We have examined the process by which cell diversity is generated in neuroblast (NB) lineages in the central nervous system of Drosophila melanogaster. Thoracic NB6-4 (NB6-4t) generates both neurons and glial cells, whereas NB6-4a generates only glial cells in abdominal segments. This is attributed to an asymmetric first division of NB6-4t, localizing prospero (pros) and glial cell missing (gcm) only to the glial precursor cell, and a symmetric division of NB6-4a, where both daughter cells express pros and gcm. Here we show that the NB6-4t lineage represents the ground state, which does not require the input of any homeotic gene, whereas the NB6-4a lineage is specified by the homeotic genes abd-A and Abd-B. They specify the NB6-4a lineage b...
Matching of neurons and glia is necessary for central nervous system development. I aimed to elucida...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...
We have examined the process by which cell diversity is generated in neuroblast (NB) lineages in the...
During development, neural progenitor cells or neuroblasts generate a great intra-and inter-segmenta...
AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter...
The mechanisms controlling the generation of cell diversity in the central nervous system belong to ...
AbstractNeurons and glia are produced in stereotyped patterns after neuroblast cell division during ...
The human central nervous system (CNS) contains a daunting number of cells and tremendous cellular d...
The generation of cellular diversity during early development of nervous system is poorly understood...
Homeotic/Hox genes are known to specify a given developmental pathway by regulating the expression o...
A central challenge for every organism is the generation of cell diversity during development. How d...
Investigations on formation and specification of neural precursor cells in the central nervous syste...
AbstractIn the Drosophila CNS, both neurons and glia are derived from neuroblasts. We have identifie...
AbstractInDrosophila,central nervous system (CNS) formation starts with the delamination from the ne...
Matching of neurons and glia is necessary for central nervous system development. I aimed to elucida...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...
We have examined the process by which cell diversity is generated in neuroblast (NB) lineages in the...
During development, neural progenitor cells or neuroblasts generate a great intra-and inter-segmenta...
AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter...
The mechanisms controlling the generation of cell diversity in the central nervous system belong to ...
AbstractNeurons and glia are produced in stereotyped patterns after neuroblast cell division during ...
The human central nervous system (CNS) contains a daunting number of cells and tremendous cellular d...
The generation of cellular diversity during early development of nervous system is poorly understood...
Homeotic/Hox genes are known to specify a given developmental pathway by regulating the expression o...
A central challenge for every organism is the generation of cell diversity during development. How d...
Investigations on formation and specification of neural precursor cells in the central nervous syste...
AbstractIn the Drosophila CNS, both neurons and glia are derived from neuroblasts. We have identifie...
AbstractInDrosophila,central nervous system (CNS) formation starts with the delamination from the ne...
Matching of neurons and glia is necessary for central nervous system development. I aimed to elucida...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...
The central nervous system (CNS) is the most complex organ in the body, responsible for complex func...