157
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Feeding frequency on Lophiosilurus alexandri: performance, hematology, and daily rhythms

, , , , , , , , & show all

References

  • Biswas, G., A. R. Thirunavukkarasu, J. R. Sundaray, and M. Kailasam. 2010. Optimization of feeding frequency of Asian seabass (Lates calcarifer) fry reared in net cages under brackish water environment. Aquaculture 305:26–31. doi:10.1016/j.aquaculture.2010.04.002.
  • Bradford, M. M. 1976. A rapid and sensitive method for quantification of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry 72:248–54. doi:10.1016/0003-2697(76)90527-3.
  • Carneiro, P. C. F., and J. D. Mikos. 2005. Frequência alimentar e crescimento de alevinos de jundiá, Rhamdia quelen. Ciênc Rural 35:187–91. doi:10.1590/S0103-84782005000100030.
  • Caruso, G., M. G. Denaro, and L. Genovese. 2008. Temporal changes in digestive enzyme activities in the gastrointestinal tract of European eel (Anguilla anguilla) (Linneo 1758) following feeding. Marine and Freshwater Behaviour and Physiology 41:215–28. doi:10.1080/10236240802492931.
  • Chiu, S. T., and B. S. Pan. 2002. Digestive protease activities of juvenile and adult eel (Anguilla japonica) fed with floating feed. Aquaculture 205:141–56. doi:10.1016/S0044-8486(01)00669-X.
  • Cordeiro, N. I. S., D. C. Costa, W. S. Silva, R. Takata, K. C. Miranda-Filho, and R. K. Luz. 2016. High stocking density during larviculture and effect of size and diet on production of juvenile. Journal of Applied Ichthyology 32:61–66. doi:10.1111/jai.12963.
  • Costa, D. C., C. C. Mattioli, W. S. Silva, R. Takata, F. O. P. Leme, A. L. Oliveira, and R. K. Luz. 2017. The effect of environmental color on the growth, metabolism, physiology and skin pigmentation of the carnivorous freshwater catfish Lophiosilurus alexandri. Journal of Fish Biology 90:922–35. doi:10.1111/jfb.13208.
  • Costa-Bonfim, C. N., W. V. N. Pessoa, R. L. M. Oliveira, J. L. Farias, E. C. Domingues, S. Hamilton, and R. O. Cavalli. 2014. The effect of feeding frequency on growth performance of juvenile cobia, Rachycentron canadum (Linnaeus, 1766). Journal of Applied Ichthyology 30:135–39. doi:10.1111/jai.12339.
  • del Pozo, A., A. Montoya, L. M. Vera, and F. J. Sánchez-Vázquez. 2012. Daily rhythms of clock gene expression, glycaemia and digestive physiology in diurnal/nocturnal European seabass. Physiology & Behavior 106:446–50. doi:10.1016/j.physbeh.2012.03.006.
  • Ferreira, R. A., T. Róbson, T. R. Costa, A. L. A. Bulgarelli, M. M. Ishikawa, and H. Hisano. 2007. Desempenho produtivo de alevinos de dourado (Salminus brasiliensis) submetidos a diferentes frequências de alimentação. Ens Ciênc 11:33–38.
  • Folkvord, A., and H. Ottera. 1993. Effects of initial size distribution, day length, and feeding frequency on growth, survival, and cannibalism in juvenile Atlantic cod (Gadus morhua, L.). Aquaculture 114:243–60. doi:10.1016/0044-8486(93)90300-N.
  • García-Ortega, A., J. Verreth, and H. Segner. 2000. Post-prandial protease activity in the digestive tract of African catfish Clarias gariepinus larvae fed decapsulated cysts of Artemia. Fish Physiology and Biochemistry 22:237–44. doi:10.1023/A:1007893223006.
  • Goldenfarb, P. B., F. P. Bowyer, E. Hall, and E. Brosious. 1971. Reproducibility in the hematology laboratory: The microhematocrit determinations. American Journal of Clinical Pathology 56:35–39. doi:10.1093/ajcp/56.1.35.
  • Guerra-Santos, B., J. F. López-Olmeda, B. O. Mattos, A. B. Baião, D. S. P. Pereira, F. J. Sánchez-Vázquez, R. B. Cerqueira, R. C. B. Albinati, and R. Fortes-Silva. 2017. Synchronization to light and mealtime of daily rhythms of locomotor activity, plasma glucose and digestive enzymes in the Nile tilapia (Oreochromis niloticus). Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology 204:40–47. doi:10.1016/j.cbpa.2016.11.006.
  • Larson, A., M. J. Johansson-Sjobeck, and R. Fange. 1976. Comparative study of some hematological and biochemical blood parameters in fishes from the Skagerrak. Journal of Fish Biology 9:425–40. doi:10.1111/j.1095-8649.1976.tb04691.x.
