Evolutionary change in morphological features must depend on architectural reorganization of developmental gene regulatory networks (GRNs), just as true conservation of morphological features must imply retention of ancestral developmental GRN features. Key elements of the provisional GRN for embryonic endomesoderm development in the sea urchin are here compared with those operating in embryos of a distantly related echinoderm, a starfish. These animals diverged from their common ancestor 520-480 million years ago. Their endomesodermal fate maps are similar, except that sea urchins generate a skeletogenic cell lineage that produces a prominent skeleton lacking entirely in starfish larvae. A relevant set of regulatory genes was isolated from...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Significant new insights have emerged from the analysis of a gene regulatory network (GRN) that unde...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
Developmental gene regulatory networks (GRNs) explain how regulatory states are established in parti...
One of the most fundamental and critical functions of embryological development is the control and r...
One of the most fundamental and critical functions of embryological development is the control and r...
One of the most fundamental and critical functions of embryological development is the control and r...
Comparisons of orthologous developmental gene regulatory networks (GRNs) from different organisms ex...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
<p>One of the central concerns of Evolutionary Developmental biology is to understand how the specif...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
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 ...
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...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Significant new insights have emerged from the analysis of a gene regulatory network (GRN) that unde...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
Developmental gene regulatory networks (GRNs) explain how regulatory states are established in parti...
One of the most fundamental and critical functions of embryological development is the control and r...
One of the most fundamental and critical functions of embryological development is the control and r...
One of the most fundamental and critical functions of embryological development is the control and r...
Comparisons of orthologous developmental gene regulatory networks (GRNs) from different organisms ex...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
<p>One of the central concerns of Evolutionary Developmental biology is to understand how the specif...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...
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 ...
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...
AbstractComparisons of orthologous developmental gene regulatory networks (GRNs) from different orga...
Significant new insights have emerged from the analysis of a gene regulatory network (GRN) that unde...
Sea stars and sea urchins evolved from a last common ancestor that lived at the end of the Cambrian,...