Periphyton-Based Jaraqui (Semaprochilodus insignis) Culture with Two Types of Substrates at Different Densities

Influences of two types of substrates, natural (macrophyte, Pistia stratiotes) and artificial (plastic screen) were evaluated at 3 differrent densities (10, 20, 30%) on periphyton development, water quality and growth performance of jaraqui (Semaprochilodus insignis). Fish of average initial weight 1.46-1.69 g and length 4.15-4.26 cm stocked at 1/m2 in 46 m2 masonry tanks were grown for 120 days. The tanks were fertilized with urea, triple superphosphate and wheat bran. The types and densities of substrates tested did not drastically influence water quality. Natural substrate harboured higher periphyton biomass (1.48±0.09 mg/cm2) as well as species diversity (28 genera) than the artificial substrate (0.84±0.12 mg/cm2, 20 genera). Fish in 10% and 20% artificial substrate and 20% natural substrate treatments showed better mean values of body weight (24.64, 23.86, 29.26 g respectively) on termination of the experiment. Fish survival was the lowest in 30% natural substrate (84.1%) and highest in 10% artificial substrate (94.2%). Higher fish biomass was recorded in 20% natural and 10% artificial substrate treatments (25.05 and 21.71 g/m2), which amounts to a four-month yield of 250 and 217 kg/ha in the two treatments.

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Anand, P.S.S., Kohli, M.P.S., Roy, S.D. and Manikumar, S. 2013. Effect of dietary supplementation of periphyton on growth performance and digestive enzyme activities in Penaeus monodon. Aquaculture, 392-395: 59-68. doi:10.1016/j.aquaculture. 2013.01.029

AOAC 1975. Official Methods of Analysis. 12th Ed. Association of Official Analytical Chemists, Washington DC, USA.

Ashraf, M. and Fairgrieve, W. 1988. Effects of artificial feeds on the spawning success, fecundity and egg fertilization rates in Chinese and Indian major carps. Pakistan Journal of Zoology, 30: 185-189.

Ayode, A.A. 2011. Length-weight relationship and diet of African carp Labeo ogunensis (Boulenger, 1910) in Asejire lake southwestern Nigeria. Journal of Fisheries and Aquatic Science, 4: 472-478. doi: 10.3923/jfas.2011

Azim, M.E. and Asaeda, T. 2005. Periphyton structure, diversity and colonization. In: Periphyton: Ecology, explotation and management. CABI Publishing, UK. 319 p.

Azim, M.E., Wahab, M.A., Biswas, P.K., Asaeda, T., Fujino, T. and Verdegem, M.C.J. 2004. The effect of periphyton substrate density on production in freshwater polyculture ponds. Aquaculture, 232: 441- 453. doi: 10.1016/j.aquaculture.2003.08.010

Azim, M.E., Verdegem, M.C.J., Mantingh, I., van Dam, A.A. and Beveridge, M.C.M. 2003. Ingestion and utilization of periphyton grown on artificial substrates by Nile tilapia, Oreochromis niloticus L. Aquaculture Research, 34: 85- 92. doi: 10.1046/j.1365- 2109.2003.00802.x

Azim, M.E., Verdegem, M.C.J., Rahman, M.M., Wahab, M.A., van Dam, A.A. and Beveridge, M.C.M. 2002. Evaluation of polyculture of Indian major carps in periphyton-based ponds. Aquaculture, 213: 131-149. doi:10.1016/S0044-8486(02)00029-7

Azim, E., Verdegem, M., van Dam, A. and Beveridge, M. (Eds.). 2005. Periphyton: ecology, exploitationand management. CABI Publishing, UK. 319 p.

