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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26767
Title: Multi-transmitter characteristics and functional specialization of oxytocin neuron subpopulations in zebrafish
Authors: Liu, Sian-Tai
Liao, Bo-Kai 
Shaio, Meng-Shin
Chen, Yen-Lin
Huang, Yu-Fan
Chou, Ming-Yi
Keywords: Isotocin/oxytocin;Vasotocin;Arginine vasopressin;Nonapeptides;Danio rerio
Issue Date: 2026
Publisher: COMPANY BIOLOGISTS LTD
Journal Volume: 229
Journal Issue: 9
Start page/Pages: 16
Source: JOURNAL OF EXPERIMENTAL BIOLOGY
Abstract: 
Teleost oxytocin (OXT) neurons are much fewer in number than those reported in mammals, suggesting that individual neurons may support a broader range of functions. This phenomenon raises the possibility that co-expression of multiple neurotransmitters allows teleost OXT neurons to support various functions. To test this possibility, we systematically examined neurotransmitter characteristics and activity patterns of OXT neuron subtypes in adult zebrafish brain. We found that OXT neurons are distributed across the parvocellular preoptic nucleus (anterior, PPa; posterior, PPp) and the periventricular posterior tuberculum (TPp), segregating by soma size into parvocellular (<= 11.62 mu m) and magnocellular (>11.62 mu m) subtypes. The number of the parvocellular OXT neurons follows an anterior-to-posterior enrichment gradient, whereas magnocellular neurons display an inverse posterior-to-anterior gradient. The OXT neurons co-express glutamatergic, GABAergic and cholinergic neuron markers and show partial co-localization with vasotocin (AVT), while lacking dopaminergic and serotonergic synthesis markers. We also quantified activity-dependent p-S6 expression during mating. p-S6 increased in parvocellular OXT neurons of the PPa and PPp, but not in magnocellular neurons of these regions or in either neuronal type in the TPp. Together, these findings suggest that zebrafish OXT neurons may coordinate behavioral and endocrine functions through multi-transmitter expression and partial AVT co-expression. These results further functional recruitment, with parvocellular neurons in the PPa and PPp possibly involved in mating-related interactions.
URI: http://scholars.ntou.edu.tw/handle/123456789/26767
ISSN: 0022-0949
DOI: 10.1242/jeb.252228
Appears in Collections:水產養殖學系

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