All multicellular organisms require axial patterning to transform a single-layer organ primordium to a three-dimensional organ. It involves delineation of anteroposterior (AP), dorsoventral (DV), and proximodistal (PD) axes. Any deviation in this fundamental process results in patterning and growth defects during organogenesis. The Drosophila eye is an excellent model to study axial patterning. In the Drosophila eye, DV lineage is the first axis to be determined, which is followed by generation of the AP axis. The default state of the Drosophila early eye primordium is ventral, and the dorsal fate is established by onset of expression of dorsal eye fate selector pannier (pnr)in a group of cells on the dorsal eye margin. The boundary between...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
In multicellular organisms, organogenesis requires axial patterning to determine Antero-Posterior (A...
Axial patterning is the fundamental process of organogenesis, which entails delineation of three dis...
All multicellular organisms require axial patterning to transform a single-layer organ primordium to...
Axial patterning, a fundamental process during organogenesis, is required for transition of a single...
During organogenesis in all multi-cellular organisms, axial patterning is required to transform a si...
This chapter appears in Volume II of A. Singh and M. Kango-Singh (eds.), Molecular Genetics of Axial...
An important question in developmental biology is that how axial patterning genes work with growth a...
Complex network of genetic and molecular mechanisms governing the process of organogenesis have an i...
During organogenesis in all multi-cellular organisms, axial patterning is required to transform a si...
The developing eye of Drosophila is a well-established model for studying developmental genetic proc...
Undoubtedly, Drosophila melanogaster, fruit fly, has proven to be one of the most popular invertebra...
Undoubtedly, Drosophila melanogaster, fruit fly, has proved to be one of the most popular invertebra...
An interesting question in developmental biology is how any three dimensional organ develops from a ...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
In multicellular organisms, organogenesis requires axial patterning to determine Antero-Posterior (A...
Axial patterning is the fundamental process of organogenesis, which entails delineation of three dis...
All multicellular organisms require axial patterning to transform a single-layer organ primordium to...
Axial patterning, a fundamental process during organogenesis, is required for transition of a single...
During organogenesis in all multi-cellular organisms, axial patterning is required to transform a si...
This chapter appears in Volume II of A. Singh and M. Kango-Singh (eds.), Molecular Genetics of Axial...
An important question in developmental biology is that how axial patterning genes work with growth a...
Complex network of genetic and molecular mechanisms governing the process of organogenesis have an i...
During organogenesis in all multi-cellular organisms, axial patterning is required to transform a si...
The developing eye of Drosophila is a well-established model for studying developmental genetic proc...
Undoubtedly, Drosophila melanogaster, fruit fly, has proven to be one of the most popular invertebra...
Undoubtedly, Drosophila melanogaster, fruit fly, has proved to be one of the most popular invertebra...
An interesting question in developmental biology is how any three dimensional organ develops from a ...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
An interesting question in developmental biology is how any three-dimensional organ develops from a ...
In multicellular organisms, organogenesis requires axial patterning to determine Antero-Posterior (A...
Axial patterning is the fundamental process of organogenesis, which entails delineation of three dis...