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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 廖文亮 | |
dc.contributor.author | Hi-Lung Huang | en |
dc.contributor.author | 黃海龍 | zh_TW |
dc.date.accessioned | 2021-06-08T06:28:10Z | - |
dc.date.copyright | 2006-07-28 | |
dc.date.issued | 2006 | |
dc.date.submitted | 2006-07-25 | |
dc.identifier.citation | 一、中文文獻
王育彬, 2003. 飼料中添加羽扇豆粉取代魚粉對海鱺成長之影響. 國立台灣大學漁業科學研究所碩士論文。 行政院農委會漁業署, 2006. 中華民國台灣地區漁業年報. 行政院農委會漁業署, 台北。 余光雄, 2000. 海鱺魚苗人工繁殖紀要。養魚世界,10:50。 沈士傑, 1993. 台灣魚類誌,國立台灣大學動物學系。 邵廣昭, 1996. 台灣常見魚介貝類圖說(下),台灣省漁業局。 陳佳珍, 2001. 飼料中添加羽扇豆粉及類胰島素成長因子對吳郭魚成長效果之研究. 國立台灣大學漁業科學研究所碩士論文。 張賜玲, 謝介士, 周瑞良, 蘇茂森, 1999. 海鱺繁養殖技術簡介. 養魚世界, 270:14-26。 鄭莉莉, 2001. 中華生技室內循環水海鱺飼養研究報告。養魚世界,1:75~82。 勵一鳴, 2001. 世界魚粉市場現狀. 養魚世界, 2: 42-43. 蘇茂森, 廖一久, 1999. 台灣外海箱網養殖的現況與展望, 海洋牧場研討會. 國立台灣海洋大學, 基隆。 二、英文文獻 Akiyama, T., Arai, S., Murai, T., Nose, T., 1985. Threonine, histidine and lysine requirements of chum salmon fry. Bull. Jpn. Soc. Sci. Fish., 51: 635-639. Akiyama, D. M., Dominy, W. G., 1991. Penaeid shrimp nutrition for the commercial feed industry. American Soybean Association and Oceanic Institute, Waimanalo, USA. 50 pp. Akiyama, D. M., Dominy, W. G., Lawrence, A. L., 1992. Penaeid Shrimp Nutrition. In: A. W. Fast and L. J. Lester (Editors). Marine Shrimp Culture: Principles and practies, 535-568 pp. Anderson, R. J., Kienholz, E. W., Flickinger, S. A., 1981. Protein requirements of smallmouth bass and largemouth bass. J. Nutr.. 111: 1085- 1097. Aoe, H., Ikeda, K., Saito T., 1974. Nutrition of protein in young carp-II. Nutritive value of protein hydrolyzates. Bull. Jpn. Soc. Sci. Fish., 40: 375-379. Aoe, H., Masuda, I., Abe, I., Saito, T., Toyoda, T., Kitamura, S., 1970. Nutrition of protein in young carp-Ι. Nutritive value of free amino acids. Bull. Jpn. Soc. Sci. Fish., 36: 407-413. AOAC., 1984. Official Methods of Analysis.14th ed. Association of Official Chemists. Washington D.C., USA. Bangoula, D., Parent, J.P., Vellas, F., 1993. Valeur alimentaire du lupin blanc (Lupinus albus) chez la truite arc-en-ciel (Oncorhynchus mykiss) Effect de la cuissoniextrusion. Reprod. Nutr. Dev., 33: 325-334. Batterham, E. S., Andersen, L. M., Lowe, R. F., Darnell, R. E., 1986. Nutritional value of lupin (Lupinus albus): seed meal for growing pigs:availability of lysine, effect on yhe autoclaving and net energy content. Brit. J. Nutr., 56: 645-659. Bedford, R. M., 2000. Exogenous enzymes in monogastric nutrition–their current value and future benefits. Anim. Feed Sci. Tech., 86: 1-13. Briggs, J. C., 1960. Fishes of worldwide (circumtropical) distribution. Copeia, 171– 180 pp. Burel, C., Boujard T., Kaushik S. J., Boeuf G., Van Der Geyten S., Mol K. A. and Kuhn E. R., 1998. Incorporation of high level of extruded lupin in diets for rainbow trout (Oncorhynchus mykiss): nutritional value and effect on thyroid status. Aquaculture, 163: 325-345. Burel, C., Boujard, T., Kaushik, S. J., Boeuf, G., Van Der Geyten, S., Mol, K. A., Kuhn, E. R., Quinsac, A., Krouti, M., Ribaillier, D., 2000. Potential of plant-protein sources as fish meal substitutes in diets for turbot (Psetta maxima): growth, nutrient utilisation and thyroid status. Aquaculture, 188: 363-382. Caldwell, R. A., 1992. Effect of calcium and phytic acid on the activation of trypsinogen and the stability of trypsin. J. Agric. Food chem., 40: 43-46. Carter, C. G., 2000. Fish meal replacement by plant meals in extruded feeds for Atlantic salmon (Salmo salar). Aquaculture, 185: 299-311. Chen, J. T. F., 1986. A synopsis of vertebrates in Taiwan, vol. II. The Commercial Press, Taiwan, 506 pp. Chou, R. L., Su, M. S., Chen, H. Y., 