SummaryElucidation of complex phenotypes for mechanistic insights presents a significant challenge in systems biology. We report a strategy to automatically infer mechanistic models of cell fate differentiation based on live-imaging data. We use cell lineage tracing and combinations of tissue-specific marker expression to assay progenitor cell fate and detect fate changes upon genetic perturbation. Based on the cellular phenotypes, we further construct a model for how fate differentiation progresses in progenitor cells and predict cell-specific gene modules and cell-to-cell signaling events that regulate the series of fate choices. We validate our approach in C. elegans embryogenesis by perturbing 20 genes in over 300 embryos. The result no...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
AbstractThe nematode Caenorhabditis elegans (C. elegans) is an ideal model organism to study the cel...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
SummaryElucidating the mechanism of cell lineage differentiation is critical for our understanding o...
The complexity of gene regulatory networks that lead multipotent cells to acquire different cell fat...
Motivation: Cell fate decisions have a strong stochastic component. The identification of the underl...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
AbstractThe invariant lineage of Caenorhabditis elegans has powerful potential for quantifying devel...
During development, cells with identical genomes acquires different fates in a highly organized mann...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
SummaryThe C. elegans cell lineage provides a unique opportunity to look at how cell lineage affects...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
AbstractThe nematode Caenorhabditis elegans (C. elegans) is an ideal model organism to study the cel...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
SummaryElucidating the mechanism of cell lineage differentiation is critical for our understanding o...
The complexity of gene regulatory networks that lead multipotent cells to acquire different cell fat...
Motivation: Cell fate decisions have a strong stochastic component. The identification of the underl...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
AbstractThe invariant lineage of Caenorhabditis elegans has powerful potential for quantifying devel...
During development, cells with identical genomes acquires different fates in a highly organized mann...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Tracking the progeny of single cells is necessary for building lineage trees that recapitulate proce...
SummaryThe C. elegans cell lineage provides a unique opportunity to look at how cell lineage affects...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Pluripotent stem cell research is an active, often controversial field focused on a special type of ...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...
AbstractThe nematode Caenorhabditis elegans (C. elegans) is an ideal model organism to study the cel...
Ontogeny describes the emergence of complex multicellular organisms from single totipotent cells. Th...