تعداد نشریات | 31 |
تعداد شمارهها | 748 |
تعداد مقالات | 7,128 |
تعداد مشاهده مقاله | 10,280,151 |
تعداد دریافت فایل اصل مقاله | 6,911,907 |
Effects of selenomethionine and synbiotic Diproplus (Dip+) on growth, hematology, carcass analysis, some immune parameters and IL-1 and TNF-α relative genes expression in Salmo caspius | ||
Caspian Journal of Environmental Sciences | ||
مقالات آماده انتشار، اصلاح شده برای چاپ، انتشار آنلاین از تاریخ 23 آبان 1403 اصل مقاله (928.78 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22124/cjes.2024.8151 | ||
نویسندگان | ||
Maziyar Akbarabadi1؛ Hossein Khara* 1؛ Habib Vahabzadeh Roudsari1؛ Mohaddeseh Ahmadnezhad2؛ Roghieh Safari3 | ||
1Department of Fisheries, Lahijan Branch, Islamic Azad University, Lahijan, Iran | ||
2Inland Waters Aquaculture Research Center, Iranian Fisheries Sciences Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Bandar Anzali, Iran | ||
3Department of Aquaculture, Faculty of Fisheries and Environmental Sciences, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran | ||
چکیده | ||
Limited research has focused on the nutritional requirements of Salmo caspius. This study investigates the effects of Selenomethionine (SelMet) and synbiotic Diproplus (Dip+) oral supplements on growth, hematology, carcass analysis, immune responses, and the IL-1 and TNF-α relative gene expression in S. caspius. By employing a randomized design, the dietary control group and various treatments (per kg of diet) were established, including T1 (2 g Dip+ + 0 mg SelMet), T2 (3 g Dip+ + 0 mg SelMet), T3 (0 g Dip+ + 2 mg SelMet), T4 (0 g Dip+ + 4 mg SelMet), T5 (2 g Dip+ + 2 mg SelMet), T6 (2 g Dip+ + 4 mg SelMet), T7 (3 g Dip+ + 2 mg SelMet) and T8 (3 g Dip+ + 4 mg SelMet). Significant increases in growth performance and the highest lysozyme activity were observed in T6 (p < 0.05). T3 and T7 showed the highest total Ig and IgM levels, respectively (p < 0.05). Additionally, T8 exhibited significantly elevated WBCs, RBCs, Hb, and Hct (p < 0.05). Carcass analysis indicated that the control group had the highest fat content and lowest amounts of ash, protein, and moisture (p < 0.05). Furthermore, the IL-1 and TNF-α relative gene expression levels increased approximately 16 and 22 times in T8, respectively (p < 0.05). The findings suggest that the combined use of Dip+ and SelMet yields superior results compared to their individual use. We recommend combining 4 mg SelMet and 3 g Dip+ in fish farms. | ||
کلیدواژهها | ||
Growth؛ IgM؛ Lysozyme؛ Probiotic؛ Prebiotic | ||
مراجع | ||
Aftabgard, M, Salarzadeh, A, Mohseni, M, Bahri Shabanipour, AH & Zorriehzahra, MEJ 2019, The combined efficiency of dietary isomaltooligosaccharides and Bacillus spp. on the growth, hemato-serological, and intestinal microbiota indices of Caspian brown trout (Salmo trutta caspius Kessler, 1877). Probiotics and Antimicrobial Proteins, 11: 198-206.
Ai, Q, Xu, H, Mai, K, Xu, W, Wang, J & Zhang, W 2011, Effects of dietary supplementation of Bacillus subtilis and fructooligosaccharide on growth performance, survival, non-specific immune response and disease resistance of juvenile large yellow croaker, Larimichthys crocea. Aquaculture, 317: 155-161.
Ajdari, A, Ghafarifarsani, H, Hoseinifar, SH, Javahery, S, Narimanizad, F, Gatphayak, K & Van Doan, H 2022, Effects of dietary supplementation of primaLac, inulin, and biomin imbo on growth performance, antioxidant, and innate immune responses of common carp (Cyprinus carpio). Aquaculture Nutrition, 1-13.
Akrami, R, Nasri‐Tajan, M, Jahedi, A, Jahedi, M, Razeghi Mansour, M & Jafarpour, SA 2015, Effects of dietary synbiotic on growth, survival, lactobacillus bacterial count, blood indices and immunity of beluga (Huso huso L innaeus, 1754) juvenile. Aquaculture Nutrition, 21: 952-959.