2001. Optimal dietary protein and lipid levels for juvenile cobia (Rachycentron canadum) Aquaculture, 193: 81-89. Chou, R. L., Her, B. Y., Su, M. S., Hwang, G., Wu, Y. H., Chen, H. Y., 2004, Substituting fish meal with soybean meal in diets of juvenile cobia (Rachycentron canadum). Aquaculture, 229: 325-333. Cowey, C. B., Tacon, A. G., 1983. Fish nutrition-relevance to invertebrates. Pages 13-30 in G. D. Pruder, C. J. Langdon and D. E. Conklin, editors. Aquaculture Nutrition: Biochemical and Physiological Approaches to Shellfish Nutrition. Louisiana State University, Baton Rouge, Los Angeles. Cowey, C. B., Cho, C. Y., Sivak, J. G., Weerheim, Y. A., Stuart, D. D., 1992. Methionine intake in rainbow trout (Oncorhynchus mykiss), relationship to. cataract formation and the metabolism of methionine. J. Nutr., 122: 1154-1163. Cowey, C. B., Adron, J. W., Brown, D. A., Shanks, A. M., 1975. Studies on the nutrition of marine flatfish. The metabolism of glucose by plaice (Pleuronectes platessa) and the effect of dietary energy source on protein utilization in plaice. Brit. J. Nutr., 33: 219-231. Cowey, C. B. 1994. Amino acid requirements of fish: a critical appraisal of present values (Review). Aquaculture, 124: 1-11. Collette, B. B., 1996. Rachycentridae. Cobias. In ' Identification Guide for Fishery Purposes. The Western Central Pacific ' , Carpenter, K. E. and Niem, V. Eds., FAO, Rome. Cruz-Ricque, L. E., Guillaume, J., 1987. Squid protein effect on growth of four penaeid shrimp. J. World Aquacult. Soc., 18: 209-217. Daniels, W. H., Robinson, E. H., 1986. Protein and energy requirements of juvenile red drum (Sciaenops ocellatus). Aquaculture, 53: 243-252. Davis A. T., Stickney R. R., 1978. Growth Responses of Tilapia aurea to Dietary Protein Quality and Quantity. Trans. Am. Fish. Soc., 107: 479–483. Deshimaru, O., Shigeno, K., 1972. Introduction to the artificial diet for prawn (Penaeus japonicus). Aquaculture, 1: 115-133. Dias, J., Alvarez, M. J., Diez, A., Arzel, J., Corraze, G., Bautista, J. M., Kaushik, S. J., 1998. Regulation of hepatic lipogenesis by dietary protein/energy in Juvenile European seabass (Dicentrarchus labrax). Aquaculture, 161: 169-186. Ditty, J. G., Shaw, R. F., 1992. Larval development, distribution, and ecology of cobia Rachycentron canadum (Family: Rachycentridae) in the northern Gulf of Mexico. Fish. Bull., 90: 668–677. Duffus, C. M., Duffus, J. H., 1991. In: D’Mello, F.J.P., Duffus, C.M., Duffus, J.H. Eds. , Toxic Substances in Crop Plants. The Royal Society of Chemistry, Thomas Graham House, Science Park, Cambridge CB4 4WF, Cambridge, 1–21 pp. Duncan, A. J., 1991. Glucosinolates. In: D’Mello, F.J.P., Duffus, J.P., Duffus, C.M. Eds. , Toxic Substances in Crop Plants. The Royal Society of Chemistry, Thomas Graham House, Science Park, Cambridge CB4 4WF, Cambridge, 126-147 pp. Dupree, H. K., Halver, J. F., 1970. Amino acids essential for the growth of channel catfish (Ictalurus punctatus). Trans. Am. Fish. Soc., 99: 90-92. El-Batal, A. I., Abdel Karem, H., 2001. Phytase production and phytic acid reduction in rapeseed meal by Aspergillus niger during solid state fermentation. Food Res. Int., 34: 715-720. El-Sayed, A.