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Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium

Spatiotemporal variations of neurogenesis are thought to account for the evolution of brain shape. In the dorsal telencephalon (pallium) of vertebrates, it remains unresolved which ancestral neurogenesis mode prefigures the highly divergent cytoarchitectures that are seen in extant species. To gain...

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Autores principales: Furlan, Giacomo, Cuccioli, Valentina, Vuillemin, Nelly, Dirian, Lara, Muntasell, Anna Janue, Coolen, Marion, Dray, Nicolas, Bedu, Sébastien, Houart, Corinne, Beaurepaire, Emmanuel, Foucher, Isabelle, Bally-Cuif, Laure
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678050/
https://www.ncbi.nlm.nih.gov/pubmed/29107546
http://dx.doi.org/10.1016/j.cub.2017.09.052
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author Furlan, Giacomo
Cuccioli, Valentina
Vuillemin, Nelly
Dirian, Lara
Muntasell, Anna Janue
Coolen, Marion
Dray, Nicolas
Bedu, Sébastien
Houart, Corinne
Beaurepaire, Emmanuel
Foucher, Isabelle
Bally-Cuif, Laure
author_facet Furlan, Giacomo
Cuccioli, Valentina
Vuillemin, Nelly
Dirian, Lara
Muntasell, Anna Janue
Coolen, Marion
Dray, Nicolas
Bedu, Sébastien
Houart, Corinne
Beaurepaire, Emmanuel
Foucher, Isabelle
Bally-Cuif, Laure
author_sort Furlan, Giacomo
collection PubMed
description Spatiotemporal variations of neurogenesis are thought to account for the evolution of brain shape. In the dorsal telencephalon (pallium) of vertebrates, it remains unresolved which ancestral neurogenesis mode prefigures the highly divergent cytoarchitectures that are seen in extant species. To gain insight into this question, we developed genetic tools to generate here the first 4-dimensional (3D + birthdating time) map of pallium construction in the adult teleost zebrafish. Using a Tet-On-based genetic birthdating strategy, we identify a “sequential stacking” construction mode where neurons derived from the zebrafish pallial germinal zone arrange in outside-in, age-related layers from a central core generated during embryogenesis. We obtained no evidence for overt radial or tangential neuronal migrations. Cre-lox-mediated tracing, which included following Brainbow clones, further demonstrates that this process is sustained by the persistent neurogenic activity of individual pallial neural stem cells (NSCs) from embryo to adult. Together, these data demonstrate that the spatiotemporal control of NSC activity is an important driver of the macroarchitecture of the zebrafish adult pallium. This simple mode of pallium construction shares distinct traits with pallial genesis in mammals and non-mammalian amniotes such as birds or reptiles, suggesting that it may exemplify the basal layout from which vertebrate pallial architectures were elaborated.
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spelling pubmed-56780502017-11-20 Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium Furlan, Giacomo Cuccioli, Valentina Vuillemin, Nelly Dirian, Lara Muntasell, Anna Janue Coolen, Marion Dray, Nicolas Bedu, Sébastien Houart, Corinne Beaurepaire, Emmanuel Foucher, Isabelle Bally-Cuif, Laure Curr Biol Article Spatiotemporal variations of neurogenesis are thought to account for the evolution of brain shape. In the dorsal telencephalon (pallium) of vertebrates, it remains unresolved which ancestral neurogenesis mode prefigures the highly divergent cytoarchitectures that are seen in extant species. To gain insight into this question, we developed genetic tools to generate here the first 4-dimensional (3D + birthdating time) map of pallium construction in the adult teleost zebrafish. Using a Tet-On-based genetic birthdating strategy, we identify a “sequential stacking” construction mode where neurons derived from the zebrafish pallial germinal zone arrange in outside-in, age-related layers from a central core generated during embryogenesis. We obtained no evidence for overt radial or tangential neuronal migrations. Cre-lox-mediated tracing, which included following Brainbow clones, further demonstrates that this process is sustained by the persistent neurogenic activity of individual pallial neural stem cells (NSCs) from embryo to adult. Together, these data demonstrate that the spatiotemporal control of NSC activity is an important driver of the macroarchitecture of the zebrafish adult pallium. This simple mode of pallium construction shares distinct traits with pallial genesis in mammals and non-mammalian amniotes such as birds or reptiles, suggesting that it may exemplify the basal layout from which vertebrate pallial architectures were elaborated. Cell Press 2017-11-06 /pmc/articles/PMC5678050/ /pubmed/29107546 http://dx.doi.org/10.1016/j.cub.2017.09.052 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Furlan, Giacomo
Cuccioli, Valentina
Vuillemin, Nelly
Dirian, Lara
Muntasell, Anna Janue
Coolen, Marion
Dray, Nicolas
Bedu, Sébastien
Houart, Corinne
Beaurepaire, Emmanuel
Foucher, Isabelle
Bally-Cuif, Laure
Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title_full Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title_fullStr Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title_full_unstemmed Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title_short Life-Long Neurogenic Activity of Individual Neural Stem Cells and Continuous Growth Establish an Outside-In Architecture in the Teleost Pallium
title_sort life-long neurogenic activity of individual neural stem cells and continuous growth establish an outside-in architecture in the teleost pallium
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5678050/
https://www.ncbi.nlm.nih.gov/pubmed/29107546
http://dx.doi.org/10.1016/j.cub.2017.09.052
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