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Dietary protein levels may affect the growth and physiological performance of Beluga sturgeon, Huso huso (Linnaeus, 1758) under wintering conditions | ||
Caspian Journal of Environmental Sciences | ||
مقالات آماده انتشار، اصلاح شده برای چاپ، انتشار آنلاین از تاریخ 26 مرداد 1404 اصل مقاله (744.34 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22124/cjes.2025.8981 | ||
نویسندگان | ||
Bahram Falahatkar* 1؛ Hadiseh Alizadeh2؛ Bahman Meknatkhah1؛ Mehdi Rahmati3 | ||
1Fisheries Department, Faculty of Natural Resources, University of Guilan, Sowmeh Sara, Guilan, Iran | ||
2Fisheries Department, Faculty of Animal Sciences and Fisheries, Sari University of Agricultural Science and Natural Resources, Sari, Iran | ||
3Dr. Yousefpour Marine Fishes Restocking and Genetic Conservation Center, Siahkal, Guilan, Iran | ||
چکیده | ||
Fish in an optimum temperature range seem to have different nutritional requirements compared to optimal conditions. To evaluate the effect of different dietary protein levels during winter feeding of Beluga sturgeon, Huso huso (334.1 ± 0.3 g initial body weight; mean ± SD) a feeding trial with 8 weeks duration was conducted. Four diets with three replicates were formulated containing different dietary protein levels of 32%, 36%, 40% and 44% with 14.5% crude fat at low temperature of 8.8 ± 2.0 °C in twelve circular concrete tanks (900 L volume; 5 fish per tank). Fish were fed 1% of body weight three times daily, and at the end of the experiment, fish were weighed and sampled for plasma biochemical indices. The results have shown that various dietary protein levels had no noteworthy effect on growth indices (p > 0.05). The highest numerical, but not significant, final weight, specific growth rate, protein and lipid efficiency ratios were found in diets comprising 36% protein. No mortality was recorded throughout the trial. The results of biochemical plasma parameters showed that triglyceride, cholesterol, and total protein were not influenced by dietary protein levels (p > 0.05), while the glucose in fish fed 44% protein was significantly lower than the other treatments (p < 0.05). Hematocrit was significantly increased by increasing dietary protein levels, and the highest value was observed in the 44% treatment (p < 0.05). Based on the findings, it is advised that a protein level of 36% would be beneficial for optimal growth and physiological conditions in winter feeding of juvenile Beluga sturgeon. | ||
کلیدواژهها | ||
Biochemical plasma indices؛ Growth performance؛ Low temperature؛ Protein؛ Sturgeon | ||
مراجع | ||
Abd El-Wahab, A, Visscher, C, Teitge, F & Steinhagen, D 2020, Choice preference of diets with different protein levels depending on water temperature in Nile tilapia. Journal of the World Aquaculture Society, 51(2): 512-526.
Abdel-Tawwab, M 2012, Effects of dietary protein levels and rearing density on growth performance and stress response of Nile tilapia, Orechromis niloticus (L.). International Aquatic Research, 4(3): 1-3.
Bailey, J & Alanara, A 2006, Effect of feed portion size on growth of rainbow trout, Oncorhynchus mykiss (Walbaum), reared at different temperatures. Aquaculture, 253(1): 728-730.
Bemis, WE 1997, Sturgeon Rivers: an introduction to acipenseriform biogeography and life history. Environmental Biology of Fishes, 48: 167-183.
Bennett, RH, Ellender, BR, Mäkinen, T, Miya, T, Pattrick, P, Wasserman, RJ & Weyl, OL 2016, Ethical considerations for field research on fishes. Koedoe, 58(1): 1-15.
Bogevik, AS, Henderson, RJ, Mundheim, H, Waagbø, R, Tocher, DR & Olsen, RE 2010, The influence of temperature on the apparent lipid digestibility in Atlantic salmon (Salmo salar) fed Calanus finmarchicus oil at two dietary levels. Aquaculture, 309(1-4): 1-4.
Brendan, J, Hung, SSO & Mederano, J 1988, Protein requirement of hatchery-produced juvenile white sturgeon, Acipenser transmontanus. Aquaculture, 71(3): 235-245.