-F.M., 1999. Alternative dietary protein sources for farmed tilapia (Oreochromis spp). Aquaculture, 179: 149-168. Espe, M., Lied, E., 1994. Do Atlantic salmon utilize mixtures of free amino acids to the same extent as intact protein sources for muscle protein synthesis Comp. Biochem. Physiol., 107A: 249-254. FAO, 2002. The State of World Fisheries and Aquaculture. FAO Fisheries Department, Rome, 159 pp. Folch, J., Lees, M., Stanely, C. H. S., 1957. A simple method for the isolation and purification of total lipids from animal tissues. J. Biol. Chem., 226: 477-509. Francis, G., Makkar, H. P. S., Becker, K., 2001. Antinutritional factors present in plant-derived alternate fish feed ingredients and their effects in fish. Aquaculture, 199: 197-227. Gdala, J., Jansman, A. J. M., Van Leeuwen, P., Huisman, J., Verstegen, M. W. A., 1996. Lupinus (L. luteus, L. albus, L. anqustifolius) as a protein source for young pigs. Anim. Feed Sci. Tech., 62: 239-249. Gerin, M., 1999. Feed additives and biotechnologies in aquafeeds:Moving towards sustainable developments. Intarnational Aquafeed Directory, 32-40. Gomes, E. F., Corraze, G., Kaushik, S., 1993. Effects of dietary incorporation of a co-extruded plant protein (rapeseed and peas)on growth, nutrient utilization and muscle fatty acid composition of rainbow trout (Oncorhynchus mykiss). Aquaculture, 113: 339-353. Haiqing, S., Xiqin, H., 1994. Effects of dietary animal and plant protein ratios and energy levels on growth and body composition of bream(Megalobrama skolkovii)fingerlings. Aquaculture, 127: 189-196. Hassler, W.W., Rainville, R.P., 1975. Techniques for Hatching and Rearing Cobia, Rachycentron Canadum, Through Larval and Juvenile Stages. Univ. N.C. Sea Grant Coll. Prog., Raleigh, USA. UNC-SG-75-30, 26 pp. Hayashi Y., Murasugi A., Wada C., 1981. Cadmium-Binding Peptide Induced in Fission Yeast (Schizosaccharomyces pombe). J. Biochem. (Tokyo), 90: 1561-1565. Higgs, D. A., McBride, J. R., Markert, J. R., Dosanjh, B. S., Plotnikoff, M. D., Clarke, W. C., 1982. Evaluation of Tower and Candle rapeseed (canola)meal and Bronowski rapeseed protein concentrate as protein supplements in practical dry diets for juvenile chinook salmon (Oncorhynchus tshawytscha). Aquaculture, 29: 1-31. Higgs, D. A., Fagerlund, U. H. M., McBride, J. R., Markert, J. R., Dosanjh, B. S., Plotnikoff, M. D., Clarke, W. C., 1983. Protein quality of Altex canola meal for juvenile chinook salmon (Oncorhynchus tshawytscha) considering dietary protein and 3,5,3'-triiodo-L-thyronine content. Aquaculture, 29: 1-31. Hove, E. L., 1974. Composition and protein quality of sweet lupin seed. J. Sci. Food. Agric., 25: 851-859. Hughes, K. P., Soares, J. H., 1998. Efficacy of phytase on phosphorus utilization in practice diets fed to striped bass (Morone saxatilis). Aquacult. Nutr., 4: 141-144. Jackson, A. J., Capper, B. S., Matty, A. J., 1982. Evaluation of some plant proteins in complete diets for the tilapia Sarotherodon mossambicus. Aquaculture, 27: 97-109. Johnson, L. F., Tate, M. E., 1969. Structure of “phytic acids”. Can. J. Chem, 47: 63-72. Johnson, M., Montero D., 1997. Corn gluten and meat and bone meals as protein sources in diets for gilthead seabream (Sparus aurata): nutritional and histological implications. Aquaculture, 157, 347-359. Kanazawa, A., 1989. Protein requirements of penaeid shrimp. Advances in tropical Aquaculture, Tahiti, French, Polynesia, 261-270 pp. Kanazawa, A., Teshima, S., Sakamoto, M., Shinomiya, A., 1980. Nutritional requirements of the puffer fish: purified test diet and the optimum protein level. Bull. Jpn. Soc. Sci. Fish., 46: 1357-1361. Kaushik, S. J., Luquet, P., 1980. Influence of bacterial protein incorporation and sulphur amino acid supplementation to such diet on growth of rainbow trout (Salmo gairdneri). Aquaculture, 19: 163-175 Ketola, H. G. 1982. Amino acid nutrition of fishes: requirements and supplementation of diets. Comp. Biochem. Physiol., 73B: 1-17. Kies, A. K., van Hemert, K. H. F., Sauer, W. C., 2001. Effect of phytase on protein and amino acid digestibility and