Azim, M.E., Wahab, M.A., van Dam, A.A., Beveridge, M.C.M., Huisman, E.A. and Verdegem, M.C.J. 2001.Optimization of stocking ratios of two Indian major carps, rohu (Labeo rohita Ham.) and catla (Catla catla Ham.) in a periphyton-based aquaculture system. Aquaculture, 203: 33-49. doi:10.1016/S0044- 8486(01)00602-0

Bhatnagar, A. and Devi, P. 2013. Water quality guidelines for the management of pond fish culture. International Journal of Environmental Sciences, 3: 1980-2009.

Bhatnagar, A., Jana, S.N., Garg, S.K. Patra, B.C., Singh, G. and Barman, U.K. 2004. Water quality management in aquaculture, In: Course Manual of Summer School on Development of Sustainable Aquaculture Technology in Fresh and Saline Waters. CCS Haryana Agricultural University, Hisar (India). pp. 203- 210.

Bicudo, C.E.M. and Bicudo, R.M.T. 1970. Algas de águas continentais brasileiras: chave ilustrada para identificação de gêneros. Editora da Universidade Federal, São Paulo. 228 p.

Bicudo, C. E. M. and Menezes, M. 2006. Gêneros de algas de águas continentais do Brasil. Chave para identificação e descrições. 2nd Ed. Rima Editora, SãoCarlos, SP. 502 p.

Bligh, E. and Dyer, W.J. 1959. A rapid method of total lipid extration and purification. Canadian Journal of Biochemistry and Physiology, 37: 911-917.

Bomfim, M.A.D., Lanna, E.A.T., Serafini, M.A. Ribeiro, F.B. and Silva, P.K. 2005. Proteína bruta e energia digestível em dietas para alevinos de curimbatá (Prochilodus affinis). Revista Brasileira de Zootecnia, 34: 1795-1806.

Boyd, C. E. and Tucker, C. S. 1998. Pond aquaculture water quality management. Kluwer Academic Publishers, Boston. 700 p.

Bretz, F., Hothorn, T. and Westfall, P. 2011. Multiple comparisons using R. CRC Press, Boca Raton.

Chambers, J.M., Freeny, A. and Heiberger, R. M. 1992. Analysis of variance; designed experiments. Statistical Models. In: J.M. Chambers and T.J. Hastie (Eds.). Wadsworth & Brooks/Cole, Pacific Grove, California, USA.

Dempster, P.W., Baird, D.J. and Beveridge, M.C.M. 1995. Can fish survive by filter feeding on microparticles? Energy balance in tilapia grazing on algal suspensions. Journal of Fish Biology, 47: 7-17. doi:10.1111/j.1095-8649.1995.tb01868.x

Dharmaraj, M., Manissery, J.K. and Keshavanath, P. 2002. Effects of biodegrable substrate, sugarcane bagasse and supplemental feed on growth and production of fringe-lipped peninsular carp, Labeo fimbriatus (Bloch). Acta Ichthyologica et Piscatoria, 32: 137- 144.

El-Sayed, A. F. 2006 . Tilapia culture, CABI Publishing, UK. 277 p.

Gandra, A.L.O. 2010. Mercado do pescado da região metropolitana de Manaus. CFC/FAO/INFOPESCA, 84 p.

Gangadhar, B. and Keshavanath, P. 2008. Planktonic and biochemical composition of periphyton grown on some biodegradable and non-biodegradable substrates. Journal of Applied Aquaculture, 20: 203- 232. doi:10.1080/10454430802329762

Gangadhar, B. and Keshavanath, P. 2012. Growth performance of rohu, Labeo rohita (Ham.) in tanks provided with different levels of sugarcane bagase as periphyton substrate. Indian Journal of Fisheries, 59: 77-82

García Gonzalez, J.J., Celis, L.M., Villalba, E.L., Mendoza, L.C., Crú, S.B., Atencio, V.J. and Pardo-Carrasco, S.C. 2011. Evaluación del policultivo de bocachico Prochilodus magdalenae y tilapia Oreochromis niloticus utilizando superficies fijadoras de perifiton. Arquivo Brasileiro de Medicina Veterinária e Zootecnia, 58: 71-83.

