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RNA-Seq-quantitative measurement of expression through massively parallel RNA-sequencing.

机译:通过大规模平行RNA测序对表达进行RNA序列定量测量。

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The ability to quantitatively survey the global behavior of transcriptomes has been a key milestone in the field of systems biology, enabled by the advent of DNA microarrays. While this approach has literally transformed our vision and approach to cellular physiology, microarray technology has always been limited by the requirement to decide, a priori, what regions of the genome to examine. While very high density tiling arrays have reduced this limitation for simpler organisms, it remains an obstacle for larger, more complex, eukaryotic genomes. The recent development of "next-generation" massively parallel sequencing (MPS) technologies by companies such as Roche (454 GS FLX), Illumina (Genome Analyzer II), and ABI (AB SOLiD) has completely transformed the way in which quantitative transcriptomics can be done. These new technologies have reduced both the cost-per-reaction and time required by orders of magnitude, making the use of sequencing a cost-effective option for many experimental approaches. One such method that has recently been developed uses MPS technology to directly survey the RNA content of cells, without requiring any of the traditional cloning associated with EST sequencing. This approach, called "RNA-seq", can generate quantitative expression scores that are comparable to microarrays, with the added benefit that the entire transcriptome is surveyed without the requirement of a priori knowledge of transcribed regions. The important advantage of this technique is that not only can quantitative expression measures be made, but transcript structures including alternatively spliced transcript isoforms, can also be identified. This article discusses the experimental approach for both sample preparation and data analysis for the technique of RNA-seq.
机译:定量调查转录组整体行为的能力一直是系统生物学领域的一个重要里程碑,这是由于DNA微阵列的出现而实现的。尽管这种方法从字面上改变了我们对细胞生理学的视野和方法,但微阵列技术始终受到先验决定要检查基因组哪些区域的要求的限制。尽管非常高密度的切片阵列已减少了对简单生物的限制,但它仍然是更大,更复杂的真核基因组的障碍。罗氏(454 GS FLX),Illumina(基因组分析仪II)和ABI(AB SOLiD)等公司对“下一代”大规模并行测序(MPS)技术的最新发展已完全改变了定量转录组学的方法完成。这些新技术将每次反应的成本和所需的时间都减少了几个数量级,使得测序的使用成为许多实验方法的一种经济高效的选择。最近开发的一种此类方法使用MPS技术直接检测细胞的RNA含量,而无需任何与EST测序相关的传统克隆。这种称为“ RNA-seq”的方法可以产生与微阵列相当的定量表达评分,其附加好处是无需事先了解转录区域即可对整个转录组进行调查。该技术的重要优势在于,不仅可以进行定量表达测定,而且还可以鉴定包括剪接的转录本同工型在内的转录本结构。本文讨论了用于RNA序列技术的样品制备和数据分析的实验方法。

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