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Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae

Larval zebrafish possess a number of molecular and genetic advantages for rigorous biological analyses of learning and memory. These advantages have motivated the search for novel forms of memory in these animals that can be exploited for understanding the cellular and molecular bases of vertebrate...

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Autores principales: Roberts, Adam C., Alzagatiti, Joseph B., Ly, Duy T., Chornak, Julia M., Ma, Yuqi, Razee, Asif, Zavradyan, Gohar, Khan, Umair, Lewis, Julia, Natarajan, Aishwarya, Baibussinov, Alisher, Emtage, Jasmine, Komaranchath, Meghna, Richards, Jared, Hoang, Michelle, Alipio, Jason, Laurent, Emma, Kumar, Amit, Campbell, C. S., Stark, Rebecca, Carmona, Javier, Hussain, Anjum, Scaramella, Courtney, Husain, Jenan, Buck, Reed, Jafarpour, Ava, Garcia, Miguel, Mendoza, Steve, Sandoval, Gerardo, Agundez, Brandon, Fink, Amanda, Deutsch, Emily, Hernandez, Sarah C., Arisaka, Katsushi, Glanzman, David L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729299/
https://www.ncbi.nlm.nih.gov/pubmed/33004417
http://dx.doi.org/10.1523/ENEURO.0336-19.2020
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author Roberts, Adam C.
Alzagatiti, Joseph B.
Ly, Duy T.
Chornak, Julia M.
Ma, Yuqi
Razee, Asif
Zavradyan, Gohar
Khan, Umair
Lewis, Julia
Natarajan, Aishwarya
Baibussinov, Alisher
Emtage, Jasmine
Komaranchath, Meghna
Richards, Jared
Hoang, Michelle
Alipio, Jason
Laurent, Emma
Kumar, Amit
Campbell, C. S.
Stark, Rebecca
Carmona, Javier
Hussain, Anjum
Scaramella, Courtney
Husain, Jenan
Buck, Reed
Jafarpour, Ava
Garcia, Miguel
Mendoza, Steve
Sandoval, Gerardo
Agundez, Brandon
Fink, Amanda
Deutsch, Emily
Hernandez, Sarah C.
Arisaka, Katsushi
Glanzman, David L.
author_facet Roberts, Adam C.
Alzagatiti, Joseph B.
Ly, Duy T.
Chornak, Julia M.
Ma, Yuqi
Razee, Asif
Zavradyan, Gohar
Khan, Umair
Lewis, Julia
Natarajan, Aishwarya
Baibussinov, Alisher
Emtage, Jasmine
Komaranchath, Meghna
Richards, Jared
Hoang, Michelle
Alipio, Jason
Laurent, Emma
Kumar, Amit
Campbell, C. S.
Stark, Rebecca
Carmona, Javier
Hussain, Anjum
Scaramella, Courtney
Husain, Jenan
Buck, Reed
Jafarpour, Ava
Garcia, Miguel
Mendoza, Steve
Sandoval, Gerardo
Agundez, Brandon
Fink, Amanda
Deutsch, Emily
Hernandez, Sarah C.
Arisaka, Katsushi
Glanzman, David L.
author_sort Roberts, Adam C.
collection PubMed
description Larval zebrafish possess a number of molecular and genetic advantages for rigorous biological analyses of learning and memory. These advantages have motivated the search for novel forms of memory in these animals that can be exploited for understanding the cellular and molecular bases of vertebrate memory formation and consolidation. Here, we report a new form of behavioral sensitization in zebrafish larvae that is elicited by an aversive chemical stimulus [allyl isothiocyanate (AITC)] and that persists for ≥30 min. This form of sensitization is expressed as enhanced locomotion and thigmotaxis, as well as elevated heart rate. To characterize the neural basis of this nonassociative memory, we used transgenic zebrafish expressing the fluorescent calcium indicator GCaMP6 (Chen et al., 2013); because of the transparency of larval zebrafish, we could optically monitor neural activity in the brain of intact transgenic zebrafish before and after the induction of sensitization. We found a distinct brain area, previously linked to locomotion, that exhibited persistently enhanced neural activity following washout of AITC; this enhanced neural activity correlated with the behavioral sensitization. These results establish a novel form of memory in larval zebrafish and begin to unravel the neural basis of this memory.