García Gonzalez, J.J., Correa Londoño, G.A. and PardoCarrasco, S.C. 2012. Fitoplancton y perifiton en estanques con tilapia nilótica (Oreochromis niloticus) y bocachico (Prochilodus magdalenae). Revista Colombiana de Ciencias Pecuarias, 25: 603-614.

Haque, M.R. Akter, M. and Pervin, R. 2014. Effects of C/N controlled periphyton based organic farming of freshwater prawn on water quality parameters and biotic factors. Journal of Fisheries, 2: 125-134. doi: http://dx.doi.org/10.17017/jfish.v2i2.2014.37

Hem, S. and Avit, J.L.B. 1994. First results on 'acadjaenclos' as an extensive aquaculture system (west Africa). Bulletin of Marine Science, 55: 1038-1049.

Hepher, B. 1988. Nutrition of pond fishes. Cambridge University Press, Cambridge, UK. 385 p. Horn, M.H. 1989. Biology of marine herbivorous fishes. Oceanography and Marine Biology Annual Review, 27: 167-272.

Hothorn, T., Bretz, F. and Westfall, P. 2008. Simultaneous inference in general parametric models. Biometrical Journal, 50: 346-363.

Howard-Williams, C. and Junk, W.J. 1976. The decomposition of aquatic macrophytes in the floating meadows of a central Amazonian várzea lake. Biogeographica, 7: 115-123.

iHuchette, S.M.H., Beveridge, M.C.M., Baird, D.J., and Ireland, M. 2000. The impacts of grazing by tilapias (Oreochromis niloticus L.) on periphyton communities growing on artificial substrates in cages. Aquaculture, 186: 45-60. doi:10.1016/S0044- 8486(99) 00365-8

Instituto Adolfo Lutz. 1985. Normas analiticas do Instituto Adolfo Lutz. Metodos químicos e físicos para analise de alimentos. 3rd Ed. São Paulo. pp. 245-266.

Jensen, F.B. 1995. Uptake and effects of nitrite and nitrate in animals. In: P.J. Walsh and P. Wright (Eds.). Nitrogen metabolism and excretion. CRC Press, Boca Raton. pp. 289-303.

Joice, A., Shankar, K.M. and Mohan, C.V. 2002. Effect of bacterial biofilm in nursey on growth, survival and resistance to Aeromonas hydrophila of common carp, Cyprinus carpio. Journal of Aquaculture in the Tropics, 17: 283-298.

Keshavanath, P., Gangadhar, B., Ramesha, T.J., Priyadarshini, M., van Dam, A.A., Verdegem, M.C.J. and and Beveridge, M.C.M. 2015. Impact of substrates and fish stocking density on growth and production of the Indian major carp, Labeo rohita (Ham.). Journal of Aquaculture in the Tropics, 30: 57-68.

Keshavanath, P., Gangadhar, B., Ramesh, T.J., van Dam, A.A., Beveridge, M.C.M. and Verdegem, M.C.J. 2002. The effect of periphyton and feeding on the production of the indigenous carps Tor khudree and Labeo fimbriatus. Aquaculture, 213: 207-218. doi:10.1016/S0044-8486(02)00034-0

Keshavanath, P., Gangadhar, B., Ramesh, T.J., van Dam, A.A., Beveridge, M.C.M. and Verdegem, M.C.J. 2004. Effects of bamboo substrate and supplemental feeding on growth and production of hybrid red tilapia fingerlings (Oreochromis mossambicus x Oreochromis niloticus). Aquaculture, 235: 303-314. doi:10.1016/j.aquaculture.2003. 12.017

Keshavanath, P., Gangadhar, B., Ramesh, T.J., van Rooij, J.M., Beveridge, M.C.M., Baird, D. J., Verdegem, M.C.J. and van Dam, A.A. 2001. Use of artificial substrates to enhance production of freshwater herbivorous fish in pond culture. Aquaculture Research, 32: 189-197. doi: 10.1046/j.1365- 2109.2001.00544.x