energy utilization. World Poult. Sci., 57: 109-125. Kim, K. I., 1993. Requirement for phenylalanine and replacement value of tyrosine for phenylalanine in rainbow trout (Oncorhynchus mykiss). Aquaculture, 113: 243-250. Konosu, S., Hayashi, T., 1975. Determination of β-alanine betain and glycine betaine in some marine invertebrates. Nippon Suisan Gakkaishi, 41: 743-746. Konosu, S., Yamagushi, K., 1982. The flavor components in fish and shellfish in “Chemistry and Biochemistry of Marine Food Product” R. E. Martin, G. J. Flick, C. E. Hebard and D. R. Ward. (Ed.). 367-404 pp. Konosu, S., Yamaguchi, K., 1987. Role of extractive components of boiled crab in producing the characteristic flavor. Kawamura Y. Kare M. R. eds. Umami: A Basic Taste: Marcel Dekker New York, 235-253 pp. Kornegay, E. T., Denbow, D. M., Ravindran, V., 1996. Response of broilers to grades levels of microbial phytase added to maize-soyabean-meal-based diets containing three levels of non-phytate phosphorus. Br. J. Nutr., 75: 839-852. Lanari, D., Yones, M., Ballestrazzi, R., D’Agro, E., 1998. Alternative dietary protein sources (soybean, rapeseed, and potato) in diets for seabream. 8th International Symposium on Nutrition and Feeding in Fish. Las Palmas De Gran Canaria, Spain. Li, M. H., Robinson, E. H., 1997. Microbial phytase can replace inorganic phosphorus supplements in channel catfish (Ictalurus punctatus) diets. J. World Aquacul. Soc., 52: 402-406. Liao, I. C., Huang, T. S., Tsai, W. S., Hsueh, C. M., Chang S. L., Leano, E. M., 2004. Cobia culture in Taiwan: current status and problems. Aquaculture, 237: 155-165. Maenz, D. D., Engele-Schaan, C. M., Newkirk, R. W., Classen, H. L., 1999. The effect of minerals and mineral chelators on the formation of phytase-resistant and phytase-susceptible forms of phytic acid in solution and in a slurry of canola meal. Anim. Feed Sci. Tech., 81: 177-192. Maenz, D. D., 2000. Enzymatic characteristics of phytases as they relate to their use in animal feeds. Enzyme in farm animal nutrition, 61-84 pp. Mahanna, C., 1999. Changes in zinc and manganese availability in broiler chicks induced by vegetal and microbial phytases. Anim. Feed Sci. Tech., 77: 241-253. Mazid, M. A., Tanaka, Y., Yatayama, T., Simpson, K. L., Chichester, C. O., 1978. Metabolism of amino acids in aquatic animals. Ⅲ. Indispensable amino acids for Tilapia zillii. Bull. Jpn. Soc. Sci. Fish, 44: 739-742. Meyer, G. H., Franks, J. S., 1996. Food of cibia (Rachycentron canadum) from the northcentral Gulf of Mexico. Gulf Res. Rep., 9: 161-167. Millamena, O. M., Teruel, M. B., Kanazawa, A., Teshima, S., 1999. Quantitative dietary requirements of postlarval tiger shrimp, Penaeus monodon, for histidin, isoleucine, leucine, phenylalanine and tryptophan. Aquaculture, 179: 169-179. Millikin, M. R., 1982. Effects of dietary protein concentration on growth, feed efficiency, and body composition of age-0 striped bass. Trans. Am. Fish. Soc., 111: 373-378. Morales, A. E., Cardenete, G., De La Higuera, M., Sanz, A., 1994. Effects of dietary protein source on growth, feed conversion and energy utilization in rainbow trout (Oncorhynchus mykiss). Aquaculture, 124: 117-126. Murai, T., Akiyama, T., Nose, T., 1981. Use of crystalline amino acids coated with casein in diets for carp. Bull. Jpn. Soc. Sci. Fish., 47: 523-527. Murai, T., Ogata, H., Takeuchi, T., Watanabe, T., Nose, T., 1984. Composition of free amino acid in excretion of carp fed amino acid diets and casein-gelatin diets. Bull. Jpn. Soc. Sci. Fish., 50: 19-57. Nelson, T. S., 1967. The utilization of phytate-phosphorous by poultry. Poult. Sci., 46: 