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Original Articles

Influence of food type, amount, and frequencies on the larviculture of pacamã catfish Lophiosilurus alexandri

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References

  • Atema, J. 1971. Structures and functions of the sense of taste in the catfish (Ictalurus natalis). Brain Behavior Evolution Journal 4:273–294. doi:10.1159/000125438.
  • Baras, E., and M. Jobling. 2002. Dynamics of intracohort cannibalism in cultured fish. Aquaculture Research 33:461–479. doi:10.1046/j.1365-2109.2002.00732.x.
  • Basile-Martins, M. A., N. Yamanaka, O. Jacobsem, and C. M. Ishikawa. 1987. Findings on feeding and survival of pacu larvae Piaractus mesopotamicus (Holmber, 1887), (Colossoma mitrei. Berg, 1895). Boletim do Instituto de Pesca 14:63–68.
  • Benavente, G. P., and F. J. Gatesoupe. 1988. The continuous distribution of rotifers increases the essencial fatty acid reserv of turbot larvae Scophthalmus maximus. Aquaculture 72:109–114. doi:10.1016/0044-8486(88)90151-2.
  • Beux, L. F., and F. Zaniboni Filho. 2006. Influence of low salinity on the survival of Artemia sp. nauplii. Boletim do Instituto de Pesca 32:73–77.
  • Boujard, T. 1995. Diel rhythms of feeding activity in the European catfish Silurus glanis. Physiology and Behavior 58:641–645. doi:10.1016/0031-9384(95)00109-V.
  • Buckup, P. A., N. A. Menezes, and M. S. Ghazzi. 2007. Catalog of Freshwater Fishes of Brazil, 195. Rio de Janeiro, Brazil: Museu Nacional.
  • Campeche, D. F. B., L. Balzana, R. C. R. Figueiredo, M. R. S. Barbalho, F. J. S. Reis, and J. F. B. Melo. 2011. Native fishes of the São Francisco river adapted for cultivation, 20. Petrolina, Brazil: EMBRAPA.
  • Crawley, M. J. 2007. The R book. London: John Wiley.
  • Dabrowski, K. 1984. The feeding of fish larvae: Present “state of the art” and perspectives. Reproduction Nutrition Development 24:807–833. doi:10.1051/rnd:19840701.
  • Focken, U., C. Schlechtriem, M. Von Wuthenau, A. Garcia-Ortega, A. Puello-Cruz, and K. Becker. 2006. Panagrellus redivivus mass produced on solid media as live food for Litopenaeus vannamei larvae. Aquaculture Research 37:1429–1436. doi:10.1111/j.1365-2109.2006.01578.x.
  • Food and Agriculture Organization of the United Nations (FAO). 2012. The state of world fisheries and aquaculture report. Rome: Author.
  • Food and Agriculture Organization of the United Nations (FAO). 2014. The state of world fisheries and aquaculture report. Rome: Author.
  • Gisbert, E., R. H. Piedrahita, and D. E. Conklin. 2004. Ontogenetic development of the digestive system in California halibut (Paralichthys californicus) with notes on feeding practices. Aquaculture 232:455–470. doi:10.1016/S0044-8486(03)00457-5.
  • Godinho, A. L., M. F. G. Brito, and H. P. Godinho. 2003. Fishing in the Buritizeiro rapids: from illegality to participatory management. In Waters, fishes and fishing in São Francisco of Minas Gerais, ed. H. P. Godinho and A. L. Godinho, 347–360. Belo Horizonte, Brazil: Pontifícia Universidade Católica de Minas Gerais.
  • Govoni, J. J., G. W. Boehler, and Y. Watanabe. 1986. The physiology of digestion in fish larvae. Environmental Biology of Fishes 16:59–77. doi:10.1007/BF00005160.
  • Hecht, T., and A. Pienaar. 1993. A review of cannibalism and its implications in fish larviculture. Journal of the World Aquaculture Society 24:246–261. doi:10.1111/jwas.1993.24.issue-2.
  • Hornick, J. L., C. Van Eenaeme, O. Gérard, I. Dufrasne, and L. Istasse. 2000. Mechanisms of reduced and compensatory growth. Domestic Animal Endocrinology 19:121–132. doi:10.1016/S0739-7240(00)00072-2.
  • Jackson, J. B. C., M. X. Kirby, W. H. Berger, K. A. Bjorndal, L. W. Botsford, B. J. Bourque, R. H. Bradbury, et al. 2001. Historical overfishing and the recent collapse of coastal ecosystems. Science 293:629–637. doi:10.1126/science.1059199.