Keshavanath, P., Manissery, J.K., Ganapathi Bhat, A. and Gangadhara, B. 2012. Evaluation of four biodegradable substrates for periphyton and fish production. Journal of Applied Aquaculture, 24: 60- 68. doi: 10.1080/10454438.2012.652030

Khatoon, H., Yusoff, F., Banerjee, S., Shariff, M. and Bujang, J.S. 2007. Formation of periphyton biofilm and subsequent biofouling on different substrates in nutrient enriched brackishwater shrimp ponds. Aquaculture, 273: 470-477. doi: 10.1016/j.aquaculture. 2007.10.040

Kubitza, F. 1997. Transporte de peixes vivos: parte 1. Panorama da Aquicultura, Rio de Janeiro, 7: 20-26. Kubitza, F. 1998.Técnica de transporte de peixes vivos. Campo Grande. 44 p.

Kubitza, F. 2003.Qualidade da agua no cultivo de peixe e camarões. Jundiaí, 229 p.

Ledger, M.E. and Hildrew, A.G. 1998.Temporal and spatial variation in the epilithic biofilm of an acid stream. Freshwater Biology, 40: 655-670. doi: 10.1046/j.1365-2427.1998. 00364.x

Lima, A.T.A.S. 2009.Colonização ficoperifítica em substrato artificial em riacho do semi-árido paraibano. Dissertação (Mestrado),Universidade Federal da Paraíba, 85 p.

Martins, A. T. and Pitelli, R. A. 2005. Efeitos do manejo de Eichhornia crassipes sobre a qualidade da água em condições de mesocosmos. Planta Daninha, 23: 233- 242.

Melo, S., Rebelo, S.R.M., Souza, K.F., Menezes, M. and Torgan, L.C. 2005. Fitoplâncton. In: E.N.S. Silva, F.M. Aprole, V.V. Scudeller and S. Melo (Orgs.), BioTupé. Meio físico, diversidade biológica e sociocultural do Baixo Rio Negro, Amazônia Central. INPA, Manaus. pp. 87-98.

Melo, S., Sophia, M.G., Menezes, M. and Souza, C.A. 2004. Biodiversidade de algas planctónicas do parque nacional do Jaú: janela Seringalzinha. In: S.H. Borges, S. Iwanaga, C.C. Durigan and M.R. Pinheiro (Eds.), Janela para a biodiversidade no Parque Nacional do Jaú:uma estratégia para o estudo da biodiversidade na Amazônia. Ipiranga, Brasília. pp. 83-95.

Miller, R.G. 1981. Simultaneous Statistical Inference. Springer-Verlag, New York, USA.

Milstein, A. 2003. The effects of periphyton, fish and fertilizer dose on biological process affecting water quality in earthen fish ponds. Environmental Biology of Fishes, 68: 247-260.

Milstein, A., Naor, A. Barki, A. and Harpaz, S. 2013. Utilization of periphytic natural food as partial replacement of commercial food in organic tilapia culture - an overview. Transylvanian Review of Systematical and Ecological Research, 15: 49-60. doi: 10.2478/trser-2013-0005

Montgomery, W.L. and Gerking, S.D. 1980. Marine macroalgae as foods for fishes: an evaluation of potential food quality. Environmental Biology of Fishes, 5: 143-153.

Mridula, R.M., Manissery, J.K., Keshavanath, P., Shankar, K.M., Nandeesha, M.C. and Rajesh, K.M.2003. Water quality, biofilm production and growth of fringelipped carp (Labeo fimbriatus) in tanks provided with two solid substrates. Bioresource Technology, 87: 263-267. doi:10.1016/S0960-8524(02)00228-6

Mridula, R.M., Manissery, J.K., Keshavanath, P., Shankar, K.M., Nandeesha, M.C. and Rajesh, K.M. 2005. Effects of paddy straw and sugarcane bagasse on water quality, bacterial biofilm production and growth and survival of rohu, Labeo rohita (Hamilton). Aquaculture Research, 36: 635-642. doi: 10.1111/j.1365-2109.2005.01263.x

Nielsen, P.H., Jahn, A. and Palmgren, R. 1997. Conceptual model for production and composition of exopolymers in biofilms.Water Science and Technology, 36: 11-19.