  • Lazado, C. C., P. B. Pedersen, H. Q. Nguyen, and I. Lund. 2017. Rhythmicity and plasticity of digestive physiology in a euryhaline teleost fish, permit (Trachinotus falcatus). Comp. Biochem Physiol Part A Mol Integr Physiol 212:107–16. doi:10.1016/j.cbpa.2017.07.016.
  • Li, X. F., H. Y. Tian, D. D. Zhang, G. Z. Jiang, and W. B. Liu. 2014. Feeding frequency affects stress, innate immunity and disease resistance of juvenile blunt snout bream Megalobrama amblycephala. Fish & Shellfish Immunology 38:80–87. doi:10.1016/j.fsi.2014.03.005.
  • López-Olmeda, J. F. 2017. Nonphotic entrainment in fish. Comparative Biochemistry and Physiology - Part A 203:133–43. doi:10.1016/j.cbpa.2016.09.006.
  • López-Olmeda, J. F., I. López-García, M. J. Sánchez-Muros, B. Blanco-Vives, R. Aparicio, and F. J. Sánchez-Vázquez. 2012. Daily rhythms of digestive physiology, metabolism and behaviour in the European eel (Anguilla anguilla). Aquaculture International 20:1085–96. doi:10.1007/s10499-012-9547-z.
  • López-Olmeda, J. F., M. Egea-Álvarez, and F. J. Sánchez-Vázquez. 2009. Glucose tolerance in fish: Is the daily feeding time important? Physiology & Behavior 96:631–36. doi:10.1016/j.physbeh.2008.12.015.
  • Luz, R. K., and M. C. Portella. 2005. Freqüência alimentar na larvicultura do trairão (Hoplias lacerdae). Revista Brasileira De Zootecnia 34:1442–48. doi:10.1590/S1516-35982005000500003.
  • 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 437:155–60. doi:10.1016/j.aquaculture.2014.11.012.
  • Mariano, W. S., E. L. Oba, L. R. B. Santos, and M. N. Fernandes. 2009. Respostas fisiológicas de jeju (Hoplerythrinus unitaeniatus) expostos ao ar atmosférico. Rev Brasil Saúde Prod An 10:210–23.
  • Melillo Filho, R., R. Takata, A. E. H. Santos, W. S. Silva, A. L. Ikeda, L. A. Rodrigues, J. C. E. Santos, A. L. Salaro, and R. K. Luz. 2014. Draining system and feeding rate during the initial development of Lophiosilurus alexandri (Steindachner, 1877), a carnivorous freshwater fish. Aquaculture Research 45:1913–20. doi:10.1111/are.12139.
  • Mizanur, R. M., and S. C. Bai. 2014. The optimum feeding frequency in growing Korean Rockfish (Sebastes schlegeli) rearing at the temperature of 15°C and 19°C. Asian-Australas J Anim Sci 27:1319–27. doi:10.5713/ajas.2014.14193.
  • MJT, R.-P., and H. M. Godinho. 1988. Características do plasma sangüíneo do pacu Piaractus mesopotamicus Holmberg, 1887 (Colossoma mitrei Berg, 1895) em condições experimentais de criação. Bol Inst Pesca 15:169–77.
  • Montoya, A., J. F. López-Olmeda, A. B. S. Garayzar, and F. J. Sánchez-Vázquez. 2010a. Synchronization of daily rhythms of locomotor activity and plasma glucose, cortisol and thyroid hormones to feeding in Gilthead seabream (Sparus aurata) under a light–dark cycle. Physiology & Behavior 101:101–07. doi:10.1016/j.physbeh.2010.04.019.
  • Montoya, A., J. F. López-Olmeda, M. Yúfera, M. J. Sánchez-Muros, and F. J. Sánchez-Vázquez. 2010b. Feeding time synchronises daily rhythms of behavior and digestive physiology in gilthead seabream (Sparus aurata). Aquaculture 306:315–21. doi:10.1016/j.aquaculture.2010.06.023.
  • Murai, T., and J. W. Andrews. 1976. Effect of frequency of feeding on growth and food conversion of channel catfish fry. Bulletin of the Japanese Society for the Science of Fish 42:159–61. doi:10.1590/S0103-84782005000100030.
  • Ndome, C. B., A. O. Ekwu, and A. A. Ateb. 2011. Effect of feeding frequency on feed consumption, growth and feed conversion of Clarias gariepinus X Heterobranchus longifilis hybrids. American-Eurasian J Scient Res 6:06–12. doi:10.15640/jaes.v3n3a2.
  • Oso, J. A. 2015. Effects of feeding frequency variation on the growth and survival of Clarias gariepinus fingerlings. Science, Technology and Arts Research Journal 4:98–100. doi:10.4314/star.v4i3.15.
