SummarySystemic signals provided by nutrients and hormones are known to coordinate the growth and proliferation of different organs during development. However, within the brain, it is unclear how these signals influence neural progenitor divisions and neuronal diversity. Here, in the Drosophila visual system, we identify two developmental phases with different sensitivities to dietary nutrients. During early larval stages, nutrients regulate the size of the neural progenitor pool via insulin/PI3K/TOR-dependent symmetric neuroepithelial divisions. During late larval stages, neural proliferation becomes insensitive to dietary nutrients, and the steroid hormone ecdysone acts on Delta/Notch signaling to promote the switch from symmetric mitose...
SummaryIn many metazoans, final adult size depends on the growth rate and the duration of the growth...
AbstractOrganisms modulate their growth according to nutrient availability. Although individual cell...
SummaryThe systemic regulation of stem cells ensures that they meet the needs of the organism during...
International audienceSystemic signals provided by nutrients and hormones are known to coordinate th...
International audienceWhile the growth of the developing brain is known to be well-protected compare...
SummaryAn often-overlooked aspect of neural plasticity is the plasticity of neuronal composition, in...
In order to coordinate brain development with the growth of the organism, neurogenesis is highly dep...
Suboptimal nutrition imposes developmental constraints on infant animals, which marshal adaptive res...
BACKGROUND: Drosophila neuroblasts (NBs) are neural stem cells whose maintenance relies on Notch act...
AbstractBackground: The insulin/IGF-1 signaling pathway controls cellular and organismal growth in m...
Developmental plasticity allows individuals with the same genotype to show different phenotypes in r...
For the construction of complex neural networks, the generation of neurons and glia must be tightly ...
The adaptable transcriptional response to changes in food availability not only ensures animal survi...
The temporal transition of development is flexibly coordinated in the context of the nutrient enviro...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
SummaryIn many metazoans, final adult size depends on the growth rate and the duration of the growth...
AbstractOrganisms modulate their growth according to nutrient availability. Although individual cell...
SummaryThe systemic regulation of stem cells ensures that they meet the needs of the organism during...
International audienceSystemic signals provided by nutrients and hormones are known to coordinate th...
International audienceWhile the growth of the developing brain is known to be well-protected compare...
SummaryAn often-overlooked aspect of neural plasticity is the plasticity of neuronal composition, in...
In order to coordinate brain development with the growth of the organism, neurogenesis is highly dep...
Suboptimal nutrition imposes developmental constraints on infant animals, which marshal adaptive res...
BACKGROUND: Drosophila neuroblasts (NBs) are neural stem cells whose maintenance relies on Notch act...
AbstractBackground: The insulin/IGF-1 signaling pathway controls cellular and organismal growth in m...
Developmental plasticity allows individuals with the same genotype to show different phenotypes in r...
For the construction of complex neural networks, the generation of neurons and glia must be tightly ...
The adaptable transcriptional response to changes in food availability not only ensures animal survi...
The temporal transition of development is flexibly coordinated in the context of the nutrient enviro...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
SummaryIn many metazoans, final adult size depends on the growth rate and the duration of the growth...
AbstractOrganisms modulate their growth according to nutrient availability. Although individual cell...
SummaryThe systemic regulation of stem cells ensures that they meet the needs of the organism during...