Ali, D, Almarzoug, MH, Al Ali, H, Samdani, MS, Hussain, SA & Alarifi, S 2020, Fish as bio indicators to determine the effects of pollution in river by using the micronucleus and alkaline single cell gel electrophoresis assay. Journal of King Saud University-Science, 32: 2880-2885.
Ambas, I, Fotedar, R & Buller N 2017, Synbiotic effect of Bacillus mycoides and organic selenium on immunity and growth of marron, Cherax cainii. Aquaculture Research, 48: 2729-2740.
AOAC. 1990, Official methods of analysis. 15th edn. Virginia, Association of Official Analytical Chemists.
Arthur, JR, McKenzie, RC & Beckett, GJ 2003, Selenium in the immune system. The Journal of Nutrition, 33: 1457S-1459S.
Ashouri, S, Keyvanshokooh, S, Salati, AP, Johari, SA & Pasha-Zanoosi, H 2015, Effects of different levels of dietary selenium nanoparticles on growth performance, muscle composition, blood biochemical profiles and antioxidant status of common carp (Cyprinus carpio). Aquaculture, 446: 25-29.
Ashouri, G, Soofiani, NM, Hoseinifar, SH, Jalali, SAH, Morshedi, V, Valinassab, T, Bagheri, D, Van Doan, H, Mozanzadeh, MT & Carnevali, O 2020, Influence of dietary sodium alginate and Pediococcus acidilactici on liver antioxidant status, intestinal lysozyme gene expression, histomorphology, microbiota, and digestive enzymes activity, in Asian sea bass (Lates calcarifer) juveniles. Aquaculture, 518: 734638.
Ates, B, Orun, I, Talas, ZS, Durmaz, G & Yilmaz, I 2008, Effects of sodium selenite on some biochemical and hematological parameters of rainbow trout (Oncorhynchus mykiss Walbaum, 1792) exposed to Pb2+ and Cu2+. Fish Physiology and Biochemistry, 34: 53-59.
Authman, MM, Zaki, MS, Khallaf, EA & Abbas, HH 2015, Use of fish as bio-indicator of the effects of heavy metals pollution. Journal of Aquaculture Research & Development, 6: 1-13.
Biller-Takahashi, JD, Takahashi, LS, Mingatto, FE & Urbinati, EC 2015, The immune system is limited by oxidative stress: dietary selenium promotes optimal antioxidative status and greatest immune defense in pacu, Piaractus mesopotamicus. Fish & Shellfish Immunology, 47: 360-367.
Çiçek, S & Özoğul F 2021, Effects of selenium nanoparticles on growth performance, hematological, serum biochemical parameters, and antioxidant status in fish. Animal Feed Science and Technology, 281: 115099.
Cipriano, RC & Austin, B 2011, Furunculosis and other aeromonad diseases. In Fish diseases and disorders. Volume 3: viral, bacterial and fungal infections (pp. 424-483). Wallingford UK: CABI.
Dato-Cajegas, CRS & Yakupitiyage, A 1996, The need for dietary mineral supplementation for Nile tilapia, Oreochromis niloticus, cultured in a semi-intensive system. Aquaculture, 144: 227-237.
Dawood, MA, Koshio, S, Abdel‐Daim, MM & Van Doan, H 2019, Probiotic application for sustainable aquaculture. Reviews in Aquaculture, 11: 907-924.
Dawood, MA, Eweedah, NM, Moustafa, EM & Shahin, MG 2020, Synbiotic effects of Aspergillus oryzae and β-glucan on growth and oxidative and immune responses of nile Tilapia, Oreochromis niloticus. Probiotics and Antimicrobial Proteins, 12: 172-183.
Demigné, C & Rémésy, C 1985, Stimulation of absorption of volatile fatty acids and minerals in the cecum of rats adapted to a very high fiber diet. The Journal of Nutrition, 115: 53-60.
Devi, G, Harikrishnan, R, Paray, BA, Al-Sadoon, MK, Hoseinifar, SH & Balasundaram, C 2019, Effect of symbiotic supplemented diet on innate-adaptive immune response, cytokine gene regulation and antioxidant property in Labeo rohita against Aeromonas hydrophila. Fish & Shellfish Immunology, 89: 687-700.