862-871. Nematipour, G. R., Brown, M. L., Gatlin, D. M., 1992. Effects of dietary energy: protein ratio on growth characteristics and body composition of hybrid striped bass (Morone chrysops♀ X M. saxatillis). Aquaculture, 107: 359-368. New, M. B., 1976. A review of dietary studies with shrimp and prawns. Aquaculture, 9: 101-104. Nose, T., Arai, S., Lee, D. L., Hashimoto, Y., 1974. A note on amino acids essential amino acids for growth of young carp. Bull. Jpn. Soc. Sci. Fish., 40: 903-908. Oberleas, D., Harland, B. F., 1996. Impact of phytic acid on nutrient availability. Phytase in Animal Nutrition and Waste Management, BASF Corporation. New Jersey, 77-84 pp. Ogata, H., S., Nose, T., 1983. Growth responses of cherry salmon Oncorhynchus masou and amago salmon fry fed purified casein diets supplemented with amino acid. Bull. Jpn. Soc. Sci. Fish., 49: 1381-1385. Paroza, M. M., 1990. Effect of dietary protein and energy level on growth, protein utilization and carcass composition of rabbitfish, Siganus guttatus. Aquaculture, 86: 41-49. Puri, S. C., Mullen, K., 1980. Multiple comparisons. In: Applied Statics for Food and Agricultural Scientists (ed. By Hall G. K.), Medcal Publishers, Bostor, MA, 146-162 pp. Plakas, S. M., Katayama, T., Tanaka, Y., Deshimaru, O., 1980. Changes in the levels of circulating plasma free amino acids of carp (Cyprinus carpio) after feeding a protein and an amino acid diet of similar composition. Aquaculture, 21: 307-322. Plakas, S. M., Katayama, T., 1981. Apparent digestibilities of amino acids from three regions of the gastrointestinal tract of carp (Cyprinus carpio) after ingestion of a protein and a corresponding free amino acid diet. Aquaculture, 24: 309-314. Pelissero, C., Sumpter, J. P., 1992. Steroid and “steroid-like” substance in fish diets. Aquaculture, 107: 293-301. Pereira, T. G., A Oliva-Teles, 2003. Evaluation of corn gluten meal as a protein source in diets for giltheadbream (Sparus aurata L.) juveniles. Aquacult. Res., 34: 1111-1117. Pongmaneerat, J., Watanabe, T., Takeuchi, T., Satoh, S., 1993. Use of different protein meals as partial or total substitution for fish meal in carp diets. Bull. Jpn. Soc. Sci. Fish. 59: 1249–1257. Quartararo, N., Allan, G. L., Bell, J. D., 1998. Replacement of fish meal in diets for Australian snapper, Pagrus auratus. Aquaculture, 166: 279-295. Ravindran, V., Selle, P. H., Ravindran, G., Morel, P. C. H., Kies, A. K., Bryden, W. L., 2001. Microbial phytase improves performance, apparent metabolizable energy, and ileal amino acid digestibility of broiler fed a lysine-deficient diet. Poultry Sci., 80: 338-344. Rahman, M. H., 1994. Chemical and nutritional evaluation of lupinus angustifolius sweet lupin seed proteins. Breakthrough, 10: 8-9. Rahman, M. H., 2000. The nutritional toxicity of sweet lupin (Lupinus angustfolius) seed proteins. J. Sci. Food. Agric., 80: 72-78. Reddy, N. R., Sathe, S. K., Salunkhe, D. K., 1982. Phytates in legumes and cereals. Adv. Food Res., 28: 1-92. Reis, L. M., Reutebuch, E. M., Lovell, R. T., 1989. Protein to energy ratios in production diets and growth, feed conversion and body composition of channel catfish, Ictalurus punctatus. Aquaculture, 77: 21-27. Reigh, R. C., Ellis, S. C., 1992. Effects of dietary soybean and fish-protein ratios on growth and body composition of red drum (Sciaenops ocellatus) fed isonitrogenous diets. Aquaculture, 104: 279-292. Refstie, S., Storebakken, T., Roem, A. J., 1998. Feed consumption and conversion in Atlantic salmon (Salmo salar) fed diets with fish meal, extracted soybean meal or soybean meal with reduced content of oligosaccharides, trypsin inhibitor, lectins