SummaryHigh-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...
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
The heterogeneity of tissues, especially in cancer research, is a central issue in transcriptome ana...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
High-throughput sequencing has allowed for unprecedented detail in gene expression analyses, yet its...
SummaryHigh-throughput sequencing has allowed for unprecedented detail in gene expression analyses, ...
Single-cell transcriptomics requires a method that is sensitive, accurate, and reproducible. Here, w...
Cells are encapsulated decision-making units that measure external stimuli, process incoming informa...
Single-cell RNA sequencing (scRNA-seq) offers new possibilities to address biological and medical qu...
Here, we present a modification of single-cell tagged reverse transcription protocol to study gene e...
We described a novel single-cell RNA-seq technique called MR-seq (measure a single-cell transcriptom...
The development of next generation sequencing (NGS) platform-based single-cell RNA sequencing (scRNA...
We developed the Rainbow-seq technology to trace cell division history and reveal single-cell transc...
Single-cell mRNA sequencing (RNA-seq) methods have undergone rapid development in recent years, and ...
In recent years, single-cell transcriptome sequencing has revolutionized biology, allowing for the u...
© 2020 National Academy of Sciences. All rights reserved. Single-cell quantification of RNAs is impo...
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
The heterogeneity of tissues, especially in cancer research, is a central issue in transcriptome ana...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
High-throughput sequencing has allowed for unprecedented detail in gene expression analyses, yet its...
SummaryHigh-throughput sequencing has allowed for unprecedented detail in gene expression analyses, ...
Single-cell transcriptomics requires a method that is sensitive, accurate, and reproducible. Here, w...
Cells are encapsulated decision-making units that measure external stimuli, process incoming informa...
Single-cell RNA sequencing (scRNA-seq) offers new possibilities to address biological and medical qu...
Here, we present a modification of single-cell tagged reverse transcription protocol to study gene e...
We described a novel single-cell RNA-seq technique called MR-seq (measure a single-cell transcriptom...
The development of next generation sequencing (NGS) platform-based single-cell RNA sequencing (scRNA...
We developed the Rainbow-seq technology to trace cell division history and reveal single-cell transc...
Single-cell mRNA sequencing (RNA-seq) methods have undergone rapid development in recent years, and ...
In recent years, single-cell transcriptome sequencing has revolutionized biology, allowing for the u...
© 2020 National Academy of Sciences. All rights reserved. Single-cell quantification of RNAs is impo...
Accurate profiling of minute quantities of RNA in a global manner can enable key advances in many sc...
The heterogeneity of tissues, especially in cancer research, is a central issue in transcriptome ana...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...