Dumas, A, De Lange, CF, France, J & Bureau, DP 2007, Quantitative description of body composition and rates of nutrient deposition in rainbow trout (Oncorhynchus mykiss). Aquaculture, 273: 165-181.
Ellis, AE 1999, Immunity to bacteria in fish. Fish & Shellfish Immunology, 9: 291–308.
Farooqi, FS & Qureshi, WUH 2018, Immunostimulants for aquaculture health management. Journal of Pharmacognosy and Phytochemistry, 7:1441-1447.
Faruk, MAR, Begum, MM & Anka, IZ 2021, Use of Immunostimulants for Fish Health Management in Mymensingh District of Bangladesh. SAARC Journal of Agriculture, 19: 237-248.
Firouzbakhsh, F, Mehrabi, Z, Heydari, M, Khalesi, MK & Tajick, MA 2014, Protective effects of a synbiotic against experimental Saprolegnia parasitica infection in rainbow trout (Oncorhynchus mykiss). Aquaculture Research, 45: 609-618.
Fonseca, SBD, Silva, JHVD, Beltrão Filho, EM, Mendes, PDP, Fernandes, JBK, Amancio, ALL, Jordão Filho, J, Lacerda, PBD & Silva, FRPD 2013, Influence of levels and forms of selenium associated with levels of vitamins C and E on the performance, yield and composition of tilapia fillet. Food Science and Technology, 33: 109-115.
Gao, Z, Wang, W, Abbas, K, Zhou, X, Yang, Y, Diana, JS, Wang, H, Wang, H & Li, Y 2007, Haematological characterization of loach Misgurnus anguillicaudatus: a comparison among diploid, triploid and tetraploid specimens. Comparative Biochemistry and Physiology, 147: 1001-1008.
Gatlin, DM, Poe, WE & Wilson, RP 1986, Effects of singular and combined dietary deficiencies of selenium and vitamin E on fingerling channel catfish (Ictalurus punctatus). The Journal of Nutrition, 116: 1061-1067.
Ghafari farsani, H, Rashidian, G, Bagheri, T, Hoseinifar, SH & Van Doan, H 2021, Study on growth enhancement and the protective effects of dietary prebiotic inulin on immunity responses of rainbow trout fry infected with. Annals of Animal Science, 21: 543-559.
Ghaniem, S, Nassef, E, Zaineldin, AI, Bakr, A & Hegazi, S 2022, A Comparison of the beneficial effects of inorganic, organic, and elemental nano-selenium on Nile tilapia: Growth, immunity, oxidative status, gut morphology, and immune gene expression. Biological Trace Element Research, 1-16.
Gómez, GD & Balcázar, JL 2008, A review on the interactions between gut microbiota and innate immunity of fish. FEMS Immunology & Medical Microbiology, 52: 145-154.
Grisdale-Helland, B, Takle, H & Helland, SJ 2013, Aerobic exercise increases the utilization efficiency of energy and protein for growth in Atlantic salmon post-smolts. Aquaculture, 406: 43-51.
Hamilton, SJ 2004, Review of selenium toxicity in the aquatic food chain. Science of the Total Environment, 326: 1-31.
Han, D, Xie, S, Liu, M, Xiao, X, Liu, H, Zhu, X & Yang, Y 2011, The effects of dietary selenium on growth performances, oxidative stress and tissue selenium concentration of gibel carp (Carassius auratus gibelio). Aquaculture Nutrition, 17: e741-e749.
Hao, X, Ling, Q & Hong, F 2014, Effects of dietary selenium on the pathological changes and oxidative stress in loach (Paramisgurnus dabryanus). Fish Physiology and Biochemistry, 40: 1313-1323.
Hassaan, MS, Soltan, MA, Mohammady, EY, Elashry, MA, El-Haroun, ER & Davies, SJ 2018, Growth and physiological responses of Nile tilapia, Oreochromis niloticus fed dietary fermented sunflower meal inoculated with Saccharomyces cerevisiae and Bacillus subtilis. Aquaculture, 495: 592-601.
Heidarieh, M, Mirvaghefi, AR, Akbari, M, Sheikhzadeh, N, Kamyabi‐Moghaddam, Z, Askari, H & Shahbazfar, AA 2013, Evaluations of H ilyses™, fermented Saccharomyces cerevisiae, on rainbow trout (Oncorhynchus mykiss) growth performance, enzymatic activities and gastrointestinal structure. Aquaculture Nutrition, 9: 343-348.
