Please use this identifier to cite or link to this item: https://hdl.handle.net/11000/37759

Genetic correlated responses to selection for resilience in key inflammatory and stress biomarkers under heat stress of rabbits


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Title:
Genetic correlated responses to selection for resilience in key inflammatory and stress biomarkers under heat stress of rabbits
Authors:
Serrano-Jara, Daniel
Agea, Iván
Romero, Gema
Argente, María José
Santacreu, María Antonia
García, María de la Luz
Editor:
Frontiers Media
Department:
Tecnología agroalimentaria
Issue Date:
2025-10-28
URI:
https://hdl.handle.net/11000/37759
Abstract:
Heat stress is a major challenge for rabbit production, due to the species’ limited thermoregulatory capacity. Two rabbit lines were divergently selected over 17 generations for environmental variance in litter size: the Low line, with greater resilience, and the High line, with less resilience. This study aimed to compare acute stress and inflammatory responses in males from both lines under heat stress (temperature–humidity index, THI ≥ 27.8) and thermoneutral (THI< 27.8) conditions. Forty males (20 per line) were evaluated for eyeball temperature via infra-red thermography before and after a semen collection stressor, and for plasma cortisol, C-reactive protein (CRP), and tumor necrosis factor-a (TNF-a) by ELISA. Bayesian methodology was used for statistical analysis. The Low line maintained lower eyeball temperatures than the High line under both thermal conditions (P > 90%), while retaining normal acute stress responses. Under heat stress, the Low line also showed lower TNF-a levels, and under both conditions, lower cortisol levels (P > 90%). CRP did not differ between lines or thermal conditions (P< 90%). These results indicate that selection for reduced litter size variability improves thermal regulation and attenuates stress-associated physiological responses, supporting its use to enhance resilience, welfare, and sustainability in rabbit production
Keywords/Subjects:
resilience
heat stress
infra-red thermography
litter size variability
stress biomarkers
CRP
TNF-a
cortisol
Knowledge area:
CDU: Ciencias aplicadas: Ingeniería, tecnología e industria química. Metalurgia
Type of document:
info:eu-repo/semantics/article
Access rights:
info:eu-repo/semantics/openAccess
DOI:
10.3389/fanim.2025.1694508
Published in:
Frontiers in Animal Science; Volumen 6 - 2025
Appears in Collections:
Artículos Tecnología Agroalimentaria



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