Ostrensky, A. and Boeger, W. 1998. Piscicultura: Fundamentos e tecnicas de manejo - Guaíba, Agropecuária. 211 p.

Piepho, H.P. 2004. An algorithm for a letter-based representation of all-pairwise comparisons. Journal of Computational and Graphical Statistics, 13 (2): 456- 466. doi: 10.1198/ 1061860043515

Polunin, N.V.C. 1988. Efficient uptake of algal production by single residence herbivorous fish on the reef. Journal of Experimental Marine Biology and Ecology, 123: 61-76.

Pompêo, M.L.M. and Moschini-Carlos, V. 2003. Macrófitas aquáticas e perifíton, aspectos ecológicos e metodológicos. São Carlos, Rima. 134 p.

Pott, V.J. and Pott, A. 2000. Plantas aquáticas do Pantanal. Embrapa, Brasília. 404 p.

Proença, C.E.M. and Bittencourt, P.R.L. 1994. Manual de piscicultura tropical. IBAMA, Brasília. 196 p.

Rai, S., Yi, Y., Wahab, M. A., Bart, A. N. and Diana, J. S. 2008. Comparison of rice straw and bamboo stick substrates in periphyton carp polyculture, Aquaculture Research, 39: 464-473. doi:10.1111/j.1365- 2109.2008.01898.x

Ramesh, M. R., Shankar, K. M., Mohan, C. V. and Varghese, T. J. 1999. Comparison of three plant substrates for enhancing carp growth through bacterial biofilm. Aquaculture Engineering, 19: 119-131. doi: 10.1016/S0144-8609(98)00046-6

Resende, E.K., Graef, E.W., Zaniboni-Filho, E., Paiao, A.M. and Storti-Filho, A. 1985. Avaliação do crescimento e da produção de jaraqui (Semaprochilodus spp.), em açude de igarapé de terra firme nos arredores de Manaus, Amazonas. Acta Amazonica, 15: 19-36.

Rojas, N.E.T., Rocha, O. and Amaral, J.A.B. 2001. O efeito da alcalinidade da água sobre a sobrevivência e o crescimento das larvas do curimbatá, Prochilodus lineatus (Characiformes, Prochilodontidae), mantidas em laboratório. Boletim Instituto de Pesca, São Paulo. 27: 155-162.

Santos, G.M.D., Ferreira, E.J.G. and Zuanon, J.A.S. 2006. Peixes comerciais de Manaus. IBAMA/ProVárzea, Manaus. 144 p.

Santos, T.R. 2012. Variação sazonal da biomassa, do estado nutricional e da estrutura da comunidade de algas perifíticas desenvolvida sobre substrato artificial e Utricularia foliosa L. Dissertação (Mestrado), Instituto de Botânica da Secretaria de Estado do Meio Ambiente, São Paulo. 79 p.

Sibbing, F.A. and Witte, F. 2005. Adaptation to feeding in hervivorous fish (Cyprinidae and Cichlidae). In: Periphyton: Ecology, exploitation and management. CABI Publishing, UK. 319 p.

Siqueira, N. S. and Rodrigues, L. 2009. Biomassa perifítica em tanques-rede de criação de tilápia do niloOreochromis niloticus (Linneau, 1758). Boletim Instituto de Pesca, São Paulo, 35: 181-190.

Spotte, S. 1979. Fish and invertebrate culture. John Wiley and Sons, New York, USA.160 p.

Tavares, L.H.S. 1994. Limnologia aplicada à aquicultura. Jaboticabal: FUNEP. 70 p.

