Formation of the three primary germ layers during gastrulation is an essential step in the establishment of the vertebrate body plan and is associated with major transcriptional changes(1-5). Global epigenetic reprogramming accompanies these changes(6-8), but the role of the epigenome in regulating early cell-fate choice remains unresolved, and the coordination between different molecular layers is unclear. Here we describe a single-cell multi-omics map of chromatin accessibility, DNA methylation and RNA expression during the onset of gastrulation in mouse embryos. The initial exit from pluripotency coincides with the establishment of a global repressive epigenetic landscape, followed by the emergence of lineage-specific epigenetic patterns...
In mammals, specification of the three major germ layers occurs during gastrulation, when cells ingr...
SummaryGerm cell specification is accompanied by epigenetic remodeling, the scale and specificity of...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
Formation of the three primary germ layers during gastrulation is an essential step in the establish...
Soon after implantation, the mammalian embryo needs to instruct the specification of the epiblast pr...
During ontogeny, proliferating cells become restricted in their fate through the combined action of ...
Abstract Embryonic development involves massive proliferation and differentiation of cell lineages. ...
Across the animal kingdom, gastrulation represents a key developmental event during which embryonic ...
The mouse inner cell mass (ICM) segregates into the epiblast and primitive endoderm (PrE) lineages c...
Embryonic development involves massive proliferation and differentiation of cell lineages. This must...
Across the animal kingdom, gastrulation represents a key developmental event during which embryonic ...
AbstractInduction of mouse germ cells occurs from the proximal epiblast at around embryonic day (E) ...
In mammals, the canonical somatic DNA methylation landscape is established upon specification of the...
Epigenetic reprogramming, characterized by loss of cytosine methylation and histone modifications, o...
Understanding of the molecular drivers of lineage diversification and tissue patterning during prima...
In mammals, specification of the three major germ layers occurs during gastrulation, when cells ingr...
SummaryGerm cell specification is accompanied by epigenetic remodeling, the scale and specificity of...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
Formation of the three primary germ layers during gastrulation is an essential step in the establish...
Soon after implantation, the mammalian embryo needs to instruct the specification of the epiblast pr...
During ontogeny, proliferating cells become restricted in their fate through the combined action of ...
Abstract Embryonic development involves massive proliferation and differentiation of cell lineages. ...
Across the animal kingdom, gastrulation represents a key developmental event during which embryonic ...
The mouse inner cell mass (ICM) segregates into the epiblast and primitive endoderm (PrE) lineages c...
Embryonic development involves massive proliferation and differentiation of cell lineages. This must...
Across the animal kingdom, gastrulation represents a key developmental event during which embryonic ...
AbstractInduction of mouse germ cells occurs from the proximal epiblast at around embryonic day (E) ...
In mammals, the canonical somatic DNA methylation landscape is established upon specification of the...
Epigenetic reprogramming, characterized by loss of cytosine methylation and histone modifications, o...
Understanding of the molecular drivers of lineage diversification and tissue patterning during prima...
In mammals, specification of the three major germ layers occurs during gastrulation, when cells ingr...
SummaryGerm cell specification is accompanied by epigenetic remodeling, the scale and specificity of...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...