Brief Bioinform. 2017 Nov 1;18(6):1012-1016. doi: 10.1093/bib/bbw088.
Online sequence repositories are teeming with RNA sequencing (RNA-Seq) data from a wide range of eukaryotes. Although most of these data sets contain large numbers of organelle-derived reads, researchers tend to ignore these data, focusing instead on the nuclear-derived transcripts. Consequently, GenBank contains massive amounts of organelle RNA-Seq data that are just waiting to be downloaded and analyzed. Recently, a team of scientists designed an open-source bioinformatics program called ChloroSeq, which systemically analyzes an organelle transcriptome using RNA-Seq. The ChloroSeq pipeline uses RNA-Seq alignment data to deliver detailed analyses of organelle transcriptomes, which can be fed into statistical software for further analysis and for generating graphical representations of the data. In addition to providing data on expression levels via coverage statistics, ChloroSeq can examine splicing efficiency and RNA editing profiles. Ultimately, ChloroSeq provides a well-needed avenue for researchers of all stripes to start exploring organelle transcription and could be a key step toward a more thorough understanding of organelle gene expression.
在线序列存储库中充斥着来自各种真核生物的 RNA 测序 (RNA-Seq) 数据。尽管这些数据集大多数都包含大量的细胞器衍生的读段,但研究人员往往忽略这些数据,而专注于核衍生的转录本。因此,GenBank 中包含大量有待下载和分析的细胞器 RNA-Seq 数据。最近,一组科学家设计了一个名为 ChloroSeq 的开源生物信息学程序,它使用 RNA-Seq 系统地分析细胞器转录组。ChloroSeq 管道使用 RNA-Seq 比对数据来提供细胞器转录组的详细分析,可以将其输入到统计软件中进行进一步分析,并生成数据的图形表示。除了通过覆盖统计数据提供表达水平的数据外,ChloroSeq 还可以检查剪接效率和 RNA 编辑谱。最终,ChloroSeq 为各个领域的研究人员提供了一个探索细胞器转录的迫切需要的途径,并且可能是更全面地理解细胞器基因表达的关键一步。