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August 30, 2012Cell Reports1,308 citationsOpen Access

CEL-Seq: Single-Cell RNA-Seq by Multiplexed Linear Amplification

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THTamar HashimshonyFWFlorian WagnerNSNoa Sher

Key Points

  • The aim is to develop an efficient method for single-cell RNA sequencing that addresses RNA quantity limitations.
  • Developed CEL-Seq for barcoding and pooling samples before linear amplification of mRNA.
  • Compared CEL-Seq to a PCR-based amplification method regarding reproducibility and sensitivity.
  • Applied CEL-Seq to study early embryonic development in C. elegans at single-cell resolution.
  • CEL-Seq provides more reproducible and linear results compared to traditional PCR-based methods.
  • Differential transcript distribution is observed between sister cells at the two-cell stage embryo.
  • Zygotic expression in somatic cell lineages shows enrichment for transcription factors.

Abstract

High-throughput sequencing has allowed for unprecedented detail in gene expression analyses, yet its efficient application to single cells is challenged by the small starting amounts of RNA. We have developed CEL-Seq, a method for overcoming this limitation by barcoding and pooling samples before linearly amplifying mRNA with the use of one round of in vitro transcription. We show that CEL-Seq gives more reproducible, linear, and sensitive results than a PCR-based amplification method. We demonstrate the power of this method by studying early C. elegans embryonic development at single-cell resolution. Differential distribution of transcripts between sister cells is seen as early as the two-cell stage embryo, and zygotic expression in the somatic cell lineages is enriched for transcription factors. The robust transcriptome quantifications enabled by CEL-Seq will be useful for transcriptomic analyses of complex tissues containing populations of diverse cell types.

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Cite This Study

Hashimshony et al. (2012) studied this question.

synapsesocial.com/papers/69d6cab3e328128020aa84echttps://doi.org/10.1016/j.celrep.2012.08.003
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