Carmona, R, Domezain, A, Garcia-Gallego, M, Antonio Hernando, J, Rodriguez, F & Ruiz-Rejon M 2009, Biology, Conservation and Sustainable Development of Sturgeon, Springer Publication, Berlin, Germany, pp. 215-234.
Celikkale, MS, Timur, M, Memis, D & Ercan, E 2002, Influence of acclimation to the cold water on growth rate of Russian sturgeon juveniles (Acipenser gueldenstaedtii, Brandt & Ratzenburg, 1833). Turkish Journal of Fisheries and Aquatic Sciences, 2(2): 137-140.
Cowey, CB, Knox, D, Walton, MJ & Adron, JW 1997, The regulation of gluconeogenesis by diet and insulin in rainbow trout (Salmo gairdneri). British Journal of Nutrition, 38(3): 463-470.
Cowey, CB 1994, Amino acid requirements of fish: a critical appraisal of present values. Aquaculture, 124(1-4): 1-11.
Daniels, HV & Gallagher, ML 2008, Effect of dietary protein level on growth and blood parameters in summer flounder, Paralichthys dentatus. Journal of Applied Aquaculture, 10(1): 45-52.
De Silva, SS & Gunasekera, RM 1991, An evaluation of growth of Indian and Chinese major carps in relation to the dietary protein content. Aquaculture, 92(1): 237-241.
Divya, PK & Ranjeet, K 2014, Effect of temperature on oxygen consumption and ammonia excretion in red bellied piranha Pygocentrus nattereri (Kner, 1858). Journal of Aquatic Biology & Fisheries, 2(1): 97-104.
Falahatkar, B, Soltani, M, Abtahi, B, Kalbassi, M & Pourkazemi, M 2006, Effects of dietary vitamin C supplementation on performance, tissue chemical composition and alkaline phosphatase activity in great sturgeon, Huso huso. Journal of Applied Ichthyology, 22(s1): 283-286.
Falahatkar, B, Akhavan, SR, Efatpanah, I & Meknatkhah, B 2013, Effect of winter feeding and starvation on the growth performance of young-of-year (YOY) great sturgeon, Huso huso. Journal of Applied Ichthyology, 29(1): 26-30.
Falahatkar, B 2015, Endocrine changes during the previtellogenic stage of the great sturgeon, Huso huso (Linnaeus, 1758). Journal of Applied Ichthyology, 31(5): 830-838.
Falahatkar, B, Haghparast, P, Meknatkhah, B & Rahmati, M 2016, Effects of dietary protein/lipid ratio on growth performance, feed utilization and blood parameters of great sturgeon (Huso huso Linnaeus, 1758) during the winter season. Journal of Applied Ichthyology, 32(6): 1243-1247.
Fernadez, MN & Mazon, AF 2003, Environmental pollution and fish gill morphology. In: AL, Val & BG, Kapoor (eds), Fish Adaptation, Enfield, NH: Scientific Publishers, Inc, pp. 203-231
Fine, M, Zilberg, D, Cohen, Z, Degani, G, Moav, B & Gertler, A 1996, The effect of dietary protein level, water temperature and growth hormone administration on growth and metabolism in the common carp (Cyprinus carpio). Comparative Biochemistry and Physiology, 114A(1): 35-42.
French, CJ, Mommsen, TP & Hochachka, PW 1981, Amino acid utilization is isolated hepatocytes from rainbow trout. European Journal of Biochemistry, 113(2): 311-317.
Furné, M, Morales, AE, Trenzado, CE, García-Gallego, M, Hidalgo, MC, Domezain, A & Rus, AS 2012, The metabolic effects of prolonged starvation and refeeding in sturgeon and rainbow trout. Journal of Comparative Physiology, 182B(1): 63-76.
Gao, Q, Liu, B, Shan, F, Liu, B, Gu, Z, Song, C, Sun, C & Zhu, Q 2022, Effects of oxidized fish oil on digestive enzyme activity and antioxidant system in Macrobrachium rosenbergii post-larvae. Aquaculture Reports, 23(1): 101062.