Hilton, JW, Hodson, PV & Slinger, SJ 1980, The requirement and toxicity of selenium in rainbow trout (Salmo gairdneri). The Journal of Nutrition, 110: 2527-2535.
Hoseinifar, SH, Ringø, E, Shenavar Masouleh, A & Esteban, MÁ 2016, Probiotic, prebiotic and synbiotic supplements in sturgeon aquaculture: a review. Reviews in Aquaculture, 8: 89-102.
Hoseinifar, SH, Hosseini, M, Paknejad, H, Safari, R, Jafar, A, Yousefi, M, Van Doan, H & Mozanzadeh, MT 2019, Enhanced mucosal immune responses, immune related genes and growth performance in common carp (Cyprinus carpio) juveniles fed dietary Pediococcus acidilactici MA18/5M and raffinose. Developmental & Comparative Immunology, 94: 59-65.
Ilham, I & Fotedar, R 2016, Growth, antioxidant capacity and muscle histochemistry of yellowtail kingfish (Seriola lalandi Valenciennes 1883): selenium and temperature interaction. Animal Feed Science and Technology, 217: 76-86.
Iqbal, S. Atique, U, Mughal, MS, Khan, N, Haider, MS, Iqbal, KJ & Akmal, M 2017, Effect of selenium incorporated in feed on the hematological profile of tilapia (Oreochromis niloticus). Journal of Aquaculture Research & Development, 8: 1-6.
Jenkins, KJ, Collins, FW & Hidiroglou, M 1992, Research note: efficacy of various flavonoids and simple phenolics in prevention of nutritional myopathy in the chick. Poultry Science, 71: 1577-1580.
Khara, H, Sayyadborani, M & Sayyadborani, M 2016, Effects of α-tocopherol (vitamin E) and ascorbic acid (vitamin C) and their combination on growth, survival and some haematological and immunological parameters of Caspian brown trout, Salmo trutta caspius juveniles. Turkish Journal of Fisheries and Aquatic Sciences, 16: 385-393.
Khara. H 2016, Effect of successive milt collection on sperm quality and reproduction of wild and cultured endangered caspian brown trout, Salmo trutta. Iranian Journal of Fisheries Science, 15: 31-38.
Khan, KU, Zuberi, A, Fernandes, JBK, Ullah, I & Sarwar, H 2017, An overview of the ongoing insights in selenium research and its role in fish nutrition and fish health. Fish Physiology and Biochemistry, 43: 1689-1705.
Khosravi‐Katuli, K, Mohammadi, Y, Ranjbaran, M, Ghanaatian, H, Khazaali, A, Paknejad, H & Santander, J 2021, Effects of mannan oligosaccharide and synbiotic supplementation on growth performance and immune response of Gilthead Sea Bream (Sparus aurata) before and after thermal stress. Aquaculture Research, 52: 3745-3756.
Knowles, TP, Mullin, RA, Hunter, JA & Douce, HF 2006, Effects of syringe material, sample storage time, and temperature on blood gases and oxygen saturation in arterialized human blood samples. Respiratory Care, 51: 732-736.
Küçükbay, FZ, Yazlak, H, Karaca, I, Sahin, N, Tuzcu, M, Cakmak, MN & Sahin, K 2009, The effects of dietary organic or inorganic selenium in rainbow trout (Oncorhynchus mykiss) under crowding conditions. Aquaculture Nutrition, 15: 569-576.
Lee, CS & Donaldson, EM 2001, Reproductive Biotechnology in Finfish Aquaculture. Proceedings of a Workshop Hosted by the Oceanic Institute. Elzevier, p. 11.
Lee, S, Nambi, RW, Won, S, Katya, K & Bai, SC 2016, Dietary selenium requirement and toxicity levels in juvenile Nile tilapia, Oreochromis niloticus. Aquaculture, 464: 153-158.
Lemly, AD 2002, Symptoms and implications of selenium toxicity in fish: The Belews Lake case example. Aquatic Toxicology, 57: 39-49.
Levander, OA, Alfthan, G, Arvilommi, H, Gref, CG, Huttunen, JK, Kataja, M, Koivistoinen, P & Pikkarainen, J 1983, Bioavailability of selenium to Finnish men as assessed by platelet glutathione peroxidase activity and other blood parameters. The American Journal of Clinical Nutrition, 37: 887-897.