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spelling pubmed-77292992020-12-14 Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae Roberts, Adam C. Alzagatiti, Joseph B. Ly, Duy T. Chornak, Julia M. Ma, Yuqi Razee, Asif Zavradyan, Gohar Khan, Umair Lewis, Julia Natarajan, Aishwarya Baibussinov, Alisher Emtage, Jasmine Komaranchath, Meghna Richards, Jared Hoang, Michelle Alipio, Jason Laurent, Emma Kumar, Amit Campbell, C. S. Stark, Rebecca Carmona, Javier Hussain, Anjum Scaramella, Courtney Husain, Jenan Buck, Reed Jafarpour, Ava Garcia, Miguel Mendoza, Steve Sandoval, Gerardo Agundez, Brandon Fink, Amanda Deutsch, Emily Hernandez, Sarah C. Arisaka, Katsushi Glanzman, David L. eNeuro Research Article: New Research Larval zebrafish possess a number of molecular and genetic advantages for rigorous biological analyses of learning and memory. These advantages have motivated the search for novel forms of memory in these animals that can be exploited for understanding the cellular and molecular bases of vertebrate memory formation and consolidation. Here, we report a new form of behavioral sensitization in zebrafish larvae that is elicited by an aversive chemical stimulus [allyl isothiocyanate (AITC)] and that persists for ≥30 min. This form of sensitization is expressed as enhanced locomotion and thigmotaxis, as well as elevated heart rate. To characterize the neural basis of this nonassociative memory, we used transgenic zebrafish expressing the fluorescent calcium indicator GCaMP6 (Chen et al., 2013); because of the transparency of larval zebrafish, we could optically monitor neural activity in the brain of intact transgenic zebrafish before and after the induction of sensitization. We found a distinct brain area, previously linked to locomotion, that exhibited persistently enhanced neural activity following washout of AITC; this enhanced neural activity correlated with the behavioral sensitization. These results establish a novel form of memory in larval zebrafish and begin to unravel the neural basis of this memory. Society for Neuroscience 2020-12-03 /pmc/articles/PMC7729299/ /pubmed/33004417 http://dx.doi.org/10.1523/ENEURO.0336-19.2020 Text en Copyright © 2020 Roberts et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article: New Research
Roberts, Adam C.
Alzagatiti, Joseph B.
Ly, Duy T.
Chornak, Julia M.
Ma, Yuqi
Razee, Asif
Zavradyan, Gohar
Khan, Umair
Lewis, Julia
Natarajan, Aishwarya
Baibussinov, Alisher
Emtage, Jasmine
Komaranchath, Meghna
Richards, Jared
Hoang, Michelle
Alipio, Jason
Laurent, Emma
Kumar, Amit
Campbell, C. S.
Stark, Rebecca
Carmona, Javier
Hussain, Anjum
Scaramella, Courtney
Husain, Jenan
Buck, Reed
Jafarpour, Ava
Garcia, Miguel
Mendoza, Steve
Sandoval, Gerardo
Agundez, Brandon
Fink, Amanda
Deutsch, Emily
Hernandez, Sarah C.
Arisaka, Katsushi
Glanzman, David L.
Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title_full Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title_fullStr Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title_full_unstemmed Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title_short Induction of Short-Term Sensitization by an Aversive Chemical Stimulus in Zebrafish Larvae
title_sort induction of short-term sensitization by an aversive chemical stimulus in zebrafish larvae
topic Research Article: New Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729299/
https://www.ncbi.nlm.nih.gov/pubmed/33004417
http://dx.doi.org/10.1523/ENEURO.0336-19.2020
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