  • Jensen, F., M. Nielsen, and F. Nielsen. 2014. Increased competition for aquaculture from fisheries: Does improved fisheries management limit aquaculture growth ? Fisheries Research 159:25–33. doi:10.1016/j.fishres.2014.05.004.
  • Johansen, K., and K. Overturf. 2006. Alterations in expression of genes associated with muscle metabolism and growth during nutritional restriction and re-feeding in rainbow trout. Comparative Biochemistry and Physiology 144:119–127.
  • Jomori, R. K., D. J. Carneiro, E. B. Malheiros, and M. C. Portella. 2005. Economic evaluation of Piaractus mesopotamicus juvenile production in different rearing systems. Aquaculture 243:175–183. doi:10.1016/j.aquaculture.2004.09.034.
  • Kahan, D., and Z. Appel 1976. The value of Panagrellus sp. (Nematoda) as food for fish. In Proceedings of the 10th European Symposium on Marine Biology, Ostend, Belgium, 17–23 September, 1975, ed. Guido Persoone and E. Jaspers, 243–53. Wetteren, Belgium: Universa Press.
  • Kerdchuen, N., and M. Legendre. 1994. Larval rearing of an African catfish, Heterobranchus longifilis (Teleostei, Clariidae): A comparison between natural and artificial diet. Aquatic Living Resources 7:247–253. doi:10.1051/alr:1994027.
  • Kestemont, P., and A. Awaïss. 1989. Larval rearing of the gudgeon, Gobio gobio L., under optimal conditions of feeding with the rotifer, Brachionus plicatilis O. F. Müller. Aquaculture 83:305–318. doi:10.1016/0044-8486(89)90042-2.
  • Kestemont, P., and J. M. Stalmans. 1992. Initial feeding of European minnow larvae, Phoxinus phoxinus L. 1. Influence of diet and feeding level. Aquaculture 104:327–340. doi:10.1016/0044-8486(92)90214-6.
  • Lee, S. M., U. G. Hwang, and S. H. Cho. 2000. Effects of feeding frequency and dietary moisture content on growth, body composition and gastric evacuation of juvenile Korean cockfish (Sebastes schlegeli). Aquaculture 187:399–409. doi:10.1016/S0044-8486(00)00318-5.
  • Lopes, R. N. M., J. A. Senhorini, and C. F. Soares. 1994. Growth and survival of matrinxã Brycon cephalus Gunther, 1869 larvae (Pisces, Characidae) under different diets. Boetim Técnico CEPTA 7:41–48.
  • Lopez, C. M., and E. V. Sampaio. 2000. Survival and larval growth of the pacamã Lophiosilurus alexandri Steindachner 1876 (Siluriformes, Pimelodidae), according to three stocking densities in the laboratory. Acta Scientiarium. Animal Science 22:491–494.
  • Luz, R. K., and M. C. Portella. 2002. Larviculture of trairão (Hoplias lacerdae) in freshwater and salinized water. Revista Brasileira de Zootecnia 31:829–834. doi:10.1590/S1516-35982002000400004.
  • Luz, R. K., and M. C. Portella. 2005. Feed frequency in the larviculture of trairão (Hoplias lacerdae). Revista Brasileira de Zootecnia 34:1442–1448. doi:10.1590/S1516-35982005000500003.
  • Luz, R. K., J. C. E. Santos, M. M. Pedreira, and E. A. Teixeira. 2011. Effect of water flow rate and feed training on “pacamã” (Siluriforme: Pseudopimelodidae) juvenile production. Arquivo Brasileiro de Medicina Veterinária e Zootecnia 63:973–979. doi:10.1590/S0102-09352011000400024.
  • Magalhães, A. C. 1931. Brazilian monograph of fluvial fishes, 260. São Paulo, Brazil: Ed. Graphicars.
  • Manley, C. B., C. F. Rakocinski, P. G. Lee, and R. B. Blaylock. 2015. Feeding frequency mediates aggression and cannibalism in larval hatchery-reared spotted seatrout Cynoscion nebulosus. Aquaculture 437:155–160. doi:10.1016/j.aquaculture.2014.11.012.
  • Meurer, F., S. T. L. Oliveira, L. D. Santos, J. S. Oliveira, and L. M. S. Colpini. 2009. Levels of Nile tilapia post-larvae supply for pacamã fingerlings (Lophiosilurus alexandri). Revista Brasileira de Ciências Agrárias 5:111–116.
