GnRH-1 Neurons Are Not in the Goofy Group: 123cre Tracing Sets the Record Straight
Amato, E.; Call, M. V.; LeFever, N. M.; Aviles-Carlos, M.; Dolphin, N. M.; Forni, P. E.
Show abstract
The olfactory placode (OP) gives rise to a wide array of chemosensory neurons in the nasal region, including olfactory sensory neurons, vomeronasal sensory neurons, and those of the septal organ and Grueneberg ganglion. During placodal invagination, the OP also produces migratory neurons, including gonadotropin-releasing hormone-1 (GnRH-1) neurons, somatostatin-expressing neurons, Prokineticin Receptor 2 (Prokr2) pioneer/terminal nerve (TN) neurons, which are thought to initiate olfactory bulb development. Despite decades of research, the genetic lineage and molecular identity of OP-derived neuronal types remain under investigation. GnRH-1 neurons play essential roles in reproduction and chemodetection but appear genetically distinct from olfactory and vomeronasal chemosensory neurons. The Golgi-associated olfactory signaling regulator Goofy/Gfy is broadly expressed across the placode-derived nasal chemosensory neurons. To determine whether its expression is specific to nasal chemosensory neurons or it is a shared genetic feature across OP derivatives we characterized Gfy expression and lineage at embryonic and postnatal stages. Our results confirm broad Gfy expression in developing chemosensory neurons and subsets of olfactory pioneer/TN neurons. However, we found that while Gfy was not expressed in GnRH-1 neurons while migrating, analysis at late development and postnatal stages, revealed the existence of Gfy-traced neuronal populations in the basal forebrain, some of which also express GnRH. These findings uncover previously unrecognized genetic heterogeneity among migratory nasal neurons and reinforce previous studies suggesting the existence of additional neurons with nasal origin in the brain. In addition to this, analysis of Gfy expression along the developmental trajectory of vomeronasal sensory neurons at postnatal stages revealed intriguing differences in the developmental dynamics across the two main types of vomeronasal sensory neurons.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Morphogenesis is transcriptionally coupled to neurogenesis during peripheral olfactory organ development 97%
- In Toto imaging of early Enteric Nervous System Development reveals that gut colonization is tied to proliferation downstream of Ret 96%
- Castor is a temporal transcription factor that specifies early born central complex neuron identity 96%
Similar papers in this journal
- Sociosexual behavior requires both activating and repressive roles of Tfap2e/AP-2ε in vomeronasal sensory neurons 97%
- Single cell transcriptomics of vomeronasal neuroepithelium reveals a differential endoplasmic reticulum environment amongst neuronal subtypes 96%
- Loss of Elp1 disrupts trigeminal ganglion neurodevelopment in a model of Familial Dysautonomia 96%
Similar papers in this journal
- Pou3f1 orchestrates a gene regulatory network controlling contralateral retinogeniculate projections 96%
- Single-cell analysis of early chick hypothalamic development reveals that hypothalamic cells are induced from prethalamic-like progenitors. 95%
- Combinatorial transcriptional regulation establishes subtype-appropriate synaptic properties in auditory neurons 95%
Similar papers in this journal
- Gsx2 Regulates Oligodendrocyte Precursor Formation in the Zebrafish Spinal Cord 96%
- YAP/TAZ Maintain the Proliferative Capacity and Structural Organization of Radial Glial Cells During Brain Development 95%
- A gene regulatory network for specification and morphogenesis of a Mauthner Cell homolog in non-vertebrate chordates 95%
Similar papers in this journal
- A central role for Numb/Nbl in multiple Shh-mediated axon repulsion processes 95%
- Temporal single-cell transcriptomic analysis of the sox1a:eGFP transgenic line identified the lateral floor plate progenitor cells as the origin of intraspinal serotonergic neurons 95%
- Parallel visual pathways with topographic versus non-topographic organization connect the Drosophila eyes to the central brain 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.