Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/37374
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dc.contributor.authorPalma, Peter Almaizen_UK
dc.contributor.authorBroughton, Richarden_UK
dc.contributor.authorAbacan, Elfred John Cen_UK
dc.contributor.authorJiménez-Fernández, Eduardoen_UK
dc.contributor.authorGutierrez, Alejandro Pen_UK
dc.contributor.authorMigaud, Herveen_UK
dc.contributor.authorBetancor, Mónica Ben_UK
dc.date.accessioned2025-09-03T00:07:50Z-
dc.date.available2025-09-03T00:07:50Z-
dc.date.issued2025-11en_UK
dc.identifier.other111923en_UK
dc.identifier.urihttp://hdl.handle.net/1893/37374-
dc.description.abstractThis study investigated the impact of winter conditions on the physiology of ballan wrasse (Labrus bergylta), a widely used biological control agent in salmon farming. Fish were subjected to temperatures encompassing winter and summer conditions for short-term (8 days at 6, 10, or 14 °C) or long-term (2.5 months at 7 or 15 °C) period. Their stress, inflammatory, and hepatic responses were then examined. After short-term exposure, no significant differences were found in terms of morphology (bod weight, total length, condition factor), levels of stress markers (cortisol, glucose, and head kidney expression of stress-related genes), and inflammatory markers (circulating lipid inflammatory mediators, liver expression of cox and lox genes). However, at 6 °C, fish exhibited lower lactate levels and increased head kidney cyp11a1 expression, indicating some metabolic and physiological changes during thermal acclimation. In comparison, long-term exposure to 7 °C resulted in stunted growth, along with elevated levels of stress markers, indicating tertiary stress response. Additionally, long-term exposure to 7 °C significantly lowered the levels of lipid anti-inflammatory mediators, particularly those synthesized by COX and derived from DHA and EPA, while increasing the pro-inflammatory cytokine il-1β expression in the head kidney, suggesting a heightened inflammatory capacity at low temperatures. Moreover, ballan wrasse at 7 °C displayed a larger hepatosomatic index and enlarged hepatocytes, indicative of energy substrate accumulation and storage in the liver. Findings highlight the physiological challenges and adaptive responses of ballan wrasse to winter temperatures, providing crucial insights for optimising farming practices and enhancing species' health, welfare and performance during deployment.en_UK
dc.language.isoenen_UK
dc.publisherElsevier BVen_UK
dc.relationPalma PA, Broughton R, Abacan EJC, Jiménez-Fernández E, Gutierrez AP, Migaud H & Betancor MB (2025) Low temperature-driven physiological responses in ballan wrasse (Labrus bergylta): Stress, inflammation, and liver health. <i>Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology</i>, 309, Art. No.: 111923. https://doi.org/10.1016/j.cbpa.2025.111923en_UK
dc.rightsThis is an open access article distributed under the terms of the Creative Commons CC-BY license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. You are not required to obtain permission to reuse this article.en_UK
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en_UK
dc.subjectCleaner fishen_UK
dc.subjectBallan wrasseen_UK
dc.subjectTemperatureen_UK
dc.subjectStressen_UK
dc.subjectInflammationen_UK
dc.subjectImmuneen_UK
dc.subjectLiveren_UK
dc.titleLow temperature-driven physiological responses in ballan wrasse (Labrus bergylta): Stress, inflammation, and liver healthen_UK
dc.typeJournal Articleen_UK
dc.identifier.doi10.1016/j.cbpa.2025.111923en_UK
dc.identifier.pmid40835126en_UK
dc.citation.jtitleComparative Biochemistry and Physiology - Part A: Molecular and Integrative Physiologyen_UK
dc.citation.issn1095-6433en_UK
dc.citation.volume309en_UK
dc.citation.publicationstatusPublisheden_UK
dc.citation.peerreviewedRefereeden_UK
dc.type.statusVoR - Version of Recorden_UK
dc.contributor.funderBiotechnology and Biological Sciences Research Councilen_UK
dc.contributor.funderInnovate UKen_UK
dc.author.emailp.a.palma@stir.ac.uken_UK
dc.citation.date18/08/2025en_UK
dc.contributor.affiliationInstitute of Aquacultureen_UK
dc.contributor.affiliationInstitute of Aquacultureen_UK
dc.contributor.affiliationUniversity of the Philippines Visayasen_UK
dc.contributor.affiliationOtter Ferry Seafish Ltden_UK
dc.contributor.affiliationInstitute of Aquacultureen_UK
dc.contributor.affiliationInstitute of Aquacultureen_UK
dc.identifier.scopusid105013563734en_UK
dc.identifier.wtid2156259en_UK
dc.contributor.orcid0000-0001-5016-6779en_UK
dc.contributor.orcid0000-0001-7339-2760en_UK
dc.contributor.orcid0000-0002-5404-7512en_UK
dc.contributor.orcid0000-0003-1626-7458en_UK
dc.date.accepted2025-08-13en_UK
dcterms.dateAccepted2025-08-13en_UK
dc.date.filedepositdate2025-08-28en_UK
rioxxterms.apcpaiden_UK
rioxxterms.versionVoRen_UK
local.rioxx.authorPalma, Peter Almaiz|0000-0001-5016-6779en_UK
local.rioxx.authorBroughton, Richard|0000-0001-7339-2760en_UK
local.rioxx.authorAbacan, Elfred John C|en_UK
local.rioxx.authorJiménez-Fernández, Eduardo|en_UK
local.rioxx.authorGutierrez, Alejandro P|en_UK
local.rioxx.authorMigaud, Herve|0000-0002-5404-7512en_UK
local.rioxx.authorBetancor, Mónica B|0000-0003-1626-7458en_UK
local.rioxx.projectProject ID unknown|Biotechnology and Biological Sciences Research Council|http://dx.doi.org/10.13039/501100000268en_UK
local.rioxx.projectProject ID unknown|Innovate UK|http://dx.doi.org/10.13039/501100006041en_UK
local.rioxx.freetoreaddate2025-08-28en_UK
local.rioxx.licencehttp://creativecommons.org/licenses/by/4.0/|2025-08-28|en_UK
local.rioxx.filename1-s2.0-S1095643325001229-main.pdfen_UK
local.rioxx.filecount1en_UK
local.rioxx.source1095-6433en_UK
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