Uruguayan Insect Research: Seven Decades Shaping Neuroscience

María Constanza Silvera - Daniel Prieto

Resumen:

Insect research has significantly advanced neuroscience by addressing fundamental questions. Uruguay has played a pivotal role in this field, contributing to foundational discoveries that comprise neuronal plasticity, circadian rhythms, and molecular neurodevelopment. Uruguayan researchers have explored synaptic activity-induced changes in developmental proteins at the neuromuscular junction and investigated age-related morphological changes in motor terminals influenced by circadian rhythms. Collaborative efforts have expanded insights into the olfactory glomeruli, revealing synaptic spinules and microcircuitry through advanced microscopy. Molecular investigations have identified temporal expression patterns of synaptic genes during neurodevelopment. Explorations into hypoxic development in the optic lobe have uncovered oxygen-mediated brain size regulation via atypical soluble guanylyl cyclases. Additionally, Uruguayan researchers have elucidated mechanisms of reversible neurodegeneration in mutants, highlighting the utility of D. melanogaster as a model for human neurodegenerative disorders. This review underscores seventy years of Uruguayan contributions to insect neuroscience, demonstrating how despite having a limited number of researchers, Uruguay has embraced and promoted interdisciplinary collaborations and innovative methodologies.


Detalles Bibliográficos
2024
sistemas visuales
hipoxia
sinapsis
neurodegeneración
ultraestructura
ritmos circadianos
neurodesarrollo
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología del Desarrollo
Ciencias Médicas y de la Salud
Medicina Básica
Neurociencias
Inglés
Instituto de Investigaciones Biológicas Clemente Estable
IIBCE en REDI
https://hdl.handle.net/20.500.12381/3550
https://doi.org/10.31219/osf.io/d439p
Acceso abierto
Reconocimiento 4.0 Internacional. (CC BY)
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author María Constanza Silvera
author2 Daniel Prieto
author2_role author
author_facet María Constanza Silvera
Daniel Prieto
author_role author
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870ab4a9450113c9d1d8dc321195ad67
bitstream.checksumAlgorithm.fl_str_mv MD5
MD5
bitstream.url.fl_str_mv https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3550/2/license.txt
https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3550/1/preprint_formatted_240802.pdf
collection IIBCE en REDI
dc.creator.none.fl_str_mv María Constanza Silvera
Daniel Prieto
dc.date.accessioned.none.fl_str_mv 2024-08-04T21:21:20Z
dc.date.available.none.fl_str_mv 2024-08-04T21:21:20Z
dc.date.issued.none.fl_str_mv 2024-08-02
dc.description.abstract.none.fl_txt_mv Insect research has significantly advanced neuroscience by addressing fundamental questions. Uruguay has played a pivotal role in this field, contributing to foundational discoveries that comprise neuronal plasticity, circadian rhythms, and molecular neurodevelopment. Uruguayan researchers have explored synaptic activity-induced changes in developmental proteins at the neuromuscular junction and investigated age-related morphological changes in motor terminals influenced by circadian rhythms. Collaborative efforts have expanded insights into the olfactory glomeruli, revealing synaptic spinules and microcircuitry through advanced microscopy. Molecular investigations have identified temporal expression patterns of synaptic genes during neurodevelopment. Explorations into hypoxic development in the optic lobe have uncovered oxygen-mediated brain size regulation via atypical soluble guanylyl cyclases. Additionally, Uruguayan researchers have elucidated mechanisms of reversible neurodegeneration in mutants, highlighting the utility of D. melanogaster as a model for human neurodegenerative disorders. This review underscores seventy years of Uruguayan contributions to insect neuroscience, demonstrating how despite having a limited number of researchers, Uruguay has embraced and promoted interdisciplinary collaborations and innovative methodologies.
dc.identifier.doi.none.fl_str_mv https://doi.org/10.31219/osf.io/d439p
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12381/3550
dc.language.iso.none.fl_str_mv eng
dc.relation.es.fl_str_mv https://osf.io/preprints/osf/d439p
dc.rights.*.fl_str_mv Acceso abierto
dc.rights.license.none.fl_str_mv Reconocimiento 4.0 Internacional. (CC BY)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:IIBCE en REDI
instname:Instituto de Investigaciones Biológicas Clemente Estable
instacron:Instituto de Investigaciones Biológicas Clemente Estable
dc.subject.anii.none.fl_str_mv Ciencias Naturales y Exactas
Ciencias Biológicas
Biología del Desarrollo
Ciencias Médicas y de la Salud
Medicina Básica
Neurociencias
dc.subject.es.fl_str_mv sistemas visuales
hipoxia
sinapsis
neurodegeneración
ultraestructura
ritmos circadianos
neurodesarrollo
dc.title.none.fl_str_mv Uruguayan Insect Research: Seven Decades Shaping Neuroscience
dc.type.es.fl_str_mv Preprint
dc.type.none.fl_str_mv info:eu-repo/semantics/preprint
