The simultaneous sequencing of a single cell's genome and transcriptome offers a powerful means to dissect genetic variation and its effect on gene expression. Here we describe G&T-seq, a method for separating and sequencing genomic DNA and full-length mRNA from single cells. By applying G&T-seq to over 220 single cells from mice and humans, we discovered cellular properties that could not be inferred from DNA or RNA sequencing alone
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
Recent advances in single-cell sequencing hold great potential for exploring biological systems with...
The ability to simultaneously sequence the genome and transcriptome of the same single cell offers a...
The simultaneous sequencing of a single cell's genome and transcriptome offers a powerful means to d...
The simultaneous sequencing of a single cell's genome and transcriptome offers a powerful means to d...
Parallel sequencing of a single cell's genome and transcriptome provides a powerful tool for dissect...
Parallel sequencing of a single cell's genome and transcriptome provides a powerful tool for dissect...
Single-cell genomics and single-cell transcriptomics have emerged as powerful tools to study the bio...
Single-cell genomics and single-cell transcriptomics have emerged as powerful tools to study the bio...
Although all cells in a human body are descendant from a single cell –i.e. the zygote– the genetic c...
For the past several decades, due to technical limitations, the field of transcriptomics has focused...
Cellular Indexing of Transcriptomes and Epitopes by Sequencing (CITE-seq) is a recently established ...
Cellular Indexing of Transcriptomes and Epitopes by Sequencing (CITE-seq) is a recently established ...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
Recent advances in single-cell sequencing hold great potential for exploring biological systems with...
The ability to simultaneously sequence the genome and transcriptome of the same single cell offers a...
The simultaneous sequencing of a single cell's genome and transcriptome offers a powerful means to d...
The simultaneous sequencing of a single cell's genome and transcriptome offers a powerful means to d...
Parallel sequencing of a single cell's genome and transcriptome provides a powerful tool for dissect...
Parallel sequencing of a single cell's genome and transcriptome provides a powerful tool for dissect...
Single-cell genomics and single-cell transcriptomics have emerged as powerful tools to study the bio...
Single-cell genomics and single-cell transcriptomics have emerged as powerful tools to study the bio...
Although all cells in a human body are descendant from a single cell –i.e. the zygote– the genetic c...
For the past several decades, due to technical limitations, the field of transcriptomics has focused...
Cellular Indexing of Transcriptomes and Epitopes by Sequencing (CITE-seq) is a recently established ...
Cellular Indexing of Transcriptomes and Epitopes by Sequencing (CITE-seq) is a recently established ...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
Recent advances in single-cell sequencing hold great potential for exploring biological systems with...