Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila

dc.contributor.authorAso, Yoshinori
dc.contributor.authorSitaraman, Divya
dc.contributor.authorIchinose, Toshiharu
dc.contributor.authorKaun, Karla R.
dc.contributor.authorVogt, Katrin
dc.contributor.authorBelliart-Guérin, Ghislain
dc.contributor.authorPlaçais, Pierre-Yves
dc.contributor.authorRobie, Alice A.
dc.contributor.authorYamagata, Nobuhiro
dc.contributor.authorRubin, Gerald M.
dc.date.accessioned2021-06-22T08:57:00Z
dc.date.available2021-06-22T08:57:00Z
dc.date.issued2014-12-23eng
dc.description.abstractAnimals discriminate stimuli, learn their predictive value and use this knowledge to modify their behavior. In Drosophila, the mushroom body (MB) plays a key role in these processes. Sensory stimuli are sparsely represented by ∼2000 Kenyon cells, which converge onto 34 output neurons (MBONs) of 21 types. We studied the role of MBONs in several associative learning tasks and in sleep regulation, revealing the extent to which information flow is segregated into distinct channels and suggesting possible roles for the multi-layered MBON network. We also show that optogenetic activation of MBONs can, depending on cell type, induce repulsion or attraction in flies. The behavioral effects of MBON perturbation are combinatorial, suggesting that the MBON ensemble collectively represents valence. We propose that local, stimulus-specific dopaminergic modulation selectively alters the balance within the MBON network for those stimuli. Our results suggest that valence encoded by the MBON ensemble biases memory-based action selection.eng
dc.description.versionpublishedeng
dc.identifier.doi10.7554/eLife.04580eng
dc.identifier.pmid25535794eng
dc.identifier.ppn1761004468
dc.identifier.urihttps://kops.uni-konstanz.de/handle/123456789/54052
dc.language.isoengeng
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject.ddc570eng
dc.titleMushroom body output neurons encode valence and guide memory-based action selection in Drosophilaeng
dc.typeJOURNAL_ARTICLEeng
dspace.entity.typePublication
kops.citation.bibtex
@article{Aso2014-12-23Mushr-54052,
  year={2014},
  doi={10.7554/eLife.04580},
  title={Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila},
  volume={3},
  journal={eLife},
  author={Aso, Yoshinori and Sitaraman, Divya and Ichinose, Toshiharu and Kaun, Karla R. and Vogt, Katrin and Belliart-Guérin, Ghislain and Plaçais, Pierre-Yves and Robie, Alice A. and Yamagata, Nobuhiro and Rubin, Gerald M.},
  note={Article Number: e04580}
}
kops.citation.iso690ASO, Yoshinori, Divya SITARAMAN, Toshiharu ICHINOSE, Karla R. KAUN, Katrin VOGT, Ghislain BELLIART-GUÉRIN, Pierre-Yves PLAÇAIS, Alice A. ROBIE, Nobuhiro YAMAGATA, Gerald M. RUBIN, 2014. Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila. In: eLife. eLife Sciences Publications. 2014, 3, e04580. eISSN 2050-084X. Available under: doi: 10.7554/eLife.04580deu
kops.citation.iso690ASO, Yoshinori, Divya SITARAMAN, Toshiharu ICHINOSE, Karla R. KAUN, Katrin VOGT, Ghislain BELLIART-GUÉRIN, Pierre-Yves PLAÇAIS, Alice A. ROBIE, Nobuhiro YAMAGATA, Gerald M. RUBIN, 2014. Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila. In: eLife. eLife Sciences Publications. 2014, 3, e04580. eISSN 2050-084X. Available under: doi: 10.7554/eLife.04580eng
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