Li, P & Gatlin, DM 2003, Evaluation of brewer's yeast (Saccharomyces cerevisiae) as a feed supplement for hybrid Striped Bass (Moronechry sops × M. saxatilis). Aquaculture, 219: 681–692.
Lin, YH & Shiau, SY 2005, Dietary selenium requirements of juvenile grouper, Epinephelus malabaricus. Aquaculture, 250: 356-363.
Lin, YH 2014, Effects of dietary organic and inorganic selenium on the growth, selenium concentration and meat quality of juvenile grouper Epinephelus malabaricus. Aquaculture, 430: 114-119.
Lin, W, Zhang, J, Xu, JF & Pi, J 2021, The advancing of selenium nanoparticles against infectious diseases. Frontiers in Pharmacology, 12: 2284.
Lorentzen, M, Maage, A & Julshamn, K 1994, Effects of dietary selenite or selenomethionine on tissue selenium levels of Atlantic salmon (Salmo salar). Aquaculture, 121: 359-367.
Magnadóttir, B 2006, Innate immunity of fish (overview). Fish & Shellfish Immunology, 20: 137-151.
Mansourghanaei, A, Khara, H, Vahabzadeh Roudsari, H, Pajand & Z, Ahmadnezhad, M 2022, Alterations in Hematological indices, histopathology and p450 gene expression in stellate sturgeon (Acipenser stellatus Pallas, 1811) fingerlings exposed to different salinities levels and ammonia. Iranian Journal of Fisheries Science, 21: 1343–1366.
Mansour, ATE, Goda, AA, Omar, EA, Khalil, HS & Esteban, MÁ 2017, Dietary supplementation of organic selenium improves growth, survival, antioxidant and immune status of meagre, Argyrosomus regius, juveniles. Fish & Shellfish Immunology, 68: 516-524.
Mehrabi, Z, Firouzbakhsh, F & Jafarpour, A 2012, Effects of dietary supplementation of synbiotic on growth performance, serum biochemical parameters and carcass composition in rainbow trout (Oncorhynchus mykiss) fingerlings. Journal of Animal Physiology and Animal Nutrition, 96: 474-481.
Merrifield, DL, Dimitroglou, A, Foey, A, Davies, SJ, Baker, RT, Bøgwald, J, Castex, M & Ringø, E 2010, The current status and future focus of probiotic and prebiotic applications for salmonids. Aquaculture, 302: 1-18.
Miezeliene, A., Alencikiene, G., Gruzauskas, R., Barstys, T., 2011, ‘The effect of dietary selenium supplementation on meat quality of broiler chickens’, Biotechnol. Agron. Society and Environment, vol. 15, no. 1, pp. 61-69.
Mohammadi, G, Hafezieh, M, Karimi, AA, Azra, MN, Van Doan, H, Tapingkae, W, Abdelrahman, HA & Dawood, MA 2022, The synergistic effects of plant polysaccharide and Pediococcus acidilactici as a synbiotic additive on growth, antioxidant status, immune response, and resistance of Nile tilapia (Oreochromis niloticus) against Aeromonas hydrophila. Fish & Shellfish Immunology, 120: 304-313.
Mohammadi, M & Khara, H 2015, Effect of different anesthetics agents (Clove oil, MS-222, Ketamine, Tobacco) on hematological parameters and stress indicators Rainbow Trout Oncorhynchus mykiss. Comparative Clinical Pathology, 24: 1039-1044.
Mohammadian, T, Nasirpour, M, Tabandeh, MR & Mesbah, M 2019, Synbiotic effects of β-glucan, mannan oligosaccharide and Lactobacillus casei on growth performance, intestine enzymes activities, immune-hematological parameters and immune-related gene expression in common carp, Cyprinus carpio: An experimental infection with Aeromonas hydrophila. Aquaculture, 511: 634197.
Montagne, L, Pluske, JR & Hampson, DJ 2003, A review of interactions between dietary fibre and the intestinal mucosa, and their consequences on digestive health in young non-ruminant animals. Animal feed science and technology, 108: 95-117.
Mouriño, JLP, Vieira, FN, Jatobá, A, Silva, BC, Pereira, GV, Jesus, GFA, Ushizima, TT, Seiffert, WQ & Martins, ML, 2017, Symbiotic supplementation on the hemato‐immunological parameters and survival of the hybrid surubim after challenge with Aeromonas hydrophila’. Aquaculture Nutrition, 23: 276-284.
