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Physiological response of rabbits to heat, cold, noise and mixing in the context of transport

Published online by Cambridge University Press:  11 January 2023

J De la Fuente*
Affiliation:
Departamento de Producción Animal, Facultad de Veterinaria, Universidad Complutense de Madrid, Avda Puerta de Hierro, 28040 Madrid, Spain
MT Díaz
Affiliation:
Departamento de Producción Animal, Facultad de Veterinaria, Universidad Complutense de Madrid, Avda Puerta de Hierro, 28040 Madrid, Spain
M Ibáñez
Affiliation:
Departamento de Producción Animal, Facultad de Veterinaria, Universidad Complutense de Madrid, Avda Puerta de Hierro, 28040 Madrid, Spain
E González de Chavarri
Affiliation:
Departamento de Producción Animal, Facultad de Veterinaria, Universidad Complutense de Madrid, Avda Puerta de Hierro, 28040 Madrid, Spain
*
* Contact for correspondence and requests for reprints: jefuente@vet.ucm.es
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Abstract

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The effects on rabbits of four potential transport-related stressors (heat [HS], cold [CS], noise [NS] and mixing with unfamiliar animals [MS]) on certain physiological and meat quality parameters were studied. These are factors which may act to reduce the welfare of rabbits during their transport to the slaughterhouse. The rabbits were exposed to each potential stressor for four and a half hours prior to slaughter. HS groups showed the highest plasma concentrations of cortisol, lactate and glucose and greater packed cell volume (PCV) and osmolarity than the control group, and the meat exhibited a low initial pH as a direct consequence of lactic acid accumulation. The rabbits exposed to cold (CS) and noise (NS) showed physiological responses to the potential stressor, although to a lesser degree than rabbits exposed to heat. Cold stressed rabbits showed increased levels of creatine kinase (CK) and a higher PCV as well as decreased muscle glycogen concentration compared to the control. Rabbits exposed to noise showed muscular damage as demonstrated by increased levels of CK and lactate dehydrogenase (LDH) activity in the blood and a high final pH in meat. Mixing unfamiliar rabbits (MS) lead to higher CK activity, lower lactate and glucose concentration and the meat pH was slightly higher than the control group. In conclusion, these results suggested that rabbits exposed to heat were the most affected out of all three groups, although cold, noise and mixing with unfamiliar rabbits also had a detrimental effect on physiological and meat quality parameters.

Type
Research Article
Copyright
© 2007 Universities Federation for Animal Welfare

