Artigo Acesso aberto Revisado por pares

Dietary l -lysine requirement of fingerling stinging catfish, Heteropneustes fossilis (Bloch) for optimizing growth, feed conversion, protein and lysine deposition

2011; Wiley; Volume: 44; Issue: 4 Linguagem: Inglês

10.1111/j.1365-2109.2011.03054.x

ISSN

1365-2109

Autores

Farhat Farhat, Mukhtar A. Khan,

Tópico(s)

Aquaculture disease management and microbiota

Resumo

Aquaculture ResearchVolume 44, Issue 4 p. 523-533 Original Article Dietary l-lysine requirement of fingerling stinging catfish, Heteropneustes fossilis (Bloch) for optimizing growth, feed conversion, protein and lysine deposition Farhat , Farhat Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh, IndiaSearch for more papers by this authorMukhtar A. Khan, Corresponding Author Mukhtar A. Khan Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh, IndiaCorrespondence: Mukhtar A. Khan, Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh 202 002, India. E-mail: [email protected]Search for more papers by this author Farhat , Farhat Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh, IndiaSearch for more papers by this authorMukhtar A. Khan, Corresponding Author Mukhtar A. Khan Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh, IndiaCorrespondence: Mukhtar A. Khan, Fish Nutrition Research Laboratory, Department of Zoology, Aligarh Muslim University, Aligarh 202 002, India. E-mail: [email protected]Search for more papers by this author First published: 20 December 2011 https://doi.org/10.1111/j.1365-2109.2011.03054.xCitations: 25Read the full textAboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Abstract Dietary lysine requirement of fingerling Heteropneustes fossilis (6.96 ± 0.05 g) was quantified by conducting 12-week feeding trial in a flow-through system at 28°C. Casein–gelatin based isonitrogenous (38% CP) and isocaloric (14.7 kJ g−1 DE) amino acid test diets with six levels of dietary lysine (1.5%, 1.75%, 2.0%, 2.25%, 2.5%, 3.0% dry diet) were fed to apparent satiation in triplicates. Broken-line and second-degree polynomial regression analyses at 95% plateau of absolute weight gain (AWG; g fish−1), feed conversion ratio (FCR), protein deposition (PD; g fish−1) and lysine deposition (LD; g fish−1) exhibited lysine requirement between 2.0% to 2.3% of the dry diet, corresponding to 5.3–6.1% protein. References Abidi S.F. & Khan M.A. (2007) Dietary leucine requirement of fingerling Indian major carp, Labeo rohita (Hamilton). Aquaculture Research 38, 478– 486. Akand A.M., Hasan M.R. & Habib M.A.B. (1991) Utilization of carbohydrate and lipid as dietary energy sources by stinging catfish Heteropneustes fossilis (Bloch). In: Fish Nutrition Research in Asia. Proceedings of the Fourth Nutrition Workshop (ed. by S.S. De Silva), pp. 93– 100. Asian Fisheries Society Special Publication 5, Asian Fisheries Society, Manila, Philippines. Anwar M.F. & Jafri A.K. (1992) Preliminary observations on the growth food conversion and body composition of catfish, Heteropneustes fossilis (Bloch), fed varying levels of dietary lipids. Journal of Inland Fisheries Society of India 24, 45– 49. AOAC (Association of Official Analytical Chemist) (1995) Official Methods of Analysis of the Association of Official Analytical Chemists ( 16th edn). Association of Official Analytical Chemist, Arlington, Virginia. APHA (1992) Standard Methods for the Examination of Water and Waste Water ( 18th edn). American Public Health Association, Washington DC, pp. 1268. Baker D.H. (1986) Problems and pitfalls in animal experiments designed