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单细胞的mRNA测序全转录组分析

mRNA-Seq whole-transcriptome analysis of a single cell.

作者信息

Tang Fuchou, Barbacioru Catalin, Wang Yangzhou, Nordman Ellen, Lee Clarence, Xu Nanlan, Wang Xiaohui, Bodeau John, Tuch Brian B, Siddiqui Asim, Lao Kaiqin, Surani M Azim

机构信息

Wellcome Trust-Cancer Research UK Gurdon Institute of Cancer and Developmental Biology, University of Cambridge, Cambridge, UK.

出版信息

Nat Methods. 2009 May;6(5):377-82. doi: 10.1038/nmeth.1315. Epub 2009 Apr 6.

Abstract

Next-generation sequencing technology is a powerful tool for transcriptome analysis. However, under certain conditions, only a small amount of material is available, which requires more sensitive techniques that can preferably be used at the single-cell level. Here we describe a single-cell digital gene expression profiling assay. Using our mRNA-Seq assay with only a single mouse blastomere, we detected the expression of 75% (5,270) more genes than microarray techniques and identified 1,753 previously unknown splice junctions called by at least 5 reads. Moreover, 8-19% of the genes with multiple known transcript isoforms expressed at least two isoforms in the same blastomere or oocyte, which unambiguously demonstrated the complexity of the transcript variants at whole-genome scale in individual cells. Finally, for Dicer1(-/-) and Ago2(-/-) (Eif2c2(-/-)) oocytes, we found that 1,696 and 1,553 genes, respectively, were abnormally upregulated compared to wild-type controls, with 619 genes in common.

摘要

下一代测序技术是转录组分析的强大工具。然而,在某些情况下,可用材料量很少,这就需要更灵敏的技术,最好能在单细胞水平上使用。在此,我们描述了一种单细胞数字基因表达谱分析方法。使用我们的mRNA测序方法,仅对单个小鼠卵裂球进行检测,我们检测到比微阵列技术多75%(5270个)的基因表达,并鉴定出至少由5条 reads 支持的1753个先前未知的剪接接头。此外,8%至19%具有多个已知转录本异构体的基因在同一个卵裂球或卵母细胞中表达了至少两种异构体,这明确证明了单个细胞中全基因组规模转录本变体的复杂性。最后,对于Dicer1(-/-)和Ago2(-/-)(Eif2c2(-/-))卵母细胞,我们发现与野生型对照相比,分别有1696个和1553个基因异常上调,其中有619个基因是共有的。

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