References

Abdelatif, AM and Modawi, SM 1994 Effects of hyperthermia on blood constituents in the domestic rabbits. Journal of Thermal Biology 19: 357363CrossRefGoogle Scholar
Abeyesinghe, SM, Wathes, CM, Nicol, CJ and Randall, JM 2001 The aversion of broiler chickens to concurrent vibrational and thermal stressors. Applied Animal Behaviour Science 73: 199215CrossRefGoogle ScholarPubMed
Agnes, F, Sartorelli, P, Hagi Abdi, B and Locatelli, A 1990 Effect of transport loading or noise on blood biochemical variables in calves. American Journal of Veterinary Research 51: 16791681Google ScholarPubMed
Ashby, BH, Ota, H, Bailey, A, Whitehead, JA and Kindya, WG 1980 Heat and weight loss of rabbits during simulated air transport. Transcription ASAE 23: 162164CrossRefGoogle Scholar
Balcells, A 1995 Examen de sangre; Química hemática. In: Clínica y Laboratorio 15th edition pp 57143. Massan-Salvat: Barcelona, Spain. [Title translation: Blood examination; blood chemistry]Google Scholar
Broom, DM, Gooder, JA, Hall, SJG, Lloyd, DM and Parrott, RF 1996 Hormonal and physiological effects of 15 hour journey in sheep: comparison with the responses to loading, handling and penning in the absence of transport. British Veterinary Journal 152: 593604CrossRefGoogle ScholarPubMed
Castaño-Bello, H 1995 Control y regulación de la temperatura corporal. In: García Sacristan, A (ed) Fisiología Veterinaria pp 10151025. McGraw-Hill: Madrid, Spain. [Title translation: Control and regulation of body temperature]Google Scholar
Coppings, RJ, Ekhator, N and Ghodrati, A 1989 Effects of antemortem treatment and transport on slaughter characteristics of fryer rabbits. Journal of Animal Science 67: 872880CrossRefGoogle Scholar
Crimella, C, Heinz, E and Luzi, F 1994 Performance of rabbits in hot climate: a housing “cooling system” for heat stress reduction. Options Méditérrannéennes 8: 463467Google Scholar
Crookshank, HR, Elissalde, MH, Whie, RG, Clanton, D and Smalley, HE 1979 Effect of transportation and handling of calves upon blood serum composition. Journal of Animal Science 48: 430435CrossRefGoogle ScholarPubMed
Dal Bosco, A, Castellini, C and Bernardini, M 1997 Effect of transport and stunning method on some characteristics of rabbit carcasses and meat. World Rabbit Science 5: 115119Google Scholar
Dalle Zotte, A and Ouhayoun, J 1995 Post-weaning evolution of muscle energy metabolism and related physico-chemical traits in the rabbit. Meat Science 39: 395401CrossRefGoogle ScholarPubMed
De la Fuente, J, Salazar, MI, Ibáñez, M and González de Chavarri, E 2004 Effects of season and stocking density during transport on live weight and biochemical measurements of stress, dehydration and injury of rabbits at time of slaughter. Animal Science 78: 285292CrossRefGoogle Scholar
Dreiling, CE, Brown, DE, Casale, L and Kelly, L 1987 Muscle glycogen: comparison of iodine binding and enzyme digestion assays and application to meat samples. Meat Science 20: 167177CrossRefGoogle ScholarPubMed
Fayez, I, Marai, M, Alnaimy, A and Habeeb, M 1994 Thermoregulation in rabbits. Options Méditérrannéennes 8: 3341Google Scholar
Forsling, ML, Sharman, DF and Stephens, DB 1984 Vasopressin in the blood plasma of pigs and calves exposed to noise and vibration comparable with that experienced during transport. Journal of Physiology 357: 96103Google Scholar
Geverink, NA, Bühnemann, A, Van de Burgwal, JA, Laambooy, E, Blokhuis, HJ and Wiegant, VM 1998 Responses of slaughter pigs to transport and lairage sound. Physiology & Behavior 63: 667673CrossRefGoogle Scholar
González-Mariscal, G, Melo, AI, Zavala, A and Beyer, C 1992 Chin-marking behaviour in male and female New Zealand rabbits: Onset, development, and activation by steroids. Physiology & Behavior 52: 889893CrossRefGoogle ScholarPubMed
Hulot, F and Ouhayoun, J 1999 Muscular pH and related traits in rabbits: a review. World Rabbit Science 7: 1536Google Scholar
Ibañez, M, De la Fuente, J, Thos, J and Gónzalez de Chavarri, E 2002 Behavioural and physiological responses of suckling lambs to transport and lairage. Animal Welfare 11: 223230CrossRefGoogle Scholar
Jolley, PD 1990 Rabbit transport and its effects on meat quality. Applied Animal Behaviour Science 28: 119134CrossRefGoogle Scholar