to establish dietary requirements for essential nutrients. Journal of Nutrition 116, 2339– 2349. Bhatt V.S. (1968) Studies on the biology of some fresh water fishes. Part-Vll. Heteropneustes fossilis (Bloch). Indian Journal of Fisheries 15, 99– 115. Bicudo A.J.A., Sado R.Y. & Cyrino J.E.P. (2009) Dietary lysine requirement of juvenile pacu Piaractus mesopotamicus (Holmberg 1887). Aquaculture 297, 151– 156. Bodin N., Tran T.N.T., Detavernier C., De Saeger S., Larondelle Y. & Rollin X. (2006) Dietary Protein Content Affects Lysine Requirement But Not Lysine Utilization Efficiency in Rainbow Trout. XIIth Int.Symp. Fish Nutrition & Feeding, Biarritz, France (p. 119). Bodin N., Govaerts B., Abboudi T., Detavernier C., De Saeger S., Larondelle Y. & Rollin X. (2009) Protein level affects the relative lysine requirement of growing rainbow trout (Oncorhynchus mykiss) fry. British Journal of Nutrition 102, 37– 53. Cho C.Y. (1992) Feeding systems for rainbow trout and other salmonids with reference to current estimates of energy and protein requirements. Aquaculture 100, 107– 123. De la Higuera M. (2001) Ejects of nutritional factors and feed characteristics on feed intake. In: Food Intake in Fish (ed. by D. Houlihan, T. Boujard & M. Jobling), pp. 250– 268. Iowa State University Press, State Avenue Ames, IA, USA. Deng D.F., Dominy W., Ju Z.Y., Koshio S., Murashige R. & Wilson R.P. (2010) Dietary lysine requirement of juvenile Pacific threadfin (Polydactylus sexfilis). Aquaculture 308, 44– 48. Deng J., Zhang X., Tao L., Bi B., Kong L. & Lei X. (2010) D-lysine can be effectively utilized for growth by common carp (Cyprinus carpio). Aquaculture Nutrition 17, e467– e475. Dias J., Arzel J., Aguirre P., Corraze G. & Kaushik S. (2003) Growth and hepatic acetyl coenzyme-A carboxylase activity are affected by dietary protein level in European seabass (Dicentrarchus labrax). Comparative Biochemistry and Physiology 135, 183– 196. Dupree H.K. & Halver J.E. (1970) Amino acids essential for growth of channel catfish, Ictalurus punctatus. Transaction of American Fisheries Society 99, 90– 92. Encarnação P., de Lange C., Rodehutscord M., Hoehler D., Bureau W. & Bureau D.P. (2004) Diet digestible energy content affects lysine utilization, but not dietary lysine requirements of rainbow trout (Oncorhynchus mykiss) for maximum growth. Aquaculture 235, 569– 586. Espe M., Lemme A., Petri A. & El-Mowafi A. (2007) Assessment of lysine requirement for maximal protein accretion in Atlantic salmon using plant protein diets. Aquaculture 263, 168– 178. Espe M., Hevrøy E.M., Liaset B., Lemme A. & El-Mowafi A. (2008) Methionine intake affect hepatic sulphur metabolism in Atlantic salmon, Salmo salar. Aquaculture 274, 132– 141. Fagbenro O.A., Balogun A.M., Bello-Olusoji O.A. & Fasakin E.A. (1998) Dietary lysine requirement of the African Catfish, Clarias gariepinus. Journal of Applied Aquaculture 8 , 71– 77. Finke M.D., DeFoliart G.R. & Benevenga N.J. (1987) Use of simultaneous curve fitting and a four-parameter logistic model to evaluate the nutritional quality of protein sources at growth rates of rats from maintenance to maximum gain. Journal of Nutrition 117, 1681– 1688. Firdaus S. (1993) On the relative efficiency of purified diets, with variable protein levels, in young catfish, Heteropneustes fossilis (Bloch). Indian Journal of Fisheries 40, 162– 165. Firdaus S. & Jafri A.K. (1996) Growth and haematological response of young catfish, Heteropneustes fossilis (Bloch), to dietary phosphorous supplementation. Journal of Aquaculture in the Tropics 11, 263– 