ncRNA, epigenetic and genome fluidity, Institut Curie, Centre de Recherche, CNRS UMR 3244, Université Pierre et Marie Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
Methods. 2013 Sep 1;63(1):25-31. doi: 10.1016/j.ymeth.2013.03.009. Epub 2013 Mar 21.
Whole transcriptome RNA-Seq has emerged as a powerful tool in transcriptomics, enabling genome-wide quantitative analysis of gene expression and qualitative identification of novel coding or non-coding RNA species through transcriptome reassembly. Common protocols for preparation of RNA-Seq libraries include an RNA fragmentation step for which several RNA sizing techniques are commercially available. To date, there is no global information about their putative bias on transcriptome analysis. Here we compared the effects of RNase III- and zinc-mediated RNA fragmentation on transcript expression measurement and transcriptome reassembly in the budding yeast Saccharomyces cerevisiae. We observed that RNA cleavage by RNase III is heterogeneous along transcripts with a striking decrease of autocorrelation between adjacent nucleotides along the transcriptome. This had little impact on mRNA expression measurement, but specific classes of transcripts such as abundant non-coding RNAs were underrepresented in the libraries constructed using RNase III. Furthermore, zinc-mediated fragmentation allows proper reassembly of more transcripts, with more precise 5' and 3' ends. Together, our results show that transcriptome reassembly from RNA-Seq data is very sensitive to the RNA fragmentation technique, and that zinc-mediated fragmentation provides more robust and accurate transcript identification than cleavage by RNase III.
全转录组 RNA-Seq 已成为转录组学的有力工具,通过转录组重组装,能够实现对基因表达的全基因组定量分析和新编码或非编码 RNA 种类的定性鉴定。RNA-Seq 文库制备的常见方案包括 RNA 片段化步骤,其中有几种 RNA 定量技术可在商业上获得。迄今为止,关于它们在转录组分析中潜在偏倚的全局信息还没有。在这里,我们比较了 RNase III 和锌介导的 RNA 片段化对 budding yeast Saccharomyces cerevisiae 中转录物表达测量和转录组重组装的影响。我们观察到,RNase III 切割的 RNA 在转录物上是不均匀的,在整个转录组中相邻核苷酸之间的自相关显著下降。这对 mRNA 表达测量的影响很小,但使用 RNase III 构建的文库中,某些类别的转录物(如丰富的非编码 RNA)的代表性不足。此外,锌介导的片段化允许更多转录物的正确重组装,并且 5' 和 3' 端更精确。总之,我们的结果表明,从 RNA-Seq 数据进行转录组重组装对 RNA 片段化技术非常敏感,并且锌介导的片段化比 RNase III 切割提供了更稳健和准确的转录本鉴定。