and soya antigens. Aquaculture, 162: 301-312. Regost, C., Arzel, J., Kaushik, S.J., 1999. Partial or total replacement of ¢sh meal by corn gluten meal in diet for turbot (Psetta maxima). Aquaculture, 180: 99-117. Richardson, N. L., Higgs, D. A., Beames, R. M., McBride, J. R., 1985. Influence of dietary calcium, phosphorous, zinc and sodium phytate level on cataract incidence, growth and histopathology in juvenile Chinook salmon. J. Nutr., 115: 553-567. Robaina, L., Izquierdo, M. S., Mayano, F. J., Socorro, J., Vergara, J. M., Montero, D., Palacios, H. F., 1995. Soybean and lupin seed meals as protein sources in diets for gilthead sea bream (Sparus aurata): nutritional and histological implications. Aquaculture, 130: 219-233. Robaina, L., Moyano, F. J., Vergara, J. M., Montero, D., Fernandez-Palacios, H., 1995. Soybean and lupin seed meals as protein sources in diets for gilthead seabream (Sparus aurata): nutritional and histological implications. Aquaculture, 130: 219-233. Robaina, L., Izquierdo, M. S., Moyano, F. J., Socorro, J., Vergara, J. M., Montero, D., Fernandz-Palacios, H., 1995. Soybean and lupin seed meals as protein sources in diets for gilthead seabream (Sparus aurata): Nutritional and histological implications. Aquaculture, 130: 219-233. Robinson, E. H., Wilson, R. P., Poe, W. E., 1980. Reevaluation of the lysine requirement and lysine utilization by fingerling channel catfish. J. Nutr., 110: 2313-2316. Rodehutscord, M. S., Mandel, M., Jacobs, S., Pfeffer, E., 1995. Free amino acids cam replace protein- bound amino acids in test diets for studies in rainbow trout (Oncorhynchus mykiss). J. Nutr., 125: 956-963. Rumsey, G. L., Ketola, H. G., 1975. Amino acid supplementation of casein diets of Atlantic salmon (Salmo salar) fry and of soybean meal for rainbow trout (Salmo gairdneri) fingerlings. J. Fish. Res. Board Can., 32: 422-426. Sakaguchi, M., Murata, M., 1989. Seasonal variations of free amino acids in oyster whole body and adductor muscle. Nippon Suisan Gakkaishi, 11: 2037-2041. Shank, W. E., Gahimer, G. D., Halver, J. E., 1962. The indispensable amino acids for rainbow trout. The Progressive Fish-Culturist, 24: 68-73. Singh, M., Kirkorian, A. D., 1982. Inhibition of trypsin activity in vitro by phytase. J. Agric. Food Chem., 30: 799-800. Spinelli, J., Houle, C. R., Wekell, J. C., 1983. The effect of phytates on the growth of rainbow trout Salmo gairdneri fed purified diets containing varying quantities of calcium and magnesium. Aquaculture, 30: 71–83. Shiau, S. Y., Kwok, C. C., Huang, J. Y., Lee C. M., Chen, S. L., 1989. Replacement of fishmeal with soybean meal in male tilapia (Oreochromis Niloticus ×O. aureus) fingerling diets at a suboptimal protein level. J. World Aquacult. Soc. 20 (4), 230-235. Shiau, S. Y., Lin, S. F., Yu, S. L., Lin, A. L., Kwok, C. C., 1990. Defatted and full-fat soybean meal as partial replacements for fishmeal in tilapia (Oreochromis niloticus ×O. aureus)diets at low protein level. Aquaculture, 86: 401-407. Shimeno, S., Masumoto, T., Hujita, T., Mima, T., Uenos, S., 1993. Alternative protein sources for fish meal in diets of young yellowtail. Nippon Suisan Gakkaishi, 59: 137-143. Storebakken, T., Shearer, K. D., Roem, A. J., 1998. Availability of protein, phosphorus and other elements in fish meal, soy protein concentrate and phyata-treated soy protein concentrate based diets to Atlantic salmon (Salmo salar). Aquaculture, 161: 365-379. Sudaryono, A., Tsvetnenko, E., Hutabarat, J., Supriharyono ,Evans, L. H., 1999. Lupin ingredients in shrimp (Penaeus monodon) diets: influence of lupin species and types of meals. Aquaculture, 