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Melatonin Modulates Haematological and Water Quality Parameters Following a 100 Km Transportation of Clarias gariepinus by Road | ||
Iranian Journal of Veterinary Medicine | ||
مقاله 2، دوره 17، شماره 3، مهر 2023، صفحه 199-208 اصل مقاله (736.06 K) | ||
نوع مقاله: Original Articles | ||
شناسه دیجیتال (DOI): 10.32598/ijvm.17.3.1005310 | ||
نویسندگان | ||
Adakole Sylvanus Adah* 1؛ Deborah Arimie Adah2؛ Charles Obiora Nwonuma3؛ Taiwo Oyekunle1؛ Boluwaji Olaosebikan2 | ||
1Department of Veterinary Physiology and Biochemistry, Faculty of Veterinary Medicine, University of Ilorin, Ilorin, Nigeria. | ||
2Department of Veterinary Medicine, Faculty of Veterinary Medicine,University of Ilorin, Ilorin, Nigeria. | ||
3Department of Biochemistry, College of Pure and Applied Sciences, Landmark University Omuaran, Nigeria. | ||
چکیده | ||
Background: The transportation of fish is a common practice in aquaculture. However, the transportation of fish results in significant stress that can cause mortality and disease outbreaks due to compromised immune status. To ameliorate the effect of this stress, it is advocated that a suitable antioxidant be supplemented to fish before subjecting to transportation. Objectives: The present experiment was performed to evaluate the effect of melatonin on haematological parameters and water quality indices of Clarias gariepinus post-transportation. Methods: Forty adult C. gariepinus fishes, weighing an average of 450.46 g and measuring an average of 38.23 cm and 4.46 cm were used for the experiment. They were divided into two groups. Group I (MMF) was supplemented with melatonin in their feed every day for one month while group II (OMF) was not administered melatonin. The subjects were fed a commercial pelleted diet once a day throughout the experiment. They were maintained in a tank made of plastic, and water was originally provided through a flow-through system. Haematological and water quality parameters were determined before and after transportation. Results: After the transportation process, erythrocyte count and packed cell volume of the group I was significantly higher (P<0.05). In comparison to group II, the total leucocyte count, neutrophil count, and neutrophil/lymphocyte ratio of group I were all significantly lower (P<0.05). After transit, group II had considerably higher quantities of nitrite, nitrate, and ammonia (P<0.05) than group I. Following transportation, group II had significantly higher nitrite, nitrate, and ammonia (P<0.05) than group I. However, in group I, dissolved oxygen concentration was greater (P<0.05) than that of group II. Conclusion: Accordingly, it was concluded that melatonin affected various haematological and water quality variables in C. gariepinus and will ameliorate the stress of transportation. | ||
کلیدواژهها | ||
Catfish؛ Haematology؛ Melatonin؛ Transportation؛ Water properties | ||
اصل مقاله | ||
1. Introduction
Haematological analysis
Funding
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مراجع | ||
Abdel-Tawwab, M., Monier, M. N., Hoseinifar, S. H., & Faggio, C. (2019). Fish response to hypoxia stress: Growth, physiological, and immunological biomarkers. Fish Physiology and Biochemistry, 45(3), 997-1013. [DOI:10.1007/s10695-019-00614-9] [PMID] Aguirre-Guzman, G., Carvajal-de-la-Fuente, V., Neri-Coronado, M., Loredo-Ostiand, J., & Rábago-Castro, J. L. (2016). Hematological and clinical chemistry changes induced by acute stress during handling and capture of catfish (Ictalurus punctatus). Revista MVZ Córdoba, 21(2), 5345. [Link] American Public Health Association (APHA). (2005). Standard Methods for the Examination of Water and Wastewater (21st ed). Washington DC: American Public Health Association. [Link] Bolner, K. C. S., Copatti, C. E. Rosso, F. L., Loro, V. L., & Baldisserotto, B. (2014). Water pH and metabolic parameters in Silver catfish (Rhamdia quelen). Biochemical Systematics and Ecology; 56, 202-208. [DOI:10.1016/j.bse.2014.06.006] Bouyoucos, I. A., Schoen, A. N., Wahl, R. C., & Anderson, W. G. (2021). Ancient fishes and the functional evolution of the corticosteroid stress response in vertebrates. Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology, 260, 111024. [DOI:10.1016/j.cbpa.2021.111024] [PMID] Bowzer, J., Bergman, A., & Trushenski, J. (2014). Growth performance of largemouth bass-fed fish meal derived from Asian carp. North American Journal of Aquaculture; 76(3), 185-189. [DOI:10.1080/15222055.2014.893473] Campbell, J. H., Dixon, B., & Whitehouse, L. M. (2021). The intersection of stress, sex and immunity in fishes. Immunogenetics, 73(1), 111-129. [DOI:10.1007/s00251-020-01194-2] [PMID] Chabot, D., McKenzie, D. J., & Craig, J. F. (2016). Metabolic rate in fishes: Definitions, methods, and significance for conservation physiology. Journal of Fish Biology, 88(1), 1-9. [DOI:10.1111/jfb.12873] [PMID] Cook, K. V., McConnachie, S. H., Gilmour, K. M., Hinch, S. G., & Cooke, S. J. (2011). Fitness and behavioral correlates of pre-stress and stress-induced plasma cortisol titers in pink salmon (Oncorhynchus gorbuscha) upon arrival at spawning grounds. Hormone and Behaviour, 60(5), 489-497. [DOI:10.1016/j.yhbeh.2011.07.017] [PMID] Dacie, J. V., & Lewis, S. M. (2001). Practical Haematology 9th Edition. London: Churchill Livingstone. [Link] Davis, A. K., Maney, D. L., & Maerz, J. C. (2008). The use of leukocyte profiles to measure stress in vertebrates: A review for ecologists. Functional Ecology, 22(5), 760-772. [DOI:10.1111/j.1365-2435.2008.01467.x] Dobšíková, R., Svobodova, Z., Blahova, J., Modra, H., & Velíšek, J. (2009). The effect of transport on biochemical and haematological indices of common carp (Cyprinus carpio L.). Czech Journal of Animal Science, 54(11), 510-518.[DOI:10.17221/52/2009-CJAS] European Food Safety Authority (EFSA). (2004). Opinion of the Scientific Panel on Animal Health and Welfare (AHAW) on a request from the Commission related to the welfare of animals during transport. The EFSA Journal, 44, 1-36. [Link] Forget, P., Khalifa, C., Defour, J. P., Latinne, D., Van Pel, M. C., & De Kock, M. (2017). What is the normal value of the neutrophil-to-lymphocyte ratio? BMC Research Notes, 10(1), 12. [DOI:10.1186/s13104-016-2335-5] [PMID] [PMCID] Galano, A., Tan, D. X., & Reiter, R. J. (2018). Melatonin: A versatile protector against oxidative DNA damage. Molecules, 23(3), 530. [DOI:10.3390/molecules23030530] [PMID] [PMCID] Gatica, M. C., Monti, G., Gallo, C., Knowles, T. G., & Warriss, P. D. (2008). Effects of well-boat transportation on the muscle pH and onset of rigor mortis in Atlantic salmon. The Veterinary Record, 163(4), 111–116. [DOI:10.1136/vr.163.4.111] [PMID] Gevi, F., D'Alessandro, A., Rinalducci, S., & Zolla, L. (2012). Alterations of red blood cell metabolome during cold liquid storage of erythrocyte concentrates in CPD-SAGM. Journal of Proteomics, 76(Spec No), 168–180. [DOI:10.1016/j.jprot.2012.03.012] [PMID] Ghorbani, A., Peighambari, S. M., & Razmyar, J. (2020). Molecular and in vivo characterization of an Iranian Infectious bursal disease virus containing a mixed virus population. Iranian Journal of Veterinary Medicine, 15(2), 155-167. [Link] Golombieski, J. I., Koakoski, G., Becker, A. J., Almeida, A. P., Toni, C., & Finamor, I. A., et al. (2013). Nitrogenous and phosphorus excretions in juvenile silver catfish (Rhamdia quelen) exposed to different water hardness, humic acid, and pH levels. Fish Physiology and Biochemistry, 39(4), 837-849. [DOI:10.1007/s10695-012-9744-8] [PMID] Hong, J., Chen, X., Liu, S., Fu, Z., Han, M., & Wang, Y., et al. (2019). Impact of fish density on water quality and physiological response of golden pompano (Trachinotus ovatus) fingerlings during transportation. Aquaculture; 507, 260-265. [DOI:10.1016/j.aquaculture.2019.04.040] Ibrahim, R. E., Ahmed, S. A. A., Amer, S. A., Al-Gabri, N. A., Ahmed, A. I., & Abdel-Warith, A.W. A., et al. (2020). Influence of vitamin C feed supplementation on the growth, antioxidant activity, immune status, tissue histomorphology, and disease resistance in Nile tilapia, Oreochromis niloticus. Aquaculture Reports, 18, 100545. [DOI:10.1016/j.aqrep.2020.100545] Jerez-Cepa, I., & Ruiz-Jarabo, I. (2021). Physiology: An important tool to assess the welfare of aquatic animals. Biology, 10(1), 61. [DOI:10.3390/biology10010061] [PMID] [PMCID] Jia, R., Wang, L., Hou, Y., Feng, W., Li, B., & Zhu, J. (2022). Effects of stocking density on the growth performance, physiological parameters, redox status and lipid metabolism of micropterus salmoides in integrated rice-fish farming systems. Antioxidants (Basel, Switzerland), 11(7), 1215. [DOI:10.3390/antiox11071215] [PMID] [PMCID] Lima-Cabello, E., Díaz-Casado, M. E., Guerrero, J. A., Otalora, B. B., Escames, G., & López, L. C., et al. (2014). A review of the melatonin functions in zebrafish physiology. Journal of Pineal Research, 57(1), 1-9. [DOI:10.1111/jpi.12149] [PMID] Maitra, S. K., & Hasan, K. N. (2016). The role of melatonin as a hormone and an antioxidant in the control of fish reproduction. Frontiers in Endocrinology, 7, 38. [DOI:10.3389/fendo.2016.00038] [PMID] [PMCID] Manuel, R., Boerrigter, J., Roques, J., van der Heul, J., van den Bos, R., & Flik, G., et al. (2014). Stress in African catfish (Clarias gariepinus) following overland transportation. Fish Physiology and Biochemistry, 40(1), 33-44. [PMID] McMullin, M. F., Bareford, D., Campbell, P., Green, A. R., Harrison, C., & Hunt, B., et al. (2005). Guidelines for the diagnosis, investigation, and management of polycythemia/erythrocytosis. British Journal of Haematology, 130(2), 174-195. [DOI:10.1111/j.1365-2141.2005.05535.x] [PMID] Ngasainao, M. R., & Lukram, I. M. (2016). 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