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Increasing quality, throughput and speed of sample preparation for strand-specific messenger RNA sequencing

机译:提高针对链特异性信使RNA测序的样品制备的质量,通量和速度

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Background RNA-Sequencing ( RNA-seq) is now commonly used to reveal quantitative spatiotemporal snapshots of the transcriptome, the structures of transcripts (splice variants and fusions) and landscapes of expressed mutations. However, standard approaches for library construction typically require relatively high amounts of input RNA, are labor intensive, and are time consuming. Methods? Here, we report the outcome of a systematic effort to optimize and streamline steps in strand-specific RNA-seq library construction. Results? This work has resulted in the identification of an optimized messenger RNA isolation protocol, a potent reverse transcriptase for cDNA synthesis, and an efficient chemistry and a simplified formulation of library construction reagents. We also present an optimization of bead-based purification and size selection designed to maximize the recovery of cDNA fragments. Conclusions These developments have allowed us to assemble a rapid high throughput pipeline that produces high quality data from amounts of total RNA as low as 25?ng. While the focus of this study is on RNA-seq sample preparation, some of these developments are also relevant to other next-generation sequencing library types.
机译:背景技术RNA测序(RNA-seq)现在通常用于揭示转录组的定量时空快照,转录本的结构(剪接变体和融合体)以及表达突变的情况。但是,用于文库构建的标准方法通常需要相对大量的输入RNA,劳动强度大且耗时。方法?在这里,我们报告了优化和简化链特异性RNA-seq库构建步骤的系统努力的结果。结果呢?这项工作已导致鉴定出优化的信使RNA分离方案,用于cDNA合成的有效逆转录酶,高效化学方法和简化的文库构建试剂配方。我们还提出了基于珠的纯化和大小选择的优化,旨在最大程度地回收cDNA片段。结论这些发展使我们能够组装一条快速的高通量管线,该管线可以从低至25ng的总RNA量产生高质量的数据。尽管这项研究的重点是RNA序列样品的制备,但其中一些进展也与其他下一代测序文库类型有关。

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