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一种用于 Illumina RNA-Seq 文库制备的高通量方法。

A High-Throughput Method for Illumina RNA-Seq Library Preparation.

机构信息

Department of Plant Biology, University of California Davis, CA, USA.

出版信息

Front Plant Sci. 2012 Aug 28;3:202. doi: 10.3389/fpls.2012.00202. eCollection 2012.

Abstract

With the introduction of cost effective, rapid, and superior quality next generation sequencing techniques, gene expression analysis has become viable for labs conducting small projects as well as large-scale gene expression analysis experiments. However, the available protocols for construction of RNA-sequencing (RNA-Seq) libraries are expensive and/or difficult to scale for high-throughput applications. Also, most protocols require isolated total RNA as a starting point. We provide a cost-effective RNA-Seq library synthesis protocol that is fast, starts with tissue, and is high-throughput from tissue to synthesized library. We have also designed and report a set of 96 unique barcodes for library adapters that are amenable to high-throughput sequencing by a large combination of multiplexing strategies. Our developed protocol has more power to detect differentially expressed genes when compared to the standard Illumina protocol, probably owing to less technical variation amongst replicates. We also address the problem of gene-length biases affecting differential gene expression calls and demonstrate that such biases can be efficiently minimized during mRNA isolation for library preparation.

摘要

随着具有成本效益、快速和高质量的下一代测序技术的引入,基因表达分析已经可以在进行小型项目以及大规模基因表达分析实验的实验室中进行。然而,用于构建 RNA 测序(RNA-Seq)文库的现有方案既昂贵又难以扩展用于高通量应用。此外,大多数方案都需要以分离的总 RNA 作为起始点。我们提供了一种具有成本效益的 RNA-Seq 文库合成方案,该方案快速、从组织开始且从组织到合成文库具有高通量。我们还设计并报告了一组 96 个独特的文库接头条码,这些条码适用于通过多种多重化策略进行高通量测序。与标准的 Illumina 方案相比,我们开发的方案在检测差异表达基因方面具有更大的优势,这可能是由于重复之间的技术差异较小。我们还解决了影响差异基因表达调用的基因长度偏差问题,并证明在为文库制备进行 mRNA 分离过程中可以有效地最小化这种偏差。

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