  • Ostrensky, A., J. R. Borghetti, and D. Soto. 2008. Aquaculture in Brazil: The challenge is to grow, 276. Brasília, Brazil: Secretaria Especial de Aquicultura e Pesca.
  • Pauly, D., V. Christensen, S. Guénette, T. J. U. Pitcher, U. R. Sumaila, C. J. Walters, R. Watson, and D. Zeller. 2002. Towards sustainability in world fisheries. Nature 418:689–695. doi:10.1038/nature01017.
  • Pereira, L. G. C. 2012. Fisheries and aquaculture in Brazil, 21. Brasília, Brazil: Câmara dos Deputados Brasília.
  • Salway, J. G. 2004. Metabolism at a glance, 128. Malden, MA: Blackwell.
  • Santiago, C. B., A. C. Gonzal, M. Ricci, and S. Harpaz. 2003. Response of bighead carp Artistichthys nobilis and Asian catfish Clarias macrocephalus larvae to free-living nematode Panagrellus redivivus as alternative feed. Journal of Applied Ichthyology 19:239–243. doi:10.1046/j.1439-0426.2003.00454.x.
  • Santos, J. C. E., and R. K. Luz. 2009. Effect of salinity and prey concentrations on Pseudoplatystoma corruscans, Prochilodus costatus and Lophiosilurus alexandri larviculture. Aquaculture 287:324–328. doi:10.1016/j.aquaculture.2008.10.014.
  • Sato, Y., N. Fenerich-Verani, and H. P. Godinho. 2003. Induced reproduction of fishes from the São Francisco basin. In Waters, fishes and fishing in São Francisco of Minas Gerais, ed. H. P. Godinho and A. L. Godinho, 275–289. Belo Horizonte, Brazil: Pontifícia Universidade Católica de Minas Gerais.
  • Sautter, J., H. Kaiser, U. Focken, and K. Becker. 2007. Panagrellus redivivus (Linne) as a live food organism in the early rearing of the catfish Synodontis petricola (Matthes). Aquaculture Research 38:653–659. doi:10.1111/j.1365-2109.2007.01714.x.
  • Schlechtriem, C., M. Ricci, U. Focken, and K. Becker. 2004. The suitability of the free living nematode Panagrellus redivivus as live food for first-feeding fish larvae. Journal of Applied Ichthyology 20:161–168. doi:10.1111/jai.2004.20.issue-3.
  • Senhorini, J. A., L. F. M. Mantelatto, and S. M. C. Casanova. 1998. Growth and survival of larvae of the Amazon species “Matrinxã,” Brycon cephalus (Pisces, Characidae), in larviculture ponds. Bolletim Técnico CEPTA 11:13–28.
  • Slembrouck, J., E. Baras, J. Subagja, L. T. Hung, and M. Legendre. 2009. Survival, growth and food conversion of cultured larvae of (Pangasianodon hypophthalmus), depending on feeding level, prey density and fish density. Aquaculture 294:52–59. doi:10.1016/j.aquaculture.2009.04.038.
  • Stappen, V. G. 1996. Use the cyst. In Manual on the production and use of live food for aquaculture, ed. P. E. Lavens and P. Sorgeloos, 79–123. FAO Fisheries Technical Paper 361. Rome: FAO.
  • Thomassen, J. M., and S. O. Fjaera. 1996. Studies of feeding frequency for Atlantic salmon (Salmo salar). Aquacultural Engineering 15:149–157. doi:10.1016/0144-8609(95)00010-0.
  • Treece, G. D. 2000. Artemia production for marine larval fish culture. Publication Nº 702. Stoneville, MS: Southern Regional Aquaculture Center.
  • Weingartner, M., and E. Zaniboni Filho. 2004. The effect of abiotic factors on the larviculture of pintado amarelo Pimelodus maculatus (Lacépède 1803): Salinity an tank color. Acta Scientiarum. Animal Sciences 26:151–157.
  • Yoshimatsu, T., and C. Kitajima. 1996. Effects of daily ration and frequency of Artemia on the growth of mullet larvae. Aquaculture International 4:85–88. doi:10.1007/BF00175223.
  • Zaniboni-Filho, E. 2000. Larviculture of freshwater fishes. Informe Agropecuário 21:69–77.
  • Zar, J. H. 2010. Biostatistical analysis, 944. Upper Saddle River, NJ: Prentice Hall.

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