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Use of Dietary Salt to Rainbow Trout (Oncorhynchus mykiss) for Increasing Seawater Adaptability  

Kim, Pyong-Kih (Department of Marine Bio-resources, Gangwon Provincial University)
Kim, You-Hee (Department of Marine Bio-resources, Gangwon Provincial University)
Jeon, Joong-Kyun (Faculty of Marine Bioscience and Technology, Kangnung National University)
Publication Information
Journal of Aquaculture / v.18, no.2, 2005 , pp. 69-75 More about this Journal
Abstract
One 30-day feeding trial was conducted to examine the effects of dietary salt on seawater adaptability of rainbow trout (Onchorhynchus mykiss) fed three experimental diets containing 0% (control), 4% and 8% salt. The experimetal period included 30 days of feeding trial in freshwater, 3 days of the step by step seawater acclimation with-out feeding diets, and 21 more days of seawater adaptation period (not with all experimental fish) with feeding the basal diet. Growth rates from triplicate groups were determined fur 30 days of feeding trial. Blood samples were taken at the begining and at the end of feeding trial, and 3 times (on 1st, 4th and 8th day) of the seawater adaptation period. Daily survival rates of duplicate groups from three experimetal treatments were recorded for 21 days of the seawater adaptation period. Total average initial and final fish weight were $149.5{\pm}7.6\;and\;187.1{\pm}7.6g$. Feed efficiency of fish fed diets containing 4% and 8% salt were significantly better than those of fish fed the control diet. Average cumulative survival rates were 72, 80 and 88% from the control, 4% and 8% salt diets, respectively. Pulse rate per minutes decreased with dietary salt level. Serum $Na^+\;and\;Cl^-$ concentrations of fish fed 4% and 8% salt diets were significantly higher than those of fish fed the control diet (P<0.05), however, the concentrations were stabilized after 8 days of seawater adaptation. Serum cortisol, glucose, cholesterol and tryglyceride concentrations, and the osmorality of fish decreased with dietary salt level, these values were significantly lower than those of fish fed the control diet. These results indicated that the dietary supplementation of salt could have advantages for seawater adaptability of rainbow trout.
Keywords
Rainbow trout; Seawater adaptation; Dietary salt; Blood samples;
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1 Jackson, A. J., 1979. Acclimatization of rainbow trout (Sa/rno gairdneri Richardson) to seawater. Ph. D. Thesis, University of .Stirling, Great Britain, 162 pp
2 Kirsch, R., W. Humbert and V Simoneaus, 1985. The gut as an osmorefylatory organ: comparative aspects and special references to fishes. (in) R. Gilles and M. Gilles-Baillien (ed.), Transport Processes, Iono and Osmoregulation. Springer Verlag, Berlin, pp. 265-277
3 Mazeaud, M. M., F. Mazeaud and E. M. Donaldson, 1977. Primary and secondary effects of stress in fish: some new data with a general review. Trans. Arne. Fish. Soc., 106,201-212   DOI
4 Ricker, W. E., 1979. Growth rates and models. (in) W. S. Hoar and D. J. Randall (ed.), Fish Physiology, Vol. 8. Academic Press, London, pp. 678-743
5 Usher, M. L., C. Talbot and F. B. Eddy, 1988. Drinking in salmon smolts transferred to seawater and the relationship between drinking and feeding. Aquaculture, 73, 237-246   DOI   ScienceOn
6 Zaugg, W. S., D. D. Roley, E. G Prentice, K. X. Goves and F. W. Waknitz, 1983. Increased seawater survival and contribution to the fishery of chinook salmon (Onchorhynchus tshawytscha) by supplemented dietary salt. Aquaculture, 32, 183-188   DOI   ScienceOn
7 전중균,김병기,명정구,김종만, 2000. 그물작업에 의한 은연어 스트레스 반응, 한국수산학회지, 33, 115-118
8 Uno, M., 1989. Seawater adaptability in autumn and freshwater adaptability in spring, in juveniles of several salmonid species. Nip. Sui. Gak., 55, 191-196   DOI
9 Hong, K.-P., P.-K. Kim, J.-K. Jeon, Y. Kim, Y.-J. Park, J.-G Myoung and J. M. Kim. 2004. Serum stress responses during seawater acclimation in coho salmon, Oncorhynchus kisutch. Ocean Polar Re., 26, 433-438   DOI
10 Bath, N. R. and F. B. Eddy, 1979. Salt and water balance in rainbow trout (Sa/rno gairdneri) rapidly transferred from freshwater to seawater. J. Exp. BioI., 83, 193-202
11 Maetz, J., 1971. Fish gills: mechanisms of salt transfer in freshwater and seawater. Phil. Trans. R. Soc. Lond., B262, 209-249
12 小島,偉泉,孝行,1985.天然サクラマス幼魚,のスモルト變態過程 における海水適應能の變化.北海道立水産孵化場研報, 40, 77-86
13 Jackson, A. J., 1977. Reducing trout mortality after seawater transfer. Fish Farm. Int., 4, 31-32
14 Mckay, L. R. and B. Gjerde, 1985. The effect of salinity on growth of rainbow trout. Aquaculture, 49, 325-331   DOI   ScienceOn
15 Boeuf, G and P. Payan., 2001. How should salinity influence fish growth? Comp. Bio. Physio. Part C, 130,411-423   DOI
16 Schreck, C. B., A. G Maule and S. I. Kaattari, 1993. Stress and disease resistance. (in) J. F. Muir and R. J. Roberts (ed.), Recent Advances in Aquaculture IV. Blackwell Sci. Pub., Oxford. pp. 170-175
17 Kirsch, R. and M. F. Meister, 1982. Progressive processing of ingested water in the gut of seawater teleosts. J. Exp. BioI., 98, 67-81
18 Zaugg, W. S. and L. R., McLain, 1969. Inorganic salt effects on growth, salty water adaptation and gill ATPase of Pacific salmon. (in) J. E. Halver and O. W. Neuhaus (ed.), Fish in Research. Academic Press, New York, pp. 293-306
19 Bergheim, A., F. Kroglund, D. F. Vantne and B. O. Rosseland, 1990. Blood plasma parameters in farmed atlantic salmon (Sa/rno safar L.) transferred to sea cages at age eight to ten months. Aquaculture, 84, 159-165   DOI   ScienceOn
20 Salman, N. A. and F. B. Eddy, 1990. Increased seawater adaptability of non-smolting rainbow trout by salt feeding. Aquaculture, 86, 259-270   DOI   ScienceOn
21 전중균,이지선,손영창,홍경표, 심원준, 김병기, 한창회, 2003. 노닐페놀을 주사한 조피볼 락의 신장 MFO(mixed function oxidase)의 반응. 한국수산학회지. 36.573-577
22 Pickering, A. D., T. G Pottinger, J. P. Sumpter, J. F. Carragher and P. U. Le Bail, 1991. Effects of acute and chronic stress on the levels of circulating growth hormone in the rainbow trout, Oncorhynchus mykiss. Gen. Compo Endocrinol., 83, 86-93   DOI   ScienceOn