Muiswinkel, WV & Vervoorn-Van Der Wal, B 2006, The immune system of fish. In Fish diseases and disorders,. Volume 1: protozoan and metazoan infections (pp. 678-701). Wallingford UK: CABI.
Muller, EE, Locatelli, V & Cocchi, D 1999, Neuroendocrine control of growth hormone secretion. Physiological Reviews, 79: 511-607.
Naiel, MA, Negm, SS, Abd El-hameed, SA & Abdel-Latif, HM, 2021, Dietary organic selenium improves growth, serum biochemical indices, immune responses, antioxidative capacity, and modulates transcription of stress-related genes in Nile tilapia reared under sub-optimal temperature. Journal of Thermal Biology, 99: 102999.
Nayak, SK 2010, Probiotics and immunity: A fish perspective. Fish & Shellfish Immunology, 29: 2-14.
Nekoubin, H, Gharedashi, E, Imanpour, MR & Asgharimoghadam, A 2012a, The influence of synbiotic (Biomin Imbo) on growth factors and survival rate of Zebrafish (Danio rerio) larvae via supplementation with biomar. Global Veterinaria, 8: 503-506.
Nekoubin, H, Hatefi, S, Javahery, S & Sudagar, M 2012b, Effects of synbiotic (Biomin Imbo) on growth performance, survival rate, reproductive parameters of angelfish (Pterophyllum scalare). Walailak Journal of Science and Technology, 9: 327-332.
Niers, LE, Timmerman, HM, Rijkers, GT, van Bleek, GM, van Uden, NO, Knol, EF, Kapsenberg, ML, Kimpen, JL & Hoekstra, MO 2005, Identification of strong interleukin‐10 inducing lactic acid bacteria which down‐regulate T helper type 2 cytokines. Clinical & Experimental Allergy, 35: 1481-1489.
Nugroho, RA & Fotedar, R 2014, Comparing the effects of dietary selenium and mannan oligosaccharide supplementation on the growth, immune function, and antioxidant enzyme activity in the cultured marron Cherax cainii. Aquaculture international, 22: 585-596.
Oliva‐Teles, A 2012, Nutrition and health of aquaculture fish. Journal of Fish Diseases, 35: 83-108.
Pacini, N, Abete, MC, Dörr, AJM, Prearo, M, Natali, M & Elia, AC 2012, Detoxifying response in juvenile tench fed by selenium diet. Environmental Ttoxicology and Pharmacology, 33: 46-52.
Poston, HA & Combs Jr, GF 1979, Interrelationships between requirements for dietary selenium, vitamin E, and L-ascorbic acid by Atlantic salmon (Salmo salar) fed a semipurified diet. Fish Health News, 8: 54-63.
Rahbar, M, Nezami, ShA, Khara, H, Rezvani, M, Khodadoust, A, Movahed, R, & Eslami, S 2011, Effect of age on reproductive performance in female Caspian brown trout (Salmo trutta caspious, Kessler 1877). Caspian Journal of Environment Sciences, 9: 97-103.
Ray, AK, Ghosh, K & Ringø, EJAN 2012, Enzyme‐producing bacteria isolated from fish gut: a review. Aquaculture Nutrition, 18: 465-492.
Rizzo, A, Minoia, G, Trisolini, C, Manca, R & Sciorsci, RL 2007, Concentrations of free radicals and beta-endorphins in repeat breeder cows. Animal Rreproduction Science, 100: 257-263.
Rohani, MF, Islam, SM, Hossain, MK, Ferdous, Z, Siddik, MA, Nuruzzaman, M, Padeniya, U, Brown, C & Shahjahan, M 2021, Probiotics, prebiotics and synbiotics improved the functionality of aquafeed: Upgrading growth, reproduction, immunity and disease resistance in fish. Fish & Shellfish Immunology, 120: 569-589.
Roubach, R, Menezes, A, Oh, K & Dabbadie, L 2019, Towards guidelines on sustainable aquaculture. FAO Aquaculture Newsletter, 60: 55-56.