Knowles, TG, Brown, SN, Warriss, PD, Phillips, AJ, Dolan, SK, Hunt, P, Ford, JE, Edwards, JE and Watkins, PE 1995 Effects on sheep of transport by road up to 24 hours. Veterinary Record 136: 421438CrossRefGoogle ScholarPubMed
Lambooy, E, Van der Hel, W, Hulsegge, B and Brandsma, HA 1987 Effect of environmental temperature and air velocity two days preslaughtering on heat production, weight loss and meat quality in non-fed pigs. In: Verstegen, MWA and Henken, AM (eds) Energy Metabolism in Farm Animals: Effects of housing, stress and disease pp 164179. Martinus Nijhoff Publishers: Dordrecht, The NetherlandsGoogle Scholar
Leoni, S, Moriggi, F and Ghilarducci, G 2000 Transporto e qualità della carne. Rivista di Coniglicoltura 3: 4047. [Title translation: Transport and meat quality]Google Scholar
Luzi, F, Heinzl, E, Crimella, C and Verga, M 1994 Influence des conditions de transport sur la qualité des carcasses. Cuniculture 120: 277279. [Title translation: Influence of transport conditions on carcass quality]Google Scholar
Manjoo, M, Burger, FJ and Kielblock, AJ 1985 A relationship between heat load and plasma enzyme concentration. Journal of Thermal Biology 10: 221225CrossRefGoogle Scholar
Marai, IFM, Habeeb, AAM and Gad, AE 2002 Rabbits' productive, reproductive and physiological performance traits as affected by heat stress: a review. Livestock Production Science 78: 7190CrossRefGoogle Scholar
Masoero, G, Riccioni, L, Bergoglio, G and Napolitano, F 1992 Implications of fasting and of transportation for a high quality rabbit meat product. Journal of Applied Rabbit Research 15: 841847Google Scholar
Mitchell, MA and Kettlewell, PJ 1998 Physiological stress and welfare of broiler chickens in transit: solutions not problems! Poultry Science 77: 18031814CrossRefGoogle Scholar
Mykytowycz, R 1968 Territorial marking by rabbits. Scientific American 218: 116126CrossRefGoogle ScholarPubMed
Mykytowycz, R, Hersterman, ER, Gambale, S and Dudzinski, ML 1976 A comparison of effectiveness of the odours of rabbits, Oryctolagus cuniculus, in enhancing territorial confidence. Journal of Chemical Ecology 2: 1324CrossRefGoogle Scholar
Paci, G, Marzoni, M, Piloni, S and Bagliacca, M 1999 Effetto della stagione e della tecnica de allevamento sulle prestazioni produttive e sulla qualità della carne di coniglio. Revista di Coniglicoltura 9: 3036. [Title translation: Effect of season and stunning method on productive parameters and meat quality of rabbit]Google Scholar
Perez, MP, Palacio, J, Santolaria, MP, Aceña, MC, Chacón, G, Verde, MT, Calvo, JH, Zaragoza, MP, Gascón, M and García-Belenguer, S 2002 Influence of lairage time on some welfare and meat quality parameters in pigs. Veterinary Research 33: 239250CrossRefGoogle ScholarPubMed
Piles, M, Blasco, A and Pla, M 2000 The effect of selection for growth rate on carcass composition and meat characteristics of rabbits. Meat Science 54: 347355CrossRefGoogle ScholarPubMed
Purdue, D 1984 The effect of transport and fasting on physiological indices of stress and subsequent meat quality of the rabbit. MSc Thesis, University of Bristol, UKGoogle Scholar
Roca, A 1988 Alojamientos e instalaciones en cunicultura. In: Sanz, C, Buxadé, I and Ovejero, E (eds) Bases para el diseño de alojamientos e instalaciones ganaderas pp 173193. Asociación de Ingenieros Agrónomos de Cataluña: Barcelona, Spain. [Title translation: Housing and equipment for rabbit]Google Scholar
Ruiz de la Torre, JL and Manteca, X 1999 Behavioural effects of social mixing at different stocking densities in prepubertal lambs. Animal Welfare 8: 117126CrossRefGoogle Scholar
Statgraphics Plus 1994 Statgraphics Plus: Reference Manual, Version 4. Statistical Graphics Corporation: Maryland, USAGoogle Scholar
Stephens, DB 1982 Transport of animals intended for breeding, production and slaughter. In: Moss, R (ed) Transport of animals intended for breeding, production and slaughter pp 187206. Martinus Nijhoff Publishers: The Hague, The NetherlandsGoogle Scholar
Talling, JC, Waran, NK, Wathes, CM and Lines, JA 1996 Behavioural and physiological responses of pigs to sound. Applied Animal Behaviour Science 48: 187202CrossRefGoogle Scholar
Weeks, C and Nicol, C 2000 Poultry handling and transport. In: Grandin, T (ed) Livestock, handling and transport 2nd edition pp 363384. CABI Publishing: Wallingford, UKCrossRefGoogle Scholar