An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.

Oxytocin/vasopressin-related neuropeptides are highly conserved and play major roles in regulating social behavior across vertebrates. However, whether their insect orthologue, inotocin, regulates the behavior of social groups remains unknown. Here, we show that in the clonal raider ant Ooceraea bir...

Full description

Bibliographic Details
Main Authors: Ingrid Fetter-Pruneda, Taylor Hart, Yuko Ulrich, Asaf Gal, Peter R Oxley, Leonora Olivos-Cisneros, Margaret S Ebert, Manija A Kazmi, Jennifer L Garrison, Cornelia I Bargmann, Daniel J C Kronauer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-06-01
Series:PLoS Biology
Online Access:https://doi.org/10.1371/journal.pbio.3001305
id doaj-a67e1de7c735435e9c074c81cd34cadd
record_format Article
spelling doaj-a67e1de7c735435e9c074c81cd34cadd2021-07-16T04:32:57ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852021-06-01196e300130510.1371/journal.pbio.3001305An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.Ingrid Fetter-PrunedaTaylor HartYuko UlrichAsaf GalPeter R OxleyLeonora Olivos-CisnerosMargaret S EbertManija A KazmiJennifer L GarrisonCornelia I BargmannDaniel J C KronauerOxytocin/vasopressin-related neuropeptides are highly conserved and play major roles in regulating social behavior across vertebrates. However, whether their insect orthologue, inotocin, regulates the behavior of social groups remains unknown. Here, we show that in the clonal raider ant Ooceraea biroi, individuals that perform tasks outside the nest have higher levels of inotocin in their brains than individuals of the same age that remain inside the nest. We also show that older ants, which spend more time outside the nest, have higher inotocin levels than younger ants. Inotocin thus correlates with the propensity to perform tasks outside the nest. Additionally, increasing inotocin pharmacologically increases the tendency of ants to leave the nest. However, this effect is contingent on age and social context. Pharmacologically treated older ants have a higher propensity to leave the nest only in the presence of larvae, whereas younger ants seem to do so only in the presence of pupae. Our results suggest that inotocin signaling plays an important role in modulating behaviors that correlate with age, such as social foraging, possibly by modulating behavioral response thresholds to specific social cues. Inotocin signaling thereby likely contributes to behavioral individuality and division of labor in ant societies.https://doi.org/10.1371/journal.pbio.3001305
collection DOAJ
language English
format Article
sources DOAJ
author Ingrid Fetter-Pruneda
Taylor Hart
Yuko Ulrich
Asaf Gal
Peter R Oxley
Leonora Olivos-Cisneros
Margaret S Ebert
Manija A Kazmi
Jennifer L Garrison
Cornelia I Bargmann
Daniel J C Kronauer
spellingShingle Ingrid Fetter-Pruneda
Taylor Hart
Yuko Ulrich
Asaf Gal
Peter R Oxley
Leonora Olivos-Cisneros
Margaret S Ebert
Manija A Kazmi
Jennifer L Garrison
Cornelia I Bargmann
Daniel J C Kronauer
An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
PLoS Biology
author_facet Ingrid Fetter-Pruneda
Taylor Hart
Yuko Ulrich
Asaf Gal
Peter R Oxley
Leonora Olivos-Cisneros
Margaret S Ebert
Manija A Kazmi
Jennifer L Garrison
Cornelia I Bargmann
Daniel J C Kronauer
author_sort Ingrid Fetter-Pruneda
title An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
title_short An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
title_full An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
title_fullStr An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
title_full_unstemmed An oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
title_sort oxytocin/vasopressin-related neuropeptide modulates social foraging behavior in the clonal raider ant.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2021-06-01
description Oxytocin/vasopressin-related neuropeptides are highly conserved and play major roles in regulating social behavior across vertebrates. However, whether their insect orthologue, inotocin, regulates the behavior of social groups remains unknown. Here, we show that in the clonal raider ant Ooceraea biroi, individuals that perform tasks outside the nest have higher levels of inotocin in their brains than individuals of the same age that remain inside the nest. We also show that older ants, which spend more time outside the nest, have higher inotocin levels than younger ants. Inotocin thus correlates with the propensity to perform tasks outside the nest. Additionally, increasing inotocin pharmacologically increases the tendency of ants to leave the nest. However, this effect is contingent on age and social context. Pharmacologically treated older ants have a higher propensity to leave the nest only in the presence of larvae, whereas younger ants seem to do so only in the presence of pupae. Our results suggest that inotocin signaling plays an important role in modulating behaviors that correlate with age, such as social foraging, possibly by modulating behavioral response thresholds to specific social cues. Inotocin signaling thereby likely contributes to behavioral individuality and division of labor in ant societies.
url https://doi.org/10.1371/journal.pbio.3001305
work_keys_str_mv AT ingridfetterpruneda anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT taylorhart anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT yukoulrich anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT asafgal anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT peterroxley anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT leonoraolivoscisneros anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT margaretsebert anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT manijaakazmi anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT jenniferlgarrison anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT corneliaibargmann anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT danieljckronauer anoxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT ingridfetterpruneda oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT taylorhart oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT yukoulrich oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT asafgal oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT peterroxley oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT leonoraolivoscisneros oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT margaretsebert oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT manijaakazmi oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT jenniferlgarrison oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT corneliaibargmann oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
AT danieljckronauer oxytocinvasopressinrelatedneuropeptidemodulatessocialforagingbehaviorintheclonalraiderant
_version_ 1721297997626605568