269. Firdaus S., Jafri A.K. & Rahman N. (1994) Effect of iron deficient diets on the growth and haematological characteristics of the catfish, Heteropneustes fossilis (Bloch). Journal of Aquaculture in the Tropics 9, 179– 185. Firdaus S., Jafri A.K. & Khan M.A. (2002) Effect of dietary levels of mineral mixture on the growth, body composition and haematology of catfish, Heteropneustes fossilis (Bloch). Journal of Aquaculture in the Tropics 17, 273– 281. Forster I. & Ogata H.Y. (1998) Lysine requirement of juvenile Japanese flounder Paralichthys olivaceus and juvenile red sea bream Pagrus major. Aquaculture 161, 131– 142. Gahl M.J., Finke M.D., Crenshaw T.D. & Benevenga N. (1991) Use of a four-parameter logistic equation to evaluate the response of growing rats to ten levels of each indispensable amino acid. Journal of Nutrition 121, 1720– 1729. Griffin M.E., Brown P.B. & Grant A.L. (1992) The dietary lysine requirement of juvenile hybrid striped bass. Journal of Nutrition 122, 1332– 1337. Halver J.E. (2002) The vitamins. In: Fish Nutrition ( 3rd edn) (ed. by J.E. Halver & R.W. Hardy), pp. 61– 141. Academic Press, San Diego, CA, USA. Halver J.E., Delong D.C. & Mertz E.T. (1958) Threonine and lysine requirement of Chinook salmon. Federation Proceedings 17, 478. Jauncey K. (1982) The effects of varying dietary protein level on the growth, food conversion, protein utilization and body composition of juvenile tilapias (Sarotherodon mossambicus). Aquaculture 27, 43– 54. Jhingran V.G. (1991) Nutrition of cultivated fishes. In: Fish and Fisheries of India (ed.by V.G. Jhingran), pp. 572– 576. Hindustan published corporation, Delhi, India. Ji H., Bradley T.M. & Tremblay G.C. (1996) Atlantic salmon (Salmo salar) fed l-carnitine exhibit altered intermediary metabolism and reduced tissue lipid, but no change in growth rate. Journal of Nutrition 126, 1937– 1950. Keshavanath P. & Renuka P. (1998) Effect of dietary l-carnitine supplements on growth and body composition of fingerling rohu, Labeo rohita (Ham.). Aquaculture Nutrition 4, 83– 87. Ketola G.H. (1983) Requirement for dietary lysine and arginine by fry of rainbow trout. Journal of Animal Science 56, 101– 107. Khan M.A. & Abidi S.F. (2011) Dietary arginine requirement of Heteropneustes fossilis fry (Bloch) based on growth, nutrient retention and hematological parameters. Aquaculture Nutrition 17, 418– 428. Kim J.-D. & Lall S.P. (2000) Amino acid composition of whole body tissue of Atlantic halibut (Hippoglossus hippoglossus), yellowtail flounder (Pleuronectes ferruginea) and Japanese flounder (Paralichthys olivaceus). Aquaculture 187, 367– 373. Kim K.I., Kayes T.B. & Amundson C.H. (1992) Requirements for lysine and arginine by rainbow trout (Oncorhynchus mykiss). Aquaculture 106, 333– 344. Lanari D., Tibaldi E., Ballestrazzi R. & Tulli F. (1991) Impiego di diete a moderato conteuto di farina di pesce per la trota iridea. Rivaluazione del fabbisogno di lisina delle specie ed effetti sulle acque reflue. In: Atti IX Congresso Nazionale ASPA, vol. 2. (ed. by Ministerio dell' Agricoltura e Foreste), pp. 1089– 1098. ISMEA-Agricoltura Ricerca, Rome, Italy. Luo Z., Liu Y.J., Mai K.S., Tian L.X., Tan X.Y., Yang H.J., Liang G.Y. & Liu D.H. (2006) Quantitative l-lysine requirement of juvenile grouper Epinephelus coioides. Aquaculture Nutrition 12, 165– 172. Ma J.J., Xu Z.R., Shao Q.J., Xu J.Z., Hung S.S.O., Hu W.L. & Zhuo L.Y. (2007) Effect of dietary supplemental l-carnitine on growth performance, body composition and antioxidant status in juvenile black sea bream, Sparus macrocephalus. Aquaculture