Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian, approximately half a billion years ago. In a previous comparative study of the gene regulatory networks (GRNs) that embody the genomic program for embryogenesis in these animals, we discovered an almost perfectly conserved five-gene network subcircuit required for endoderm specification. We show here that the GRN structure upstream and downstream of the conserved network kernel has, by contrast, diverged extensively. Mesoderm specification is accomplished quite differently; the Delta–Notch signaling system is used in radically distinct ways; and various regulatory genes have been coopted to different functions. The conservation of the conser...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
Developmental gene regulatory networks (GRNs) explain how regulatory states are established in parti...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
Gene regulatory networks (GRNs) for development underlie cell fate specification and differentiatio...
Gene regulatory networks (GRNs) for development underlie cell fate specification and differentiatio...
Comparisons of orthologous developmental gene regulatory networks (GRNs) from different organisms ex...
Evolutionary change in morphological features must depend on architectural reorganization of develop...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
Developmental gene regulatory networks (GRNs) explain how regulatory states are established in parti...
The extensive array of morphological diversity among animal taxa represents the product of millions ...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
Gene regulatory networks (GRNs) for development underlie cell fate specification and differentiatio...
Gene regulatory networks (GRNs) for development underlie cell fate specification and differentiatio...
Comparisons of orthologous developmental gene regulatory networks (GRNs) from different organisms ex...
Evolutionary change in morphological features must depend on architectural reorganization of develop...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Evolution of the animal body plan is driven by changes in developmental gene regulatory networks (GR...
The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo...