By gastrulation the ectodermal territories of the sea urchin embryo have developed an unexpectedly complex spatial pattern of sharply bounded regulatory states, organized orthogonally with respect to the animal/vegetal and oral/aboral axes of the embryo. Although much is known of the gene regulatory network (GRN) linkages that generate these regulatory states, the principles by which the boundaries between them are positioned and maintained have remained undiscovered. Here we determine the encoded genomic logic responsible for the boundaries of the oral aspect of the embryo that separate endoderm from ectoderm and ectoderm from neurogenic apical plate and that delineate the several further subdivisions into which the oral ectoderm per se is...
The trapezoidal ciliated band (CB) of the postgastrular sea urchin embryo surrounds the oral ectoder...
Echinoderms, which are phylogenetically related to vertebrates and produce large numbers of transpar...
Specification of the non-skeletogenic mesoderm (NSM) in sea urchin embryos depends on Delta signalin...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractAs the result of early specification processes, sea urchin embryos eventually form various m...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
AbstractThe regulation of oral–aboral ectoderm specification in the sea urchin embryo has been exten...
The regulation of oral–aboral ectoderm specification in the sea urchin embryo has been extensively s...
The regulation of oral–aboral ectoderm specification in the sea urchin embryo has been extensively s...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
The trapezoidal ciliated band (CB) of the postgastrular sea urchin embryo surrounds the oral ectoder...
Echinoderms, which are phylogenetically related to vertebrates and produce large numbers of transpar...
Specification of the non-skeletogenic mesoderm (NSM) in sea urchin embryos depends on Delta signalin...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractAs the result of early specification processes, sea urchin embryos eventually form various m...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
AbstractThe regulation of oral–aboral ectoderm specification in the sea urchin embryo has been exten...
The regulation of oral–aboral ectoderm specification in the sea urchin embryo has been extensively s...
The regulation of oral–aboral ectoderm specification in the sea urchin embryo has been extensively s...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
The trapezoidal ciliated band (CB) of the postgastrular sea urchin embryo surrounds the oral ectoder...
Echinoderms, which are phylogenetically related to vertebrates and produce large numbers of transpar...
Specification of the non-skeletogenic mesoderm (NSM) in sea urchin embryos depends on Delta signalin...