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R-SAP: a multi-threading computational pipeline for the characterization of high-throughput RNA-sequencing data

机译:R-SAP:多线程计算管道用于表征高通量RNA测序数据

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摘要

The rapid expansion in the quantity and quality of RNA-Seq data requires the development of sophisticated high-performance bioinformatics tools capable of rapidly transforming this data into meaningful information that is easily interpretable by biologists. Currently available analysis tools are often not easily installed by the general biologist and most of them lack inherent parallel processing capabilities widely recognized as an essential feature of next-generation bioinformatics tools. We present here a user-friendly and fully automated RNA-Seq analysis pipeline (R-SAP) with built-in multi-threading capability to analyze and quantitate high-throughput RNA-Seq datasets. R-SAP follows a hierarchical decision making procedure to accurately characterize various classes of transcripts and achieves a near linear decrease in data processing time as a result of increased multi-threading. In addition, RNA expression level estimates obtained using R-SAP display high concordance with levels measured by microarrays.
机译:RNA-Seq数据数量和质量的快速增长需要开发先进的高性能生物信息学工具,该工具能够将这些数据快速转换为有意义的信息,生物学家可以轻松地对其进行解释。普通生物学家通常不容易安装当前可用的分析工具,并且其中大多数缺乏固有的并行处理能力,而这种能力被广泛认为是下一代生物信息学工具的基本功能。我们在这里提出了一种用户友好的,全自动的RNA-Seq分析管道(R-SAP),具有内置的多线程功能,可以分析和定量高通量的RNA-Seq数据集。 R-SAP遵循分级决策程序来准确表征各种类型的成绩单,并由于增加了多线程而实现了数据处理时间的近乎线性的减少。此外,使用R-SAP获得的RNA表达水平估计值与微阵列测量的水平高度一致。

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