Nutrition 14, 464– 471. Mai K., Zhang L., Ai Q., Duan Q., Zhang C., Li H., Wan J. & Liufu Z. (2006) Dietary lysine requirement of juvenile seabass (Lateolabrax japonicas). Aquaculture 258, 535– 542. Marcouli P.A., Alexis M.N. & Andriopoulou A. (2006) Dietary lysine requirement of juvenile gilthead seabream Sparus aurata L. Aquaculture Nutrition 12, 25– 33. Mohamed S.J. (2001) Dietary pyridoxine requirement of the Indian catfish, Heteropneustes fossilis. Aquaculture 194, 327– 335. Mohamed S.J. & Ibrahim A. (2001) Quantifying the dietary niacin requirement of the Indian catfish, Heteropneustes fossilis (Bloch) fingerlings. Aquaculture Research 32, 157– 162. Morris T.R., Gous R.M. & Fisher C. (1999) An analysis of the hypothesis that amino acid requirements for chicks should be stated as a proportion of dietary protein. Journal of World's Poultry Science 55, 7– 22. Munsiri P. & Lovell R.T. (1993) Comparison of satiate and restricted feeding of channel catfish with diets of varying protein quality in production ponds. Journal of the World Aquaculture Society 24, 459– 465. Murthy H.S. & Varghese T.J. (1998) Total Sulphur amino acid requirement of the Indian major carp, Labeo rohita (Hamilton). Aquaculture Nutrition 4, 61– 65. Niamat R. & Jafri A.K. (1984) Growth response of the siluroid, Heteropneustes fossilis (Bloch), fed pelleted feed. Aquaculture 37, 223– 229. Ogino C. (1980) Requirements of carp and rainbow trout for essential amino acids. Bulletin of Japanese Society of Scientific Fisheries 46, 171– 175. Peres H. & Oliva-Teles A. (2008) Lysine requirement and efficiency of lysine utilization in turbot (Scophthalmus maximus) juveniles. Aquaculture 275, 283– 290. Pfeffer E., Al-Sabty H. & Haverkamp R. (1992) Studies on lysine requirements of rainbow trout (Oncorhynchus mykiss) fed wheat gluten as only source of dietary protein. Journal of Animal Physiology and Animal Nutrition 67, 74– 82. Robbins K.R., Norton H.W. & Baker D.H. (1979) Estimation of nutrient requirements from growth data. Journal of Nutrition 109, 1710– 1714. Robinson E.H. (1991) Improvement of cottonseed meal protein with supplemental lysine in feeds for channel catfish. Journal of Applied Aquaculture 1, 1– 14. Robinson E.D., Wilson R.P. & Poe W.E. (1980) Re- evaluation of the lysine requirement and lysine utilization by fingerling channel catfish. Journal of Nutrition 110, 2313– 2316. Rodehutscord M., Becker A., Pack M. & Pfeffer M. (1997) Response of rainbow trout (Oncorhynchus mykiss) to supplements of individual essential amino acids in a semipurified diet, including an estimate of the maintenance requirement for essential amino acids. Journal of Nutrition 126, 1166– 1175. Rodehutscord M., Borchert F., Gregus Z., Pack M. & Pfeffer E. (2000) Availability and utilization of free lysine in rainbow trout (Oncorhynchus mykiss) 1. Effect of dietary crude protein level.. Aquaculture 187, 163– 176. Rollin X., Mambrini M., Abboudi T., Larondelle Y. & Kaushik S.J. (2003) The optimum dietary indispensable amino acid pattern for growing Atlantic salmon (Salmo salar L.) fry. British Journal of Nutrition 90, 865– 876. Ruchimat T., Masumoto T., Hosokawa H., Itoh Y.