171: 121-133. Tacon, A. G. J., 1993. Feed ingredients for crustaceans natural foods and processed feedstuffs. FAO Fish. Cric., No. 866. Tanaka, Y., Hokazono, S., Katayama, T., Simpson, K. L., Chichester, C. O., 1977. Metabolism of amino acids in aquatic animals – Ι. The effect of the addition of phosphate salts, indigestible materials and algae to the diets of carp and the relationship of intestinal retention time to their growth rate. Kagoshima Univ., 26: 39-43. Takeuchi, T., Shiina, Y., Watanabe, T., 1991. Suitable protein and lipid levels in diet for fingerlings of red sea bream Pagrus major. Nippon Suisan Gakkaishi, 57: 293-299. Teshima, S., Kanazawa, A., Koshio, S., 1990. Effects of methionine enriched plastein supplemented to soybean-protein based diets on common carp (Cyprinus carpio) and tilapia (Oreochromis niloticus). The Second Asian Fisheries Forum, Asian Fisheries Society, Manila, Philippines, 279-282 pp. Thebault, H., 1985. Plasma essential amino acids changes in sea-bass (Dicentrarchus labrax) after feeding diets deficient and supplement in L-methionine. Comp. Biochem. Physiol., 82A: 233-237. Walton, M. J., Wilson, R. P., 1986. Postprandial changes in plasma and liver free amino acid of rainbow trout fed complete diets containing casein. Aquaculture, 51: 105-115. Watanabe, T., 1996. Improved feed formulation and feeding techniques (Use of alternative protein and lipid sources in aquafeeds). APO-COA seminar on improving management of aquaculture, 309-341 pp. Watanabe, T., Kiron, V., Satoh S., 1997. Trace minerals in fish nutrition. Aquaculture, 151: 185-207. Walton, M. J., Cowey, C. B., Adron, J. W., 1982. Methionine metabolism in rainbow trout fed diets of differing methionine and cystine content. J. Nutr., 112: 1525-1535. Wang, J. T., Liu, Y. J., Tian, L. X., Mai, K. S., Du, Z. Y., Wang, Y., Yang, H. J., 2005. Effect of dietary lipid level on growth performance, lipid deposition, hepatic lipogenesis in juvenile cobia (Rachycentron canadum). Aquaculture, 249: 439-447. Webster, C. D., Tiu, L. G., Tidwell, J. H., Grizzle, J. M., 1997. Growth and body composition of channel catfish (Ictalurus punctatus)fed diets containing various percentages of canola meal. Aquaculture, 150: 103-112. Weremko, D., Fandrejewski, H., Zebrowska, T., Han, In. K., Kim, J. H., Cho, W. T., 1997. Bioavailability of phosphorus in feeds of plant origin for pigs (review). Asian Aust. J. Anim. Sci., 10: 551-566. Winfree, R. A., Stickney, R. R., 1981. Effects of dietary protein and energy on growth, feed conversion efficiency and body composition of Tilapia aurea. J. Nutr., 111: 1001-1012. Yamada, S., Yone, Y., 1986. Loss of dietary amino acids during mastication by carp. Bull. Jpn. Soc. Sci. Fish., 52: 673-676. Zhou, Q. C., Mai, K. S., Tan, B. P., Liu, Y. J., 2005. Partial replacement of fishmeal by soybean meal in diets for juveniles cobia (Rachycentron canadum). Aquacult. Nutr., 11: 175-182. Zhou, Q. C., Tan, B. P., Mai, K. S., Liu, Y. J., 2004. Apparent digestibility of selected feed ingredients for juvenile cobia (Rachycentron canadum). Aquaculture, 241: 441-451. | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/25751 | - |
dc.description.abstract | Cobia, Rachycentron canadum, growing fast, with good meat quality and high feed conversion rate, is the main species of sea cage culture. Fish meal is the primary protein source of culture fishes, owing to the decreasing yield and increasing price, looking for the replacement of fish meal is the research priority. Three growth trails were conducted to use different protein source to replace a part of fish meal on the growth of cobia.
