Survival, growth and digestive enzyme activity of juveniles of the fat snook (Centropomus parallelus) reared at different salinities
暂无分享,去创建一个
Juliet Kiyoko Sugai | M. Y. Tsuzuki | V. Cerqueira | Mônica Yumi Tsuzuki | Julio Cesar Maciel | Claire J. Francisco | Vinicius Ronzani Cerqueira | J. K. Sugai | C. Francisco | J. C. Maciel
[1] P. Blier,et al. Do digestive enzymes set a physiological limit on growth rate and food conversion efficiency in the Atlantic cod (Gadus morhua)? , 1999, Fish Physiology and Biochemistry.
[2] Gavin J. Partridge,et al. The effect of salinity on growth and survival of juvenile black bream (Acanthopagrus butcheri) , 2002 .
[3] F. Schiemer,et al. Proteolytic activity in the digestive tract of several species of fish with different feeding habits , 1981, Oecologia.
[4] L. R. Rivas. Systematic review of the perciform fishes of the genus Centropomus , 1986 .
[5] N. Woo,et al. Effects of salinity and nutritional status on growth and metabolism of Sparus sarba in a closed seawater system , 1995 .
[6] R. J. Wootton. Fish bioenergetics , 1995, Reviews in Fish Biology and Fisheries.
[7] R. Stickney,et al. Principles of aquaculture , 1994 .
[8] Garcia-Carreno Fernando Luis,et al. Digestive shrimp proteases for evaluation of protein digestibility in vitro. I : Effect of protease inhibitors in protein ingredients , 1997 .
[9] Y. Lambert,et al. Effects of Intermediate and Low Salinity Conditions on Growth Rate and Food Conversion of Atlantic Cod (Gadus morhua) , 1994 .
[10] R. Taylor,et al. Reproduction and early life history of common snook, Centropomus Undecimalis (Bloch), in Florida , 1998 .
[11] J. W. Tucker. Snook and Tarpon Snook Culture and Preliminary Evaluation for Commercial Farming , 1987 .
[12] J. Grizzle,et al. Effects of brackish water on growth, feed conversion and energy absorption efficiency by juvenile euryhaline and freshwater stenohaline fishes , 2001 .
[13] A. Sanz,et al. Comparative study of digestive enzymes in fish with different nutritional habits. Proteolytic and amylase activities , 1999 .
[14] M. Y. Tsuzuki,et al. Salinity tolerance of laboratory reared juveniles of the fat snook centropomus parallelus , 2007 .
[15] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.
[16] M. L. Usher,et al. Drinking in Atlantic salmon smolts transferred to seawater and the relationship between drinking and feeding. , 1988 .
[17] V. Cerqueira,et al. Mass Production of Juveniles of the Fat Snook Centropomus parallelus in Brazil , 2002 .
[18] Masaru Tanaka,et al. Effects of low-salinity on the growth and development of spotted halibut Verasper variegatus in the larva-juvenile transformation period with reference to pituitary prolactin and gill chloride cells responses , 2004 .
[19] V. Kuz’mina,et al. Comparative-molecular characterization of membrane digestion in fish and mammals. , 1983, Comparative biochemistry and physiology. B, Comparative biochemistry.
[20] M. D. Andrés,et al. Gradual transfer to sea water of rainbow trout: effects on liver carbohydrate metabolism , 1995 .
[21] Arthur José da Silva Rocha,et al. Metabolic demand and growth of juveniles of Centropomus parallelus as function of salinity , 2005 .
[22] G. Iwama,et al. Effects of Salinity on Growth, Metabolism, and Ion Regulation in Juvenile Rainbow and Steelhead Trout (Oncorhynchus mykiss) and Fall Chinook Salmon (Oncorhynchus tshawytscha) , 1991 .
[23] S. S. Silva,et al. Studies on the young grey mullet, Mugil cephalus L.: I. Effects of salinity on food intake, growth and food conversion , 1976 .
[24] J. Marais,et al. Routine oxygen consumption of Mugil cephalus, Liza dumerili and L. richardsoni at Different temperatures and salinities , 1978 .
[25] V. R. Alava. Effect of salinity, dietary lipid source and level on growth of milkfish (Chanos chanos) fry , 1998 .
[26] O. Eroldoğan,et al. Optimum feeding rates for European sea bass Dicentrarchus labrax L. reared in seawater and freshwater , 2004 .
[27] Swanson,et al. Interactive effects of salinity on metabolic rate, activity, growth and osmoregulation in the euryhaline milkfish (Chanos chanos) , 1998, The Journal of experimental biology.
[28] A. Sévère,et al. Effects of salinity on the ionic balance and growth of juvenile turbot , 1995 .
[29] M. Peterson,et al. Eco-physiology of juvenile snook Centropomus undecimalis (Bloch) : life-history implications , 1991 .
[30] K. Moutou,et al. Effects of salinity on digestive protease activity in the euryhaline sparid Sparus aurata L.: a preliminary study , 2004 .
[31] G. Boeuf,et al. How should salinity influence fish growth? , 2001, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[32] Juan A. Tello-Ballinas,et al. The effects of saline environments on survival and growth of eggs and larvae of Chirostoma estor estor Jordan 1880 (Pisces: Atherinidae) , 2004 .
[33] J. R. Brett. 10 - Environmental Factors and Growth , 1979 .
[34] M. Moser,et al. Effects of salinity fluctuation on routine metabolism of juvenile spot, Leiostomus xanthums , 1994 .
[35] G. R. Parsons,et al. Early Life History of the Snook, Centropomus undecimalis, in Tampa Bay, Florida , 1989 .
[36] John M. Miller,et al. Nursery Habitat and Diet of Juvenile Centropomus Species in Puerto Rico Estuaries , 1997 .
[37] W. Watanabe,et al. Combined effects of photoperiod and salinity on growth, survival, and osmoregulatory ability of larval southern flounder Paralichthys lethostigma , 2004 .
[38] C. J. Donohoe,et al. Observations on the distribution and biology of east-central Florida populations of the common snook, Centropomus undecimalis (Bloch) [Fish] , 1983 .
[39] G. Iwama. Chapter 7 – Growth of Salmonids , 1996 .
[40] J. K. Sugai,et al. Circadian Profile of Feed Consumption and Amylase and Maltase Activities in the Juvenile Shrimp Farfantepenaeus paulensis. , 2007 .
[41] R. Peterson,et al. Influence of temperature and salinity on length and yolk utilization of striped bass larvae , 1996, Aquaculture International.