for gene quantification. We also compared these results to microarray. This analysis was performed on peripheral blood mononuclear cells stimulated with Poly (I:C), a viral mimic that induces innate antiviral responses. This provides a well-established model to determine if RNA-Seq and QuantSeq identify the same biological signatures. Gene expression levels in QuantSeq and RNA-Seq were strongly correlated (Spearman's rho ~0.8), Salmon and Tophat2 (Spearman's rho??0.9). There was high consistency in protein coding genes, non-concordant genes had a high proportion of shorter, non-coding features. RNA-Seq identified more differentially expressed genes than QuantSeq, both methods outperformed microarray. The same key biological signals emerged in each of these approaches. We conclude that QuantSeq, coupled with a fast quantification method such as Salmon, should provide a viable alternative to traditional RNA-Seq in many applications and may be of particular value in the study of the 3'UTR region of mRNA.
机译:RNA-SEQ越来越多地用于诊断患者,疗法靶向和单细胞转发组。这些应用需要具有成本效益,快速可靠的捕获和分析基因表达数据的方法。在这里,我们将lexools的Quansseq进行比较,只使用TOPHAT2和三文鱼来捕获RNA转录物和Illumina的Truseq的3'末端。我们还将这些结果与微阵列进行了比较。对用聚(I:C)刺激的外周血单核细胞进行该分析,诱导先天抗病毒反应的病毒模拟物。这提供了良好的模型,以确定RNA-SEQ和QUANSEQ是否识别相同的生物签名。 Quansseq和RNA-SEQ中的基因表达水平强烈相关(Spearman的Rho〜0.8),三文鱼和TOPHAT2(Spearman的Rho?> 0.9)。蛋白质编码基因的一致性高,非协调基因具有较短的短,非编码特征的高比例。 RNA-SEQ鉴定了比量子Q的更差异表达的基因,这两种方法都表现出微阵列。这些方法中出现了相同的关键生物信号。我们得出结论,Quansseq与鲑鱼等快速定量方法相结合,应该在许多应用中提供传统的RNA-SEQ的可行替代品,并且在MRNA的3'UTR区域的研究中可能具有特殊值。

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