Gillis, TE & Ballantyne, JS 1996, The effects of starvation on plasma free amino acid and glucose concentrations in lake sturgeon. Journal of Fish Biology, 49(6): 1306-1316.
Guerreiro, I, Peres, H, Castro, C & Oliva-Teles, A 2012, Effect of temperature and dietary protein/lipid ratio on growth performance and nutrient utilization of juvenile Senegalese sole (Solea senegalensis). Aquaculture Nutrition, 18(1): 98-106.
Guerreiro, I, Peres, H, Castro, C, Pérez-Jiménez, A, Castro-Cunha, M & Oliva-Teles, A 2014, Water temperature does not affect protein sparing by dietary carbohydrate in Senegalese sole (Solea senegalensis) juveniles. Aquaculture Research, 45(2): 289-298.
Guo, Z, Zhu, X, Liu, J, Han, D, Yang, Y, Lan, Z & Xie, S 2012, Effects of dietary protein level on growth performance, nitrogen and energy budget of juvenile hybrid sturgeon, Acipenser baerii ♀ × A. gueldenstaedtii ♂. Aquaculture, 338(1): 89-95.
Hassan, MS, El Nagar, AG, Salim, HS, Fitzsimmons, K & El-Haroun, ER 2019, Nutritional mitigation of winter thermal stress in Nile tilapia by propolis-extract: Associated indictors of nutritional status, physiological responses and transcriptional response of delta-9-desaturase gene. Aquaculture, 511(1): 734256.
Hassan, MS, Mohammady, EY, Soaudy, MR, Sabae, SA, Mahmoud, AMA & El-Haroun, ER 2021, Comparative study on the effect of dietary β-carotene and phycocyanin extracted from Spirulina platensis on immune-oxidative stress biomarkers, gene expression and intestinal enzymes, serum biochemical in Nile tilapia, Oreochromis niloticus. Fish & Shellfish Immunology, 108(1): 63-72.
Hung, SSO 2017, Recent advances in sturgeon nutrition. Animal Nutrition, 3(3): 191-204.
Ibarz, A, Beltrán, M, Fernández-Borràs, J, Gallardo, MA, Sánchez, J & Blasco, J 2007, Alterations in lipid metabolism and use of energy depots of gilthead sea bream (Sparus aurata) at low temperatures. Aquaculture, 262(2-4): 470-480.
Imsland, AKD, Gunnarsson, S & Thorarensen, H 2020, Impact of environmental factors on the growth and maturation of farmed Arctic charr. Reviews in Aquaculture, 12(3): 1689-1707.
Imtiaz, A, Mushtaq Reshi, Q & Fazio, F 2020, The influence of the endogenous and exogenous factors on hematological parameters in different fish: a review. Aquaculture International, 28(1): 869-899.
IUCN, 2021. The IUCN Red List of Threatened Species. http://www.iucnredlist.org/search.
Jiang, D, Wu, Y, Haung, D, Ren, X & Wang, Y 2017, Effect of blood glucose level on acute stress response of grass carp Ctenopharyngodon idella. Fish Physiology and Biochemistry, 43(5): 1433-1442.
Jin, JL, Wang, CF, Tang, Q, Xie, CX & Dai, ZG 2012, Dietary phosphorus affected growth performance, body composition, antioxidant status and total P discharge of young hybrid sturgeon (♀ Huso huso × ♂ Acipenser schrenckii) in winter months. Journal of Applied Ichthyology, 28(1): 697-703.
Jobling, M 1997, Temperature and growth: modulation of growth rate via temperature change. In: CM Wood & DG, McDonald (eds), Global warming: Implications for freshwater and marine fish. Cambridge University Press, pp. 225-253.
Jonassen, TM, Imsland, AK, Kadowaki, S & Stefansson, SO 2000, Interaction of temperature and photoperiod on growth of Atlantic halibut Hippoglossus hippoglossus L. Aquaculture Research, 31(2): 219-227.
Kappenman, KM, Fraser, WC, Toner, M & Dean, JC 2009, Effect of temperature on growth, condition, and survival of juvenile shovelnose sturgeon. Transaction of the American Fisheries Society, 138(4): 927-937.