description Insect research has significantly advanced neuroscience by addressing fundamental questions. Uruguay has played a pivotal role in this field, contributing to foundational discoveries that comprise neuronal plasticity, circadian rhythms, and molecular neurodevelopment. Uruguayan researchers have explored synaptic activity-induced changes in developmental proteins at the neuromuscular junction and investigated age-related morphological changes in motor terminals influenced by circadian rhythms. Collaborative efforts have expanded insights into the olfactory glomeruli, revealing synaptic spinules and microcircuitry through advanced microscopy. Molecular investigations have identified temporal expression patterns of synaptic genes during neurodevelopment. Explorations into hypoxic development in the optic lobe have uncovered oxygen-mediated brain size regulation via atypical soluble guanylyl cyclases. Additionally, Uruguayan researchers have elucidated mechanisms of reversible neurodegeneration in mutants, highlighting the utility of D. melanogaster as a model for human neurodegenerative disorders. This review underscores seventy years of Uruguayan contributions to insect neuroscience, demonstrating how despite having a limited number of researchers, Uruguay has embraced and promoted interdisciplinary collaborations and innovative methodologies.
eu_rights_str_mv openAccess
format preprint
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instacron_str Instituto de Investigaciones Biológicas Clemente Estable
institution Instituto de Investigaciones Biológicas Clemente Estable
instname_str Instituto de Investigaciones Biológicas Clemente Estable
language eng
network_acronym_str IIBCE
network_name_str IIBCE en REDI
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publishDate 2024
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repository.name.fl_str_mv IIBCE en REDI - Instituto de Investigaciones Biológicas Clemente Estable
repository_id_str 9421_3
rights_invalid_str_mv Reconocimiento 4.0 Internacional. (CC BY)
Acceso abierto
spelling Reconocimiento 4.0 Internacional. (CC BY)Acceso abiertoinfo:eu-repo/semantics/openAccess2024-08-04T21:21:20Z2024-08-04T21:21:20Z2024-08-02https://hdl.handle.net/20.500.12381/3550https://doi.org/10.31219/osf.io/d439pInsect research has significantly advanced neuroscience by addressing fundamental questions. Uruguay has played a pivotal role in this field, contributing to foundational discoveries that comprise neuronal plasticity, circadian rhythms, and molecular neurodevelopment. Uruguayan researchers have explored synaptic activity-induced changes in developmental proteins at the neuromuscular junction and investigated age-related morphological changes in motor terminals influenced by circadian rhythms. Collaborative efforts have expanded insights into the olfactory glomeruli, revealing synaptic spinules and microcircuitry through advanced microscopy. Molecular investigations have identified temporal expression patterns of synaptic genes during neurodevelopment. Explorations into hypoxic development in the optic lobe have uncovered oxygen-mediated brain size regulation via atypical soluble guanylyl cyclases. Additionally, Uruguayan researchers have elucidated mechanisms of reversible neurodegeneration in mutants, highlighting the utility of D. melanogaster as a model for human neurodegenerative disorders. This review underscores seventy years of Uruguayan contributions to insect neuroscience, demonstrating how despite having a limited number of researchers, Uruguay has embraced and promoted interdisciplinary collaborations and innovative methodologies.enghttps://osf.io/preprints/osf/d439psistemas visualeshipoxiasinapsisneurodegeneraciónultraestructuraritmos circadianosneurodesarrolloCiencias Naturales y ExactasCiencias BiológicasBiología del DesarrolloCiencias Médicas y de la SaludMedicina BásicaNeurocienciasUruguayan Insect Research: Seven Decades Shaping NeurosciencePreprintinfo:eu-repo/semantics/preprintInstituto de Investigaciones Biológicas Clemente Estable//Ciencias Naturales y Exactas/Ciencias Biológicas/Biología del Desarrollo//Ciencias Médicas y de la Salud/Medicina Básica/Neurocienciasreponame:IIBCE en REDIinstname:Instituto de Investigaciones Biológicas Clemente Estableinstacron:Instituto de Investigaciones Biológicas Clemente EstableMaría Constanza SilveraDaniel PrietoLICENSElicense.txtlicense.txttext/plain; charset=utf-85151https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3550/2/license.txtfcc8b2ddb26c820405a37f9e0cae7f18MD52ORIGINALpreprint_formatted_240802.pdfpreprint_formatted_240802.pdfPreprintapplication/pdf2498983https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3550/1/preprint_formatted_240802.pdf870ab4a9450113c9d1d8dc321195ad67MD5120.500.12381/35502024-08-04 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spellingShingle Uruguayan Insect Research: Seven Decades Shaping Neuroscience
María Constanza Silvera
sistemas visuales
hipoxia
sinapsis
neurodegeneración
ultraestructura
ritmos circadianos
neurodesarrollo
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología del Desarrollo
Ciencias Médicas y de la Salud
Medicina Básica
Neurociencias
title Uruguayan Insect Research: Seven Decades Shaping Neuroscience
title_full Uruguayan Insect Research: Seven Decades Shaping Neuroscience
title_fullStr Uruguayan Insect Research: Seven Decades Shaping Neuroscience
title_full_unstemmed Uruguayan Insect Research: Seven Decades Shaping Neuroscience
title_short Uruguayan Insect Research: Seven Decades Shaping Neuroscience
title_sort Uruguayan Insect Research: Seven Decades Shaping Neuroscience
topic sistemas visuales
hipoxia
sinapsis
neurodegeneración
ultraestructura
ritmos circadianos
neurodesarrollo
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología del Desarrollo
Ciencias Médicas y de la Salud
Medicina Básica
Neurociencias
url https://hdl.handle.net/20.500.12381/3550
https://doi.org/10.31219/osf.io/d439p