Sadat Hoseini Madani, N, Adorian, TJ, Ghafari Farsani, H & Hoseinifar, SH 2018, The effects of dietary probiotic Bacilli (Bacillus subtilis and Bacillus licheniformis) on growth performance, feed efficiency, body composition and immune parameters of whiteleg shrimp (Litopenaeus vannamei) postlarvae. Aquaculture Research, 49: 1926-1933.
Safabakhsh, M, Mohseni, M, Bahri, A, Mohammadizadeh, F 2020, Effect of dietary selenium on growth performance, survival rate and biochemical-blood profile of farmed juvenile beluga (Huso huso). Iranian Journal of Fisheries Sciences, 19 :2077-2088
Safari, O, Sarkheil, M, Shahsavani, D & Paolucci, M 2021, Effects of Single or Combined Administration of Dietary Synbiotic and Sodium Propionate on Humoral Immunity and Oxidative Defense, Digestive Enzymes and Growth Performances of African Cichlid (Labidochromis lividus) Challenged with Aeromonas hydrophila. Fishes, 6: 63.
Saffari, S, Keyvanshokooh, S, Zakeri, M, Johari, SA & Pasha‐Zanoosi, HJ 2017, Effects of different dietary selenium sources (sodium selenite, selenomethionine and nanoselenium) on growth performance, muscle composition, blood enzymes and antioxidant status of common carp (Cyprinus carpio). Aquaculture Nutrition, 23: 611-617.
Sakai, M 1999, Current research status of fish immunostimulants. Aquaculture, 172: 63-92.
Sandhya, SV & Vijayan KK 2019, Symbiotic association among marine microalgae and bacterial flora: a study with special reference to commercially important Isochrysis galbana culture. Journal of Applied Phycology, 31: 2259-2266.
Sewaka, M, Trullas, C, Chotiko, A, Rodkhum, C, Chansue, N, Boonanuntanasarn, S & Pirarat N 2019, Efficacy of synbiotic Jerusalem artichoke and Lactobacillus rhamnosus GG-supplemented diets on growth performance, serum biochemical parameters, intestinal morphology, immune parameters and protection against Aeromonas veronii in juvenile red tilapia (Oreochromis spp.). Fish & Shellfish Immunology, 86, 260-268.
Shenkin, A 2006, Micronutrients in health and disease. Postgraduate Medical Journal, 82: 559-567.
Smith, AM & Picciano, MF 1987, Relative bioavailability of seleno-compounds in the lactating rat. The Journal of Nutrition,117: 725-731.
Surai, PF 2002,. Selenium in poultry nutrition 1. Antioxidant properties, deficiency and toxicity. World's Poultry Science Journal, 58: 333-347.
Tangestani, R, Doughikollaee, E.A, Ebrahimi, E & Zare, P 2011, Effects of garlic essential oil as an immunostimulant on hematological indices of juvenile beluga (Huso huso). Journal of Veterinary Research, 66: 209-279.
Tseng, Y, Dominguez, D, Bravo, J, Acosta, F, Robaina, L, Geraert, P.A, Kaushik, S & Izquierdo, M 2021, Organic selenium (OH-MetSe) effect on whole body fatty acids and mx gene expression against viral infection in gilthead seabream (Sparus aurata) juveniles. Animals, 11: 2877.
Vaezi, M, Khara, H, Shenavar, AR 2016, Synbiotic (Biomin imbo) alters gut bacterial microflora of Russian sturgeon, Acipenser gueldenstaedtii in a Time-dependent pattern. Journal of Parasitic Diseases. 40: 1189–1192.
Vallejos-Vidal, E, Reyes-López, F, Teles, M & MacKenzie, S 2016, The response of fish to immunostimulant diets. Fish & Shellfish Immunology, 56: 34-69.
Wang, C & Lovell, RT 1997, Organic selenium sources, selenomethionine and selenoyeast, have higher bioavailability than an inorganic selenium source, sodium selenite, in diets for channel catfish (Ictalurus punctatus). Aquaculture, 152; 223-234.
Wang, Y, Han, J, Li, W & Xu, Z 2007, Effect of different selenium source on growth performances, glutathione peroxidase activities, muscle composition and selenium concentration of allogynogenetic crucian carp (Carassius auratus gibelio). Animal Feed Science and Technology, 134: 243-251.
Wang, YD, Wang, X & Wong, YS 2013, Generation of selenium-enriched rice with enhanced grain yield, selenium content and bioavailability through fertilisation with selenite. Food Chemistry, 141: 2385-2393.
