Growth and survival of Capaz larvae (Pimelodus grosskopfii) during transition to a dry diet.
DOI:
https://doi.org/10.23850/25004468.307Keywords:
Conditioning, Larvae, SiluridsAbstract
The change of diet live artificial diet food is considered one of the most critical points larviculture fish. Its success depends largely on the feed used and the physiological characteristics of the post-larvae. In this work the transition and habituation able larvae (P. grosskopfii) to a commercial diet with 45% protein for 5 weeks was evaluated. For this 576 larvae capable of 10 days old they were selected with an initial average weight of 20.96 ± 4.35 mg and 9.77 ± 2.64 mm. Housing density was 4 larvae / L. 3 treatments were evaluated (T) with 3 replicates each, as follows: T1: bovine liver; T2: bovine liver + fisf oil and T3: Control. The best results in terms of weight gain (390 ± 18 mg), gain in size (28.9 ± 1.2 mm) and specific growth rate (2.12 ± 0.008) were recorded in the treatment T2, while the best survival was recorded in T1 treatment (31%). It is necessary to conduct studies of ontogenetic development to highlight the nutritional needs of each species to formulate diets.
Downloads
References
Aristizábal, E. & Suárez, J. (2006). Efficiency of co-feeding red porgy (Pagrus pagrus L.) larvae with live and compound diet. Revista de Biología Marina y Oceanografía, 41, 203-208.
Borges, M. & Portella, M. (2006). Ingestão de ração e comportamento de larvas de pacu em resposta a estímulos químicos e visuais. Revista Brasileira de Zootecnia, 35, 1887-1892.
Borges, M., Flores-Quintana, C., Carneiro, D. J., Pizauro-Junior, J. M & Portella, M. (2006). Suplementação de enzimas exógenas em dieta microparticulada para larvicultura do pacu. Revista Brasileira de Zootecnia, 35, 2211-2218.
Cahu, C., Zambonino-Infante, J.L. (2001). Substitution of live food by formulated diets in marine fish larvae. Aquaculture 200, 161-180
Dabrowski, K. (1984). The feeding of fi sh larvae: present “state of the art” and perspectives. Reproduction Nutrition Development, 24, 807-833.
Engrola, S., Conceição, L.E.C., Dias, L., Pereira, R., Ribeiro, L. & Dinis, M.T. (2007). Improving weaning strategies for Senegalese sole: effects of body weight and digestive capacity. Aquaculture Research, 38, 696-707.
Engrola, S., Dinis, M.T. & Conceicao, L.E.C. (2010). Senegalese sole larvae growth and protein utilization is depressed when co-fed high levels of inert diet and Artemia since first feeding. Aquaculture Nutrition, 16, 457-465.
Fevolden, S.E. & Røed, K.H. (1993). Cortisol and immune characteristics in rainbow trout (Oncorhynchus mykiss) selected for high or low tolerance to stress. Journal of Fish Biology, 43 (6), 91-930.
Fevolden, S.E., Røed, K.H., Fjalestad, K.T. & Stien, J. (1999). Poststress levels of lysozyme and cortisol in adult rainbow trout: heritabilities and genetic correlations. Journal of Fish Biology, 54 (4), 900-910.
Guerrero-Alvarado, C. (2003). Treinamento alimentar de pintado Pseudoplatystoma coruscans (Agassiz, 1829): Sobrevivência, crescimento e aspectos económicos. Tesis de Magister, Centro de Aqüicultura Jaboticabal, Universidade Estadual Paulista, São Paulo, Brasil.
Hamza, N., Mhetli, M. & Kestemont, P. (2007). Effects of weaning age and diets on ontogeny of digestive activities and structures of pikeperch (Sander lucioperca) larvae. Fish Physiology Biochemical, 33, 121-133.
Hogendoorn, H. (1980). Controlled breeding of the African catfish, Clarias lazera (C. and V.) III. Feeding and growth of fry. Aquaculture 21, 233-241.
Hung, L., Tuan, N., Cacot, P. & Lazard, J. (2002). Larval rearing of the Asian Catfish, Pangasius bocourti (Siluroidei, Pangasiidae): alternative feeds and weaning time. Aquaculture, 212, 115 127.
Jones, D.A., Kamarudin, M.S., Le Vay, L., (1993). The potential for replacement of live feeds in larval culture. Journal of the World Aquaculture Society 24 (2), 199–210.
Kamarudin, M.S., Otoi, S., Saad, C.R. (2011). Changes in growth, survival and digestive enzyme activities of Asian redtail catfish, Mystus nemurus, larvae fed on different diets. African Journal Biotechnology, 10, 4484-4493.
Kerdchuen, N. & Legendre, M. (1994). Larval rearing of an African catfish, Heterobranchus longifi lis (Teleostei, Clariidae): a comparison between natural and artificial diet. Aquat Living Resources, 7, 247-253.
