Phenotypic cell-to-cell variability is a fundamental determinant of microbial fitness that contributes to stress adaptation and drug resistance. Gene expression heterogeneity underpins this variability but is challenging to study genome-wide. Here we examine the transcriptomes of >2,000 single fission yeast cells exposed to various environmental conditions by combining imaging, single-cell RNA sequencing and Bayesian true count recovery. We identify sets of highly variable genes during rapid proliferation in constant culture conditions. By integrating single-cell RNA sequencing and cell-size data, we provide insights into genes that are regulated during cell growth and division, including genes whose expression does not scale with cell size...
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Single-cell RNA sequencing is a powerful tool for exploring gene expression heterogeneity, but the r...
The transcriptional responses of yeast cells to diverse stresses typically include gene activation a...
Phenotypic cell-to-cell variability is a fundamental determinant of microbial fitness that contribut...
From bacteria to humans, individual cells within isogenic populations can show significant variation...
AbstractBackgroundGene expression heterogeneity contributes to development as well as disease progre...
Gene expression heterogeneity contributes to development as well as disease progression. Due to tech...
Transcriptional noise is an intrinsic feature of cell populations and plays a driving role in mammal...
The expression level of a single gene can vary substantially within and between species, which might...
Background: Differentiation of metazoan cells requires execution of different gene expression progra...
Data on absolute molecule numbers will empower the modeling, understanding, and comparison of cellul...
Genome-wide regulation of gene expression involves a dynamic epigenetic structure which generates an...
SummaryData on absolute molecule numbers will empower the modeling, understanding, and comparison of...
In this dissertation, we used single-cell RNA sequencing data from five mammalian tissues to charact...
Recent advancements in single-cell and single-molecule imaging technologies have resolved biological...
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Single-cell RNA sequencing is a powerful tool for exploring gene expression heterogeneity, but the r...
The transcriptional responses of yeast cells to diverse stresses typically include gene activation a...
Phenotypic cell-to-cell variability is a fundamental determinant of microbial fitness that contribut...
From bacteria to humans, individual cells within isogenic populations can show significant variation...
AbstractBackgroundGene expression heterogeneity contributes to development as well as disease progre...
Gene expression heterogeneity contributes to development as well as disease progression. Due to tech...
Transcriptional noise is an intrinsic feature of cell populations and plays a driving role in mammal...
The expression level of a single gene can vary substantially within and between species, which might...
Background: Differentiation of metazoan cells requires execution of different gene expression progra...
Data on absolute molecule numbers will empower the modeling, understanding, and comparison of cellul...
Genome-wide regulation of gene expression involves a dynamic epigenetic structure which generates an...
SummaryData on absolute molecule numbers will empower the modeling, understanding, and comparison of...
In this dissertation, we used single-cell RNA sequencing data from five mammalian tissues to charact...
Recent advancements in single-cell and single-molecule imaging technologies have resolved biological...
Traditional gene expression studies have largely ignored cell-to-cell variability in transcription. ...
Single-cell RNA sequencing is a powerful tool for exploring gene expression heterogeneity, but the r...
The transcriptional responses of yeast cells to diverse stresses typically include gene activation a...