Wang, J, Um, P, Dickerman, BA & Liu, J 2018, Zinc, magnesium, selenium and depression: a review of the evidence, potential mechanisms and implications. Nutrients, 10: 584.
Wang, Y, Zhao, F, Rijntjes, E, Wu, L, Wu, Q, Sui, J, Liu, Y, Zhang, M, He, M, Chen, P & Hu, S 2019, Role of selenium intake for risk and development of hyperthyroidism. The Journal of Clinical Endocrinology & Metabolism, 104: 568-580.
Wang, L, Sagada, G, Wang, R, Li, P, Xu, B, Zhang, C, Qiao, J & Yan, Y, 2022, Different forms of selenium supplementation in fish feed: The bioavailability, nutritional functions, and potential toxicity. Aquaculture, 549: 737819.
Watanabe, T, Kiron, V, Satoh, S 1997, Trace minerals in fish nutrition. Aquaculture, 151: 185–207.
Yarahmadi, P, Miandare, HK, Farahmand, H, Mirvaghefi, A & Hoseinifar, SH 2014, Dietary fermentable fiber upregulated immune related genes expression, increased innate immune response and resistance of rainbow trout (Oncorhynchus mykiss) against Aeromonas hydrophila. Fish & Shellfish Immunology, 41: 326-331.
Ye, JD, Wang, K, Li, FD & Sun, YZ 2011, Single or combined effects of fructo‐and mannan oligosaccharide supplements and Bacillus clausii on the growth, feed utilization, body composition, digestive enzyme activity, innate immune response and lipid metabolism of the Japanese flounder Paralichthys olivaceus. Aquaculture Nutrition, 17: 902-911.
Yonar, ME 2012, The effect of lycopene on oxytetracycline-induced oxidative stress and immunosuppression in rainbow trout (Oncorhynchus mykiss, W.). Fish & Shellfish Immunology, 32: 994-1001.
Yousefi, S, Shokri, MM, Noveirian, HA & Hoseinifar, SH 2020, Effects of dietary yeast cell wall on biochemical indices, serum and skin mucus immune responses, oxidative status and resistance against Aeromonas hydrophila in juvenile Persian sturgeon (Acipenser persicus). Fish & Shellfish Immunology, 106: 464-472.
Zakariaee, H, Sudagar, M, Hosseini, SS, Paknejad, H Baruah, K 2021, In vitro Selection of Synbiotics and in vivo Investigation of Growth Indices, Reproduction Performance, Survival, and Ovarian Cyp19α Gene Expression in Zebrafish, Danio rerio. Frontiers in Microbiology, 12: 758-758.
Zargari, A, Nejatian, M, Abbaszadeh, S, Jahanbin, K, Bagheri, T, Hedayati, A & Sheykhi, M 2023, Modulation of toxicity effects of CuSO4 by sulfated polysaccharides extracted from brown algae (Sargassum tenerrimum) in Danio rerio as a model. Scientific Reports, 13: 11429.
Zargari, A, Mazandarani, M, Safari, R, Hoseinifar, H & Hedayati, A 2024, Modulation of toxic effects of ammonia on growth, pathology of liver and kidney tissues and relative expression of GH and IGF-1 Genes by CoQ10 Supplementation in Oncorhynchus mykiss. Fish Physiology and Biochemistry, 50: 1711-1729
Zheng, L, Feng, L, Jiang, WD, Wu, P, Tang, L, Kuang, SY, Zeng, YY, Zhou, XQ & Liu, Y 2018, Selenium deficiency impaired immune function of the immune organs in young grass carp (Ctenopharyngodon idella). Fish & Shellfish Immunology, 77: 53-70.
Zhang, M, Li, M, Li, X, Qian, Y, Wang, R & Hong, M 2020, The protective effects of selenium on chronic ammonia toxicity in yellow catfish (Pelteobagrus fulvidraco). Fish & Shellfish Immunology, 107: 137-145.
Zhou, X, Wang, Y, Gu, Q & Li, W 2009, Effects of different dietary selenium sources (selenium nanoparticle and selenomethionine) on growth performance, muscle composition and glutathione peroxidase enzyme activity of crucian carp (Carassius auratus gibelio). Aquaculture, 291: 78-81.
| ||
آمار تعداد مشاهده مقاله: 55 تعداد دریافت فایل اصل مقاله: 40 |