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The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy

In mammals, the suprachiasmatic nucleus (SCN) and the intergeniculate leaflet (IGL) are the main components of the circadian timing system. The SCN, classically known as the master circadian clock, generates rhythms and synchronizes them to environmental cues. The IGL is a key structure that modulat...

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Autores principales: Santana, Nelyane N. M., Barros, Marília A. S., Medeiros, Helder H. A., Santana, Melquisedec A. D., Silva, Lara L., Morais, Paulo L. A. G., Ladd, Fernando V. L., Cavalcante, Jeferson S., Lima, Ruthnaldo R. M., Cavalcante, Judney C., Costa, Miriam S. M. O., Engelberth, Rovena C. J. G., Nascimento Jr., Expedito S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5962671/
https://www.ncbi.nlm.nih.gov/pubmed/29867376
http://dx.doi.org/10.3389/fnana.2018.00036
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author Santana, Nelyane N. M.
Barros, Marília A. S.
Medeiros, Helder H. A.
Santana, Melquisedec A. D.
Silva, Lara L.
Morais, Paulo L. A. G.
Ladd, Fernando V. L.
Cavalcante, Jeferson S.
Lima, Ruthnaldo R. M.
Cavalcante, Judney C.
Costa, Miriam S. M. O.
Engelberth, Rovena C. J. G.
Nascimento Jr., Expedito S.
author_facet Santana, Nelyane N. M.
Barros, Marília A. S.
Medeiros, Helder H. A.
Santana, Melquisedec A. D.
Silva, Lara L.
Morais, Paulo L. A. G.
Ladd, Fernando V. L.
Cavalcante, Jeferson S.
Lima, Ruthnaldo R. M.
Cavalcante, Judney C.
Costa, Miriam S. M. O.
Engelberth, Rovena C. J. G.
Nascimento Jr., Expedito S.
author_sort Santana, Nelyane N. M.
collection PubMed
description In mammals, the suprachiasmatic nucleus (SCN) and the intergeniculate leaflet (IGL) are the main components of the circadian timing system. The SCN, classically known as the master circadian clock, generates rhythms and synchronizes them to environmental cues. The IGL is a key structure that modulates SCN activity. Strategies on the use of time by animals can provide important clues about how some species are adapted to competitive process in nature. Few studies have provided information about temporal niche in bats with special attention on the neural substrate underlies circadian rhythms. The aim of this study was to investigate these circadian centers with respect to their cytoarchitecture, chemical content and retinal projections in the flat-faced fruit-eating bat (Artibeus planirostris), a chiropteran endemic to South America. Unlike other species of phyllostomid bats, the flat-faced fruit-eating bat’s peak of activity occurs 5 h after sunset. This raises several questions about the structure and function of the SCN and IGL in this species. We carried out a mapping of the retinal projections and cytoarchitectural study of the nuclei using qualitative and quantitative approaches. Based on relative optical density findings, the SCN and IGL of the flat-faced fruit-eating bat receive bilaterally symmetric retinal innervation. The SCN contains vasopressin (VP) and vasoactive intestinal polypeptide (VIP) neurons with neuropeptide Y (NPY), serotonin (5-HT) and glutamic acid decarboxylase (GAD) immunopositive fibers/terminals and is marked by intense glial fibrillary acidic protein (GFAP) immunoreactivity. The IGL contains NPY perikarya as well as GAD and 5-HT immunopositive terminals and is characterized by dense GFAP immunostaining. In addition, stereological tools were combined with Nissl stained sections to estimate the volumes of the circadian centers. Taken together, the present results in the flat-faced fruit-eating bat reveal some differences compared to other bat species which might explain the divergence in the hourly activity among bats in order to reduce the competitive potential and resource partitioning in nature.
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spelling pubmed-59626712018-06-04 The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy Santana, Nelyane N. M. Barros, Marília A. S. Medeiros, Helder H. A. Santana, Melquisedec A. D. Silva, Lara L. Morais, Paulo L. A. G. Ladd, Fernando V. L. Cavalcante, Jeferson S. Lima, Ruthnaldo R. M. Cavalcante, Judney C. Costa, Miriam S. M. O. Engelberth, Rovena C. J. G. Nascimento Jr., Expedito S. Front Neuroanat Neuroanatomy In mammals, the suprachiasmatic nucleus (SCN) and the intergeniculate leaflet (IGL) are the main components of the circadian timing system. The SCN, classically known as the master circadian clock, generates rhythms and synchronizes them to environmental cues. The IGL is a key structure that modulates SCN activity. Strategies on the use of time by animals can provide important clues about how some species are adapted to competitive process in nature. Few studies have provided information about temporal niche in bats with special attention on the neural substrate underlies circadian rhythms. The aim of this study was to investigate these circadian centers with respect to their cytoarchitecture, chemical content and retinal projections in the flat-faced fruit-eating bat (Artibeus planirostris), a chiropteran endemic to South America. Unlike other species of phyllostomid bats, the flat-faced fruit-eating bat’s peak of activity occurs 5 h after sunset. This raises several questions about the structure and function of the SCN and IGL in this species. We carried out a mapping of the retinal projections and cytoarchitectural study of the nuclei using qualitative and quantitative approaches. Based on relative optical density findings, the SCN and IGL of the flat-faced fruit-eating bat receive bilaterally symmetric retinal innervation. The SCN contains vasopressin (VP) and vasoactive intestinal polypeptide (VIP) neurons with neuropeptide Y (NPY), serotonin (5-HT) and glutamic acid decarboxylase (GAD) immunopositive fibers/terminals and is marked by intense glial fibrillary acidic protein (GFAP) immunoreactivity. The IGL contains NPY perikarya as well as GAD and 5-HT immunopositive terminals and is characterized by dense GFAP immunostaining. In addition, stereological tools were combined with Nissl stained sections to estimate the volumes of the circadian centers. Taken together, the present results in the flat-faced fruit-eating bat reveal some differences compared to other bat species which might explain the divergence in the hourly activity among bats in order to reduce the competitive potential and resource partitioning in nature. Frontiers Media S.A. 2018-05-15 /pmc/articles/PMC5962671/ /pubmed/29867376 http://dx.doi.org/10.3389/fnana.2018.00036 Text en Copyright © 2018 Santana, Barros, Medeiros, Santana, Silva, Morais, Ladd, Cavalcante, Lima, Cavalcante, Costa, Engelberth and Nascimento. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroanatomy
Santana, Nelyane N. M.
Barros, Marília A. S.
Medeiros, Helder H. A.
Santana, Melquisedec A. D.
Silva, Lara L.
Morais, Paulo L. A. G.
Ladd, Fernando V. L.
Cavalcante, Jeferson S.
Lima, Ruthnaldo R. M.
Cavalcante, Judney C.
Costa, Miriam S. M. O.
Engelberth, Rovena C. J. G.
Nascimento Jr., Expedito S.
The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title_full The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title_fullStr The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title_full_unstemmed The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title_short The Suprachiasmatic Nucleus and the Intergeniculate Leaflet of the Flat-Faced Fruit-Eating Bat (Artibeus planirostris): Retinal Projections and Neurochemical Anatomy
title_sort suprachiasmatic nucleus and the intergeniculate leaflet of the flat-faced fruit-eating bat (artibeus planirostris): retinal projections and neurochemical anatomy
topic Neuroanatomy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5962671/
https://www.ncbi.nlm.nih.gov/pubmed/29867376
http://dx.doi.org/10.3389/fnana.2018.00036
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