In the first trail, control group was supplemented with 65% of fish meal, experiment group were supplied rapeseed meal (R) 5%, 10% and 15% that fish meal were decrease to 62%, 59% and 56%, respectively. Other three diets were supplemented with phytase 400、600、800 (IU / Kg diet). After six weeks feeding, rapeseed supplemented 10% is the optimal replacement. Phytase supplemented has no significance on the weight gain and feed efficiency. In the second trail, control group was supplemented with 65% of fish meal, experiment group were supplied corn gluten meal 10%, 15% and 20% that fish meal were decrease to 55%, 50% and 45%, respectively. Other three diets were supplemented with lysine 0.5、1.0、1.5 (g / 100g diet). After six weeks feeding, rapeseed supplemented 15% is the optimal replacement. Lysine supplemented has no significance on the weight gain and feed efficiency. In the third trail, corn germ meal (Cg) was added to replace fish meal with 5% and 10% to investigate the optimal replacement ratio. Corn protein (Cp) was added to replace fish meal with 10%, 15% and 20% to investigate the optimal replacement ratio. The optimal replacement ratio of corn germ meal and corn protein are 5% and 15%, respectively. Lupin (L), rapeseed meal (R) and corn protein (Cp) were added to replace fish meal. After 42 days of feeding, group LRCp with the lowest weight gain and feed efficiency, group LR、LCp、RCp are after, and differences among the other groups are not significant. The content of fish meal in diets could decrease from 65% to 50% without compromising growth performance. | en |
dc.description.provenance | Made available in DSpace on 2021-06-08T06:28:10Z (GMT). No. of bitstreams: 1 ntu-95-R92b45023-1.pdf: 717230 bytes, checksum: d211b9d540d106abbea3cfc473baaae5 (MD5) Previous issue date: 2006 | en |
dc.description.tableofcontents | 致謝………………………………………………………………………I
中文摘要………………………………………………………………...II 英文摘要………………………………………………………………..Ⅳ 目錄……………………………………………………………………..Ⅵ 前言………………………………………………………………………1 實驗一 海鱺飼料中添加菜籽粕及外源添加植酸酶取代魚粉 壹、材料與方法………………………………………………………..12 貳、結果………………………………………………………………..17 參、討論………………………………………………………………..21 實驗二 海鱺飼料中添加玉米筋質粉及外源添加必需胺基酸取代魚粉 壹、材料與方法………………………………………………………..27 貳、結果………………………………………………………………..29 參、討論………………………………………………………………..33 實驗三 飼料中添加不同植物性原料混合取代魚粉對海鱺成長之影響 壹、材料與方法………………………………………………………..39 貳、結果………………………………………………………………..41 參、討論………………………………………………………………..45 總結……………………………………………………………………..53 參考文獻………………………………………………………………..54 表與圖…………………………………………………………………..72 | |
dc.language.iso | zh-TW | |
dc.title | 飼料中添加不同植物性原料取代魚粉對海鱺成長之研究 | zh_TW |
dc.title | Studies on feed supplement of different plant ingredients on the growth performance of cobia, Rachycentron canadum | en |
dc.type | Thesis | |
dc.date.schoolyear | 94-2 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 丁雲源,林明男,陳弘成 | |
dc.subject.keyword | 飼料,植物性原料,魚粉,海鱺, | zh_TW |
dc.subject.keyword | feed,plant ingredients,cobia, | en |
dc.relation.page | 111 | |
dc.rights.note | 未授權 | |
dc.date.accepted | 2006-07-27 | |
dc.contributor.author-college | 生命科學院 | zh_TW |
dc.contributor.author-dept | 漁業科學研究所 | zh_TW |
顯示於系所單位: | 漁業科學研究所 |
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