Katersky, RS & Carter, CG 2007, A preliminary study on growth and protein synthesis of juvenile barramundi, Lates calcarifer at different temperatures. Aquaculture, 267(1-4): 157-164.
Kaushik, SJ, Breque, J & Blanc, D 1994, Apparent amino acid availability and plasma free amino acid levels in Siberian sturgeon (Acipenser baerii). Comparative Biochemistry and Physiology, 107A(2): 433-438.
Khan, IA & Maqbool, A 2017, Effects of dietary protein levels on the growth, feed utilization and haemato-biochemical parameters of freshwater fish, Cyprinus carpio Var. Specullaris. Fisheries and Aquaculture Journal, 8(1): 1-12.
Kikuchi, K, Furuta, T & Honda, H 1994a, Utilization of soybean as a protein source in the diet of juvenile Japanese flounder, Paralichthys olivaceus. Aquaculture Science, 42(4): 601-604.
Kikuchi, K, Furuta, T & Honda, H 1994b, Utilization of feather meal as a protein source in the diet of juvenile Japanese flounder. Fisheries Science, 60(2): 203-206.
Kikuchi, K, Sato, T, Furuta, T, Sakaguchi, I & Deguchi, Y 1997, Use of meat and bone meal as a protein source in the diet of Japanese flounder. Fisheries Science, 63(1): 29-32.
Lall, SP & Tibbetts, SM 2009, Nutrition, feeding, and behavior of fish. Veterinary Clinics of North America Exotic Animal Practice, 12(2): 361-372.
Li, M, Wang, X, Qi, C, Li, E, Du, Z, Qin, JG & Chen, L 2018, Metabolic response of Nile tilapia (Oreochromis niloticus) to acute and chronic hypoxia stress. Aquaculture, 495(1): 187-195.
Liang, H, Xu, H, Ge, X, Zhu, J, Ren, M & Mi, H 2022, Water temperature affects the protein requirements, growth performance, and nutritional metabolism of grass carp (Ctenopharyngodon idella) juveniles. Aquaculture Reports, 22(1): 101267.
Lone, KP, Inch, BW & Matty, AJ 1982, Changes in the blood chemistry of rainbow trout, Salmo gairdneri Rich, in relation to dietary protein level, and anabolic steroid hormone, ethylestrenol. Journal of Fish Biology, 20(5): 597-606.
Lozano, SJ, Gedeon, ML & Landrum, PF 2003, The effects of temperature and organism size on the feeding rate and modeled chemical accumulation in Diporeia spp. for Lake Michigan sediments. Journal of Great Lakes Research, 29(1): 79-88.
Lundstedt, LM, Bibiano Melo, JF & Moraes, G 2004, Digestive enzymes and metabolic profile of Pseudoplatystoma corruscans (Teleoste: Siluriformes) in response to diet composition. Comparative Biochemistry and Physiology, 137B(3): 331-339.
Makaras, T, Razumiene, J, Gurevičiene, V, Šakinyte, I, Stankevičiūtė, M & Kazlauskienė, N 2020, A new approach of stress evaluation in fish using β-D-Glucose measurement in fish holding-water. Ecological Indicators, 109(1): 105829.
Miegel, RP, Pain, SJ, Van Wettere, WHEJ, Howarth, GS & Stone, DAJ 2010, Effect of water temperature on gut transit time, digestive enzyme activity and nutrient digestibility in yellowtail kingfish (Seriola lalandi). Aquaculture, 308(3-4): 145-151.
Mohseni, M, Pourkazemi, M, Hosseini, MR, Hassani, MHS & Bai, SC 2011, Effects of the dietary protein levels and the protein to energy ratio in sub-yearling Persian sturgeon, Acipenser persicus (Borodin). Aquaculture Research, 44(3): 378-387.
Oyugi, DO, Cucherousset, J, Ntiba, MJ, Kisia, SM, Harper, DM & Britton, R 2011, Life history traits of an equatorial common carp Cyprinus carpio population in relation to thermal influences in invasive populations. Fisheries Research, 110(1): 92-97.