  • Polakof, S., R. M. Ceinos, B. Fernández-Durán, J. M. Míguez, and J. L. Soengas. 2007. Daily changes in parameters of energy metabolism in brain of rainbow trout: Dependence on feeding. Comparative Biochemistry and Physiology - Part A: Molecular & Integrative Physiology 146:265–73. doi:10.1016/j.cbpa.2006.10.026.
  • Salaro, A. L., J. C. O. Junior, F. W. Lima, R. B. Ferraz, M. D. Pontes, D. A. V. Campelo, J. A. S. Zuanon, and R. K. Luz. 2015. Gelatin in replacement of bovine heart in feed training ofLophiosilurus alexandri in different water salinities. Anais Da Academia Brasileira De Ciências 87:2281–87. doi:10.1590/0001-3765201520140575.
  • Sant´Ana, L., R. Melilo Filho, W. S. Silva, C. C. Mattioli, L. V. Teixeira, and R. K. Luz. 2017. Aspectos sensoriais do pacamã: Uma espécie promissora. In Panorama da Aquicultura, Ed, 158. Anorama da Aquicultura: Brazil, Alegrete, RJ.
  • Santos, J. C. E., M. M. Pedreira, and R. K. Luz. 2016. Feeding frequency in pacamã larviculture. Rev Caatinga 29:512–18. doi:10.1590/1983-21252016v29n230rc.
  • Silva, C. R., L. V. Gomes, and F. R. Brandão. 2007. Effect of feeding rate and frequency on tambaqui (Colossoma macropomum) growth, production and feeding costs during the first growth phase in cages. Aquaculture 264:135–39. doi:10.1016/j.aquaculture.2006.12.007.
  • Silva, W. S., N. I. S. Cordeiro, D. C. Costa, R. Takata, and R. K. Luz. 2014. Frequência alimentar e taxa de arraçoamento durante o condicionamento alimentar de juvenis de pacamã. Pes Agropec Bras 49:648–51. doi:10.1590/S0100-204X2014000800009.
  • Soltadov, A. A. 1996. The effect of hypoxia on red blood cells of flounder: A morphologic and autoradiographic study. Journal of Fish Biology 48:321–28. doi:10.1111/j.1095-8649.1996.tb01430.x.
  • Sun, G., Y. Liu, D. Qiu, M. Yi, X. Li, and Y. Li. 2016. Effects of feeding rate and frequency on growth performance, digestion and nutrients balances of Atlantic salmon (Salmo salar) in recirculating aquaculture systems (RAS). Aquaculture Research 47:176–88. doi:10.1111/are.12480.
  • Tian, H. Y., D. D. Zhang, X. F. Li, C. N. Zhang, Y. Qian, and W. B. Liu. 2015. Optimum feeding frequency of juvenile blunt snout bream Megalobrama amblycephala. Aquaculture 437:60–66. doi:10.1016/j.aquaculture.2014.11.032.
  • Tonks, D. B. 1983. Principles and Technics. Clinical Chemistry 9:217–23. doi:10.1093/clinchem/9.2.217.
  • Wang, N., R. S. Hayward, and D. B. Noltie. 1998. Effect of feeding frequency on food consumption, growth, size variation, and feeding pattern of age-0 hybrid sunfish. Aquaculture 165:261–67. doi:10.1016/S0044-8486(98)00266-X.
  • Wang, Y., S. Xie, Z. Nie, Z. Nie, Q. Li, Y. Sun, N. Shao, J. Gao, J. Hu, P. Xu, et al. 2020. Optimum feeding frequency of juvenile largemouth bass (Micropterus salmoides) reared in in-pond raceway recirculating culture system. Fish Physiology and Biochemistry 46:2197–212. doi:10.1007/s10695-020-00866-w.
  • Wu, Y., H. Han, J. Qin, and Y. Wang. 2016. Effect of feeding frequency on growth, feed utilization, body composition and waste output of juvenile golden pompano (Trachinotus ovatus) reared in net pens. Aquaculture Research 46:1436–43. doi:10.1111/are.12297.
  • Yúfera, M., F. J. Moyano, A. Astola, P. Pousão-Ferreira, G. Martínez-Rodríguez, and C. R. Weber. 2012. Acidic Digestion in a Teleost: Postprandial and circadian pattern of gastric pH, pepsin activity, and pepsinogen and proton pump mRNAs expression. PLoS One 7:e33687. doi:10.1371/journal.pone.0033687.
  • Yúfera, M., M. J. Romero, I. M. Pujante, A. Astola, J. M. Mancera, F. J. Sánchez-Vázquez, F. J. Moyano, and G. Martínez-Rodríguez. 2014. Effect of feeding frequency on the daily rhythms of acidic digestion in a teleost fish (Gilthead seabream). Chronobiology International 31:1024–33. doi:10.3109/07420528.2014.944265.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.