Detalhes do Documento

Ocean acidification affects the expression of neuroplasticity and neuromodulation markers in seabream

Autor(es): A Costa, Rita ; Olvera, Aurora ; Power, Deborah Mary ; Velez, Zélia

Data: 2022

Identificador Persistente: http://hdl.handle.net/10400.1/19261

Origem: Sapientia - Universidade do Algarve

Assunto(s): Ocean acidification; Gilthead seabream; Olfactory epithelium; Thyroid hormones; Neuroplasticity; Neuromodulation


Descrição

A possible explanation for acidification-induced changes in fish behaviour is that acidification interferes with neurogenesis and modifies the plasticity of neuronal circuitry in the brain. We tested the effects on the olfactory system and brain of gilthead seabream (Sparus aurata) to 4 weeks' exposure to ocean acidification (OA). Olfactory epithelium (OE) morphology changed shortly after OA exposure and persisted over the 4 weeks. Expression of genes related to olfactory transduction, neuronal excitability, synaptic plasticity, GABAergic innervation, and cell proliferation were unchanged in the OE and olfactory bulb (OB) after 4 weeks' exposure. Short-term changes in the ionic content of plasma and extradural fluid (EDF) returned to control levels after 4 weeks' exposure, except for [Cl-], which remained elevated. This suggests that, in general, there is an early physiological response to OA and by 4 weeks a new homeostatic status is achieved. However, expression of genes involved in proliferation, differentiation and survival of undifferentiated neurons were modified in the brain. In the same brain areas, expression of thyroid hormone signalling genes was altered suggesting modifications in the thyroid-system may be linked to the changes in neuroplasticity and neurogenesis. Overall, the results of the current study are consistent with and effect of OA on neuroplasticity.

Tipo de Documento Artigo científico
Idioma Inglês
Contribuidor(es) Sapientia
Licença CC
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