Peres, H & Oliva-Teles, A 1999, Influence of temperature on protein utilization in juvenile European seabass (Dicentrarchus labrax). Aquaculture, 170(3-4): 337-348.
Person-Le Ruyet, J, Mahé, K, Le Bayon, N & Le Delliou, H 2004, Effects of temperature one growth and metabolism in Mediterranean population of European sea bass, Dicentrarchus labrax. Aquaculture, 237(1-4): 269-280.
Řehulka, J, Minařik, B & Řehulková, E 2004, Red blood cell indices of rainbow trout Oncorhynchus mykiss (Walbaum) in aquaculture. Aquaculture Research, 35(6): 529-546.
Rønnestad, I, Yùfero, M, Ueberschär, B, Ribeiro, L, Sæle, Ø & Boglione, C 2013, Feeding behavior and digestive physiology in larval fish: current knowledge, and gaps and bottlenecks in research. Reviews in Aquaculture, 5(s1): S59-S98.
Rosenlund, G, Karlsen, Ø, Tveit, K, Mangor-Jensen, A & Hemre, GI 2004, Effect of feed composition and feeding frequency on growth, feed utilization and nutrient in juvenile Atlantic cod, Gadus morhua L. Aquaculture Nutrition, 10(6): 371-378.
Sarma, K, Pal, AK, Ayyappans, S, Das, T, Manush, SM, Debnath, D & Baruah, K 2010, Acclimation of Anabas testudineus (Bloch) to three test temperatures influences thermal tolerance and oxygen consumption. Fish Physiology and Biochemistry, 36(1): 85-90.
Seyed Hasani, MH, Mohseni, M, Poorali, HR & Yazdani Sadati, MA 2013, The effect of different levels of protein and carbohydrate to lipid ratio on growth rate and body composition of farmed juvenile Huso huso. Fisheries Science and Technology, 2(1): 55-70, (In Persian).
Shabihul, F & Imtiaz, A 2020, Effect of water temperature on protein requirement of Heteropneustes fossilis (Bloch) fry as determined by nutrient deposition, hemato-biochemical parameters and stress resistance response. Fisheries and Aquatic Sciences, 23(1): 1-14.
Shah, SL & Atindag, A 2004, Hematological parameters of tench (Tinca tinca L.) after acute and chronic exposure to lethal and sublethal mercury treatments. Bulletin of Environmental Contamination and Toxicology, 73(5): 911-918.
Stone, DAJ, Allan, GL & Anderson, AJ 2003, Carbohydrate utilization by juvenile silver perch, Bidyanus bidyanus (Mitchell). III. The protein-sparing effect of wheat starch-based carbohydrates. Aquaculture Research, 34(1): 123-134.
Suárez, MD, Hidalgo, MC, Gallego, MG, Sanz, A & Higuera M 1995, Influence of the relative proportion of energy yielding nutrients on liver intermediary metabolism of the European eel. Comparative Biochemistry and Physiology, 111A(3): 421-428.
Tibbetts, SM, Lall, SP & Aderson, DM 2020, Dietary protein requirement of juvenile American eel (Anguilla rostrate) fed practical diets. Aquaculture, 186(1-2): 145-155.
Volkoff, H & Rønnestad, I 2020, Effects of temperature on feeding and digestive processes in fish. Temperature, 7(4): 307-320.
Yarmohammadi, M, Shabani, A, Pourkazemi, M, Soltanloo, H, Imanpour, MR, Ramezanpour, S & Jerry, DR 2013, Effects of starvation and re-feeding on compensatory growth performance, plasma metabolites and IGF-I gene expression of Persian sturgeon (Acipenser persicus, Borodin 1897). Iranian Journal of Fisheries Science, 12(2): 465-483.
Yoo, G & Lee, JY 2016, The effect of feeding frequency, water temperature, and stocking density on growth of river puffer, Takifugu obscurus reared in a zero-exchange water system. Fisheries and Aquatic Sciences, 19(23): 1-7.
Yi, Z & Xie, J 2022, Assessment of spoilage potential and amino acids deamination & decarboxylation activities of Shewanella putrefaciens in bigeye tuna (Thunnus obesus). LWT, 156: 113016. | ||
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