6533b830fe1ef96bd12972bd

RESEARCH PRODUCT

Migration of Neuronal Precursors From the Telencephalic Ventricular Zone Into the Olfactory Bulb in Adult Zebrafish

Shigenori NonakaKazunobu SawamotoJosé Manuel García-verdugoKazuhide AsakawaNorihito KishimotoKoichi KawakamiKohei ShimizuAkihiro UrasakiClara Alfaro-cervello

subject

MaleTelencephalonRostral migratory streamNeurogenesisSubventricular zoneBiologyAnimals Genetically Modifiedblood vesselsLateral ventriclesrostral migratory streamventricular zoneCell MovementLateral VentriclesmedicineAnimalsZebrafishZebrafishNeuronsneuronal migrationCerebrumStem CellsGeneral NeuroscienceNeurogenesisfungiAge Factorsbiology.organism_classificationzebrafishOlfactory BulbNeural stem cellOlfactory bulbadult neurogenesismedicine.anatomical_structurenervous systemFemaleNeuroscience

description

In the brain of adult mammals, neuronal precursors are generated in the subventricular zone in the lateral wall of the lateral ventricles and migrate into the olfactory bulbs (OBs) through a well-studied route called the rostral migratory stream (RMS). Recent studies have revealed that a comparable neural stem cell niche is widely conserved at the ventricular wall of adult vertebrates. However, little is known about the migration route of neuronal precursors in nonmammalian adult brains. Here, we show that, in the adult zebrafish, a cluster of neuronal precursors generated in the telencephalic ventricular zone migrates into the OB via a route equivalent to the mammalian RMS. Unlike the mammalian RMS, these neuronal precursors are not surrounded by glial tubes, although radial glial cells with a single cilium lined the telencephalic ventricular wall, much as in embryonic and neonatal mammals. To observe the migrating neuronal precursors in living brain tissue, we established a brain hemisphere culture using a zebrafish line carrying a GFP transgene driven by the neurogenin1 (ngn1) promoter. In these fish, GFP was observed in the neuronal precursors migrating in the RMS, some of which were aligned with blood vessels. Numerous ngn1:gfp-positive cells were observed migrating tangentially in the RMS-like route medial to the OB. Taken together, our results suggest that the RMS in the adult zebrafish telencephalon is a functional migratory pathway. This is the first evidence for the tangential migration of neuronal precursors in a nonmammalian adult telencephalon. J. Comp. Neurol. 519:3549-3565, 2011. (C) 2011 Wiley-Liss, Inc.

https://fundanet.cipf.es/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=2449