Thomé-Souza,M.F. 2007. Estatistica pesqueira do Amazonas e Pará - 2004. Ibama/ProVárzea, Manaus. 74 p.

Thompson, F.L., Abreu, P.C. and Wasielesky, W. 2002. Importance of biofilm for water quality and nourishment in intensive shrimp culture. Aquaculture, 203: 263-278. doi:10.1016/S0044-8486(01)00642-1

Uddin, M.S., Farzana, A., Fatema, M.K., Azim, M.E., Wahab, M.A. and Verdegem, M.C.J. 2007. Technical evaluation of tilapia (Oreochromis niloticus) monoculture and tilapia prawn (Macrobrachium rosenbergii) polyculture in earthen ponds with and without substrates for periphyton development. Aquaculture, 269: 232-240. doi:10.1016/j. aquaculture.2007.05.038

Uddin, M.S., Azim, M.E., Wahab, M.A. and Verdegem, M.C.J. 2009. Effects of substrate addition and supplemental feeding on plankton composition and production in tilapia and freshwater prawn (Macrobrachium rosenbergii) polyculture. Aquaculture, 297: 99-105. doi:10.1016/j.aquaculture.2009.09.016

Uddin, M.S., Milstein, A., Azim, M.E., Wahab, M.A., Verdegem, M. C. J. and Verreth, J.A.J. 2008. The effects of stocking density, periphyton substrate and supplemental feed on biological processes affecting water quality in earthen tilapia-prawn polyculture ponds/systems, Aquaculture Research, 39: 1243-1257. doi: 10.1111/j.1365-2109. 2008. 01987.x

Umesh, N.R., Shankar, K.M. and Mohan, C.V. 1999. Enhancing growth of common carp, rohu and Monzambique tilapia through plant substrate: the role of bacterial biofilm. Aquaculture International, 7: 251-260. doi: 10.1023/A:1009229113868

Van Dam, A.A., Beveridge, M.C.M., Azim, M.E. and Verdegem, M.C.J. 2002. The potential of fish production based on periphyton. Reviews in Fish Biology and Fisheries, 12: 1-31. doi: 10.1023/A:1022639805031

Verani, J.R. 1985. Análise quantitativa aplicada em experimentos de cultivo intensivo do curimbatá, Prochilodus scrofa Steindacner, 1818 (Characiformes, Prochilontidae). Tese (Doutorado), Universidade Federal de São Carlos, São Carlos. 151p.

Visbal, B.T.E., Morillo, S.M., Altuve, P.D., Aguirre, P.and Medina, G.A.L. 2013. Nivel óptimo de proteínas en la dieta para alevines de Prochilodus mariae. Revista Chilena de Nutrición, 40:141-146. Wahab, M.A. and Kibria, M.G., 1994. Katha and kua fisheries - unusual fishing methods in Bangladesh, Aquaculture News, 18, 24 p

Wetzel, R.G. 2001.Limnology: lake and river ecosystems. San Diego, California, Academic Press, 13 p.

Yakupitiage, A. 1993.Constraints to the use of plant fodder as fish feed in tropical small-scale tilapia culture systems: an overview. In: S.J. Kaushik and P. Luquet (Eds.). Fish Nutrition in Practice. Institut National de la Recherche Agronomique, Paris, France. pp. 681- 689.

Yandell, B.S. 1997. Practical data analysis for designed experiments. Chapman & Hall, London. 437 p.

Zaniboni Filho, E., Meurer, S. and Golombieski, J.I. 2002. Survival of Prochilodus liniatus (Valenciennes) fingerlings exposed to acute pH changes. Acta Scientiarum, Maringá, 24: 917-920.
Turkish Journal of Fisheries and Aquatic Sciences-Cover
  • ISSN: 1303-2712
  • Başlangıç: 2015
  • Yayıncı: Su Ürünleri Merkez Araştırma Enstitüsü - Trabzon
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