Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.

It is accepted that sensory experience instructs the remodelling of neuronal circuits during postnatal development, after their specification has occurred. The story is less clear with regard to the role of experience during the initial formation of neuronal circuits, whether prenatal or postnatal,...

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Main Authors: Pablo Valle-Leija, Eduardo Blanco-Hernández, Rene Drucker-Colín, Gabriel Gutiérrez-Ospina, Roman Vidaltamayo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3325210?pdf=render
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spelling doaj-e21ae095d2484e55b40b404f7426c0772020-11-24T22:25:46ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0174e3535810.1371/journal.pone.0035358Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.Pablo Valle-LeijaEduardo Blanco-HernándezRene Drucker-ColínGabriel Gutiérrez-OspinaRoman VidaltamayoIt is accepted that sensory experience instructs the remodelling of neuronal circuits during postnatal development, after their specification has occurred. The story is less clear with regard to the role of experience during the initial formation of neuronal circuits, whether prenatal or postnatal, since this process is now supposed to be primarily influenced by genetic determinants and spontaneous neuronal firing. Here we evaluated this last issue by examining the effect that postnatal chronic exposure to cognate odorants has on the formation of I7 and M72 glomeruli, iterated olfactory circuits that are formed before and after birth, respectively. We took advantage of double knock-in mice whose I7 and M72 primary afferents express green fluorescent protein and β-galactosidase, correspondingly. Our results revealed that postnatal odorant chronic exposure led to the formation of permanent supernumerary I7 and M72 glomeruli in a dose and time dependent manner. Glomeruli in exposed mice were formed within the same regions of olfactory bulb and occupy small space volumes compared to the corresponding single circuits in non-exposed mice. We suggest that local reorganization of the primary afferents could participate in the process of formation of supernumerary glomeruli. Overall, our results support that sensory experience indeed instructs the permanent formation of specific glomeruli in the mouse olfactory bulb by means of constructivist processes.http://europepmc.org/articles/PMC3325210?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Pablo Valle-Leija
Eduardo Blanco-Hernández
Rene Drucker-Colín
Gabriel Gutiérrez-Ospina
Roman Vidaltamayo
spellingShingle Pablo Valle-Leija
Eduardo Blanco-Hernández
Rene Drucker-Colín
Gabriel Gutiérrez-Ospina
Roman Vidaltamayo
Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
PLoS ONE
author_facet Pablo Valle-Leija
Eduardo Blanco-Hernández
Rene Drucker-Colín
Gabriel Gutiérrez-Ospina
Roman Vidaltamayo
author_sort Pablo Valle-Leija
title Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
title_short Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
title_full Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
title_fullStr Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
title_full_unstemmed Supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
title_sort supernumerary formation of olfactory glomeruli induced by chronic odorant exposure: a constructivist expression of neural plasticity.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description It is accepted that sensory experience instructs the remodelling of neuronal circuits during postnatal development, after their specification has occurred. The story is less clear with regard to the role of experience during the initial formation of neuronal circuits, whether prenatal or postnatal, since this process is now supposed to be primarily influenced by genetic determinants and spontaneous neuronal firing. Here we evaluated this last issue by examining the effect that postnatal chronic exposure to cognate odorants has on the formation of I7 and M72 glomeruli, iterated olfactory circuits that are formed before and after birth, respectively. We took advantage of double knock-in mice whose I7 and M72 primary afferents express green fluorescent protein and β-galactosidase, correspondingly. Our results revealed that postnatal odorant chronic exposure led to the formation of permanent supernumerary I7 and M72 glomeruli in a dose and time dependent manner. Glomeruli in exposed mice were formed within the same regions of olfactory bulb and occupy small space volumes compared to the corresponding single circuits in non-exposed mice. We suggest that local reorganization of the primary afferents could participate in the process of formation of supernumerary glomeruli. Overall, our results support that sensory experience indeed instructs the permanent formation of specific glomeruli in the mouse olfactory bulb by means of constructivist processes.
url http://europepmc.org/articles/PMC3325210?pdf=render
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