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Relaxin-3 neurons of the zebrafish periaqueductal gray mediate behavioral responses evoked by darkness

Created on 02 Oct 2026

Authors

Chia, J. S. M., Martin, M., Padilla, G. M., Jefferson, J., Krishna, V., Vanwalleghem, G., Cheng, R.-K., Krishnan, S., Lovett-Barron, M., Thiele, T. R., Jesuthasan, S.

Abstract

Ambient illumination influences many aspects of brain function, including responses to threats. One brain region proposed to mediate these effects is the periaqueductal gray (PAG), an evolutionarily conserved midbrain structure that contains multiple subpopulations of peptidergic neurons. Here we ask which cell types in the larval zebrafish PAG respond to changes in ambient illumination. By registering post hoc gene expression to neurons recorded during exposure to sensory stimuli, we show that GABAergic PAG neurons expressing the neuropeptide Relaxin-3 (rln3a+) are persistently activated by darkness, while a neighboring subpopulation of GABAergic PAG neurons expressing penka is not. Zebrafish lacking rln3a show a reduction in locomotion during darkness. We propose that darkness recruits Relaxin-3-releasing PAG neurons to promote vigilance and potentiate defense circuits. These results identify a specific peptidergic population of PAG neurons that are potentially relevant to behavioral state dysregulation associated with excessive darkness.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 02 Oct 2026.

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