Kolkovski, S. (2001). Digestive enzymes in fi sh larvae and juveniles, implications and applications to formulated diets. Aquaculture, 200, 181-201.
Liu, B., Zhu, X., Lei, W., Yang, Y., Han, D., Jin, J. & Xie, S. (2012). Effects of different weaning strategies on survival and growth in Chinese longsnout catfish (Leiocassis longirostris Gunther) larvae. Aquaculture 364, 13-18.
Marciales-Caro, L., Cruz-Casallas, N., Díaz-Olarte, J.J., Medina-Robles, V. & Cruz-Casallas, P.E. (2011). Crecimiento y sobrevivencia de post-larvas de bagre rayado (Pseudoplatystoma sp) y yaque (Leiarius marmoratus) consumiendo una dieta seca. Revista Colombiana de Ciencias Pecuarias, 24, 179-190.
Nuñez, J., Duque, R., Corcuy-Arana, N., Duponchelle, F., Renno, J. & Raynaud, T. (2008). Induced breeding and larval rearing of Surubí, Pseudoplatystoma fasciatum (Linneaus, 1766), from the bolivian Amazon. Aquactic Resourch, 39, 764-776.
Padilla PP, Alcántara BF, Ismiño OR. (2001). Reproducción inducida de la doncella Pseudoplatystoma fasciatum y desarrollo embrionario - larval. Folia Amazónica, 12(1-2): 142 - 154.
Person-Le Ruyet, J., Alexandre, J.C., Thebaud, L. & Mugnier, C., (1993). Marine fish larvae feeding: formulated diets or live prey?. Journal of the World Aquaculture Society, 24, 211-224.
Pradhan, P.K., Jena, J.K., Mitra, G., Sood, N. & Gisbert, E. (2012). Ontogeny of the digestive tract in butter catfish Ompok bimaculatus (Bloch) larvae. Fish Physiology Biochemistry, 38, 1601 1617.
Rao, T.R. (2003). Ecological and ethological perspectives in larval fish feeding. Journal Applied Aquaculture, 13, 145-178.
Sevilla, A. & Günther, J. (2000). Growth and feeding level in pre-weaning Tambaqui Colossoma macropomum Larvae. Journal of the World Aquaculture Society, 31, 218-224.
Vergara-Morelo, R. & Hoyos-Pacheco, J. (2005). Evaluación del entrenamiento del bagre blanco (Sorubim cuspicaudus littmann, burr & nass, 2000) al consumo de dietas secas. Tesis de pregrado, Programa de Acuicultura, Universidad de Córdoba, Montería, Colombia.
Valbuena-Villarreal, R.D., Zapata-Berruecos, B. & Cruz-Casallas, P.E. (2010). Reproducción inducida de Capaz (Pimelodus grosskopfii) con extracto de hipófisis de carpa: reporte preliminar. Orinoquia, 14(2), 133-139.
Valbuena-Villarreal, R.D., Zapata-Berruecos, B., David-Ruales, C. & Cruz-Casallas, P.E. (2012). Desarrollo embrionario del capaz Pimelodus grosskopfii (Steindachner, 1879). International Journal of Morphology 30(1), 150-156.
Valbuena-Villarreal, R.D., B. Zapata-Berruecos y M.C. Gutiérrez-Espinoza. (2012). Coeficientes de digestibilidad aparente de tres ingredientes proteicos para capaz, Pimelodus grosskopfii. Orinoquia 16, 179-186.
Valbuena-Villarreal, R.D., Zapata-Berruecos, B. & Otero-Paternina, A. (2013). Evaluación de la primera alimentación en larvas de capaz Pimelodus grosskopfii bajo condiciones de laboratorio. Revista MVZ Córdoba, 18(2), 3518-3524.
Villa-Navarro, F.A. & Losada-Prada, S. (1999). Hábitos alimenticios de Pimelodus grosskopffi y Ageneiosus caucanus (Pisces:Siluriformes) en la represa de Prado (Tolima). pp 224. En: XXXIV Congreso Nacional de Ciencias Biológicas, Cali.
Vega-Orellana, O.M., Fracalossi, D.M. & Sugai, J.K. (2006). Dourado (Salminus brasiliensis) larviculture: weaning and ontogenetic development of digestive proteinases. Aquaculture 252, 484-493.
Zambonino-Infante, J.L. & Cahu, C.L. (2007). Dietary modulation of some digestive enzymes and metabolic processes in developing marine fish: applications to diet formulation. Aquaculture, 268, 98-105.
Watanabe, T., Kiron, V. (1994). Prospects in larval fish dietetics. Aquaculture 124 (1–4), 223–251.
Pickering, A.D., 1998. Stress responses of farmed fish. In: Black, K.D., Pickering, A.D. (Eds.), Biology of Farmed Fish. Sheffield Academic Press, Sheffield, pp. 222–255.