& Shimeno S. (1997) Quantitative lysine requirement of yellowtail (Seriola quinqueradiata). Aquaculture 158, 331– 339. Saha N. & Ratha B.K. (1998) Ureogenesis in Indian air-breathing teleosts: adaptation to environmental constraints. Comparative Biochemistry and Physiology 120, 195– 208. Sauberlich H.E. (1961) Studies on the toxicity and antagonism of amino acids for weanling rats. Journal of Nutrition 75, 61– 72. Shearer K.D. (2000) Experimental design, statistical analysis and modeling of dietary nutrient requirement studies for fish: a critical review. Aquaculture Nutrition 6, 91– 102. Siddiqui T.Q. & Khan M.A. (2009) Effects of dietary protein levels on growth, feed utilization, protein retention efficiency and body composition of young Heteropneustes fossilis (Bloch). Fish Physiology and Biochemistry 35, 479– 488. Singh R.P. & Srivastava A.K. (1984) Effect of feeding frequency on the growth, consumption and gross conversion efficiency in the siluroid catfish, Heteropneustes fossilis (Bloch). Bamidgeh 36, 80– 91. Small B.C. & Soares J.J.H. (2000) Quantitative dietary lysine requirement of juvenile striped bass Morone saxatilis. Aquaculture Nutrition 6, 207– 212. Snedecor G.W. & Cochran W.G. (1968) Statistical Methods. Iowa State University Press, IA, USA, 593 p. Sokal R.R. & Rohlf F.J. (1981) Biometry. W.H. Freeman and Company, New York, USA, p. 859. Stoll B., Henry J., Reeds P.J., Yu H., Jahoor F. & Burrin D.G. (1998) Catabolism dominates the first-pass intestinal metabolism of dietary essential amino acids in milk protein-fed piglets. Journal of Nutrition 128, 606– 614. Tanphaichitr V., Donald W., Horne D.W. & Broquist H.P. (1971) Lysine, a precursor of carnitine in the rat. The Journal of Biological Chemistry 246, 6364. Tibaldi E., Tulli F. & Lanari D. (1994) Arginine requirement and effect of different dietary arginine and lysine levels for fingerlings sea bass (Dicentrarchus labrax). Aquaculture 127, 207– 218. Usmani N. & Jafri A.K. (2002) Effect of fish size and temperature on the utilization of different protein sources in two catfish species. Aquaculture Research 33, 959– 967. Usmani N., Jafri A.K. & Khan M.A. (2003) Nutrient digestibility studies in Heteropneustes fossilis (Bloch), Clarias batrachus (Linnaeus) and C. gariepinus (Burchell). Aquaculture Research 34, 1247– 1253. Walton M.J., Cowey C.B. & Adron J.W. (1984) The effect of dietary lysine levels on growth and metabolism of rainbow trout (Salmo gairdneri). British Journal of Nutrition 52, 115– 122. Walton M.J., Cowey C.B., Coloso R.M. & Adron J.W. (1986) Dietary requirements of rainbow trout for tryptophan, lysine and arginine determined by growth and biochemical measurements. Fish Physiology and Biochemistry 2, 161– 169. Wilson R.P. (1989) Amino acids and proteins. In: Fish Nutrition ( 2nd edn) (ed. by J.E. Halver), pp. 111– 151, Academic Press, New York. Wilson R.P. & Poe W.E. (1985) Relationship of whole body and egg essential Amino acid patterns to amino acid requirement patterns in channel catfish, Ictalurus punctatus. Comparative Biochemistry and Physiology 80b, 385– 388. Yang H.J., Liu Y.J., Tian L.X., Liang G.Y. & Lin H.R. (2010) Effects of supplemental lysine and methionine on growth performance and body composition for grass carp (Ctenopharyngodon idella). American Journal of Agricultural and biological Sciences 5, 222– 227. Zhang C., Ai Q., Mai K., Tan B., Li H. & Zhang L. (2008) Dietary lysine requirement of large yellow croaker, Pseudosciaena crocea R. Aquaculture 283, 123– 127. Zhou Q.-C., Wu Z.H., Chi S.Y. & Yang Q.H. (2007) Dietary lysine requirement of juvenile cobia (Rachycentron canadium). Aquaculture 273, 634– 640. Zhou F., Shao J., Xu R., Ma J. & Xu Z. (2010) Quantitative l-lysine requirement of juvenile black sea bream (Sparus macrocephalus). Aquaculture Nutrition 16, 194– 204. Citing Literature Volume44, Issue4March 2013Pages 523-533 ReferencesRelatedInformation

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