Reconstructing lineage relationships between cells within a tissue or organism is a long-standing aim in biology. Traditionally, lineage tracing has been achieved through the (genetic) labeling of a cell followed by the tracking of its offspring. Currently, lineage trajectories can also be predicted using single-cell transcriptomics. Although single-cell transcriptomics provides detailed phenotypic information, the predicted lineage trajectories do not necessarily reflect genetic relationships. Recently, techniques have been developed that unite these strategies. In this Review, we discuss transcriptome-based lineage trajectory prediction algorithms, single-cell genetic lineage tracing, and the promising combination of these techniques for ...
Retrospective lineage tracing has the potential to answer many outstanding questions in the fields o...
The use of single-cell transcriptomics has become a major approach to delineate cell subpopulations ...
Understanding the molecular control of cell fates is central to stem cell research. Such insight req...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
Mapping the paths that stem and progenitor cells take en route to differentiate and elucidating the ...
A fundamental goal of developmental and stem cell biology is to map the developmental history (ontog...
Lineage tracing is the identification of all progeny of a single cell. Although its origins date bac...
Dissecting the relationship between genotype and phenotype is one of the central goals in developmen...
BackgroundSingle-cell transcriptomics allows researchers to investigate complex communities of heter...
Abstract Background Single-cell transcriptomics allows researchers to investigate complex communitie...
Lineage tracing studies combining CRISPR-Cas9 editing and scRNA-seq face several challenges and cann...
Reconstructing the development of lineage relationships and cell fate mapping has been a fundamental...
I present a biological study of differentiating stem cells along with statistical and computational ...
Understanding the genetic and epigenetic programs that control differentiation during development is...
Single-cell transcriptomic assays have enabled the de novo reconstruction of lineage differentiation...
Retrospective lineage tracing has the potential to answer many outstanding questions in the fields o...
The use of single-cell transcriptomics has become a major approach to delineate cell subpopulations ...
Understanding the molecular control of cell fates is central to stem cell research. Such insight req...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
Mapping the paths that stem and progenitor cells take en route to differentiate and elucidating the ...
A fundamental goal of developmental and stem cell biology is to map the developmental history (ontog...
Lineage tracing is the identification of all progeny of a single cell. Although its origins date bac...
Dissecting the relationship between genotype and phenotype is one of the central goals in developmen...
BackgroundSingle-cell transcriptomics allows researchers to investigate complex communities of heter...
Abstract Background Single-cell transcriptomics allows researchers to investigate complex communitie...
Lineage tracing studies combining CRISPR-Cas9 editing and scRNA-seq face several challenges and cann...
Reconstructing the development of lineage relationships and cell fate mapping has been a fundamental...
I present a biological study of differentiating stem cells along with statistical and computational ...
Understanding the genetic and epigenetic programs that control differentiation during development is...
Single-cell transcriptomic assays have enabled the de novo reconstruction of lineage differentiation...
Retrospective lineage tracing has the potential to answer many outstanding questions in the fields o...
The use of single-cell transcriptomics has become a major approach to delineate cell subpopulations ...
Understanding the molecular control of cell fates is central to stem cell research. Such insight req...