The eye-antennal imaginal disc of Drosophila melanogaster has often been described as an epithelial monolayer with complex signaling events playing out in two dimensions. However, the imaginal disc actually comprises two opposing epithelia (the peripodial epithelium, or PE, and the disc proper, or DP) separated by a lumen to form a sac-like structure. Recent studies expose complex molecular interactions between the PE and the DP, and reveal dynamic communication between the two tissues. Further findings suggest the PE makes important contributions to DP development by acting as a source of signaling molecules as well as cells. Here we summarize those findings and highlight implications for further research.status: publishe
AbstractLocalized expression of decapentaplegic (dpp) is required for proper development of the Dros...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
AbstractThe Drosophila BMP, decapentaplegic (dpp), controls morphogenesis of the ventral adult head ...
AbstractCells employ a diverse array of signaling mechanisms to establish spatial patterns during de...
AbstractThe Drosophila eye disc is a sac of single layer epithelium with two opposing sides, the per...
All imaginal discs in Drosophila are made up of a layer of columnar epithelium or the disc proper an...
AbstractDrosophila adult structures derive from imaginal discs, which are sacs with apposed epitheli...
Understanding the interactions between distinct epithelial cells would help us to understand the dev...
AbstractThe Decapentaplegic and Notch signaling pathways are thought to direct regional specificatio...
At the level of organ formation, tissue morphogenesis drives developmental processes in animals, oft...
AbstractDrosophila imaginal discs are monolayered epithelial invaginations that grow during larval s...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
AbstractThe function of epithelial tissues is dependent on their polarised architecture, and loss of...
Many epithelial cells are polarized along the plane of the epithelium, a property termed planar cell...
The motor protein non-muscle myosin II is a major driver of the movements that sculpt three dimensio...
AbstractLocalized expression of decapentaplegic (dpp) is required for proper development of the Dros...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
AbstractThe Drosophila BMP, decapentaplegic (dpp), controls morphogenesis of the ventral adult head ...
AbstractCells employ a diverse array of signaling mechanisms to establish spatial patterns during de...
AbstractThe Drosophila eye disc is a sac of single layer epithelium with two opposing sides, the per...
All imaginal discs in Drosophila are made up of a layer of columnar epithelium or the disc proper an...
AbstractDrosophila adult structures derive from imaginal discs, which are sacs with apposed epitheli...
Understanding the interactions between distinct epithelial cells would help us to understand the dev...
AbstractThe Decapentaplegic and Notch signaling pathways are thought to direct regional specificatio...
At the level of organ formation, tissue morphogenesis drives developmental processes in animals, oft...
AbstractDrosophila imaginal discs are monolayered epithelial invaginations that grow during larval s...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
AbstractThe function of epithelial tissues is dependent on their polarised architecture, and loss of...
Many epithelial cells are polarized along the plane of the epithelium, a property termed planar cell...
The motor protein non-muscle myosin II is a major driver of the movements that sculpt three dimensio...
AbstractLocalized expression of decapentaplegic (dpp) is required for proper development of the Dros...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
AbstractThe Drosophila BMP, decapentaplegic (dpp), controls morphogenesis of the ventral adult head ...