Monoculture and polyculture of shrimp Litopenaeus schmitti and mullet Mugil curema in bioflocos system and clear water

Authors

  • Emanuela Paula MELO Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha http://orcid.org/0000-0003-0819-3233
  • Lidia Miyako Yoshii OSHIRO Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha
  • Michelle Midori Senna FUGIMURA Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha
  • Tiago Viana da COSTA Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha
  • Helaine dos Reis FLOR Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha
  • Nivaldo Faria SANT'ANA Universidade Federal Rural do Rio de Janeiro, Estação de Biologia Marinha

DOI:

https://doi.org/10.20950/1678-2305.2016v42n3p532

Keywords:

white shrimp, cultures systems, culture medium

Abstract

The aim of this study was to evaluate the monoculture and polyculture of white shrimp Litopenaeus schmitti and mullet Mugil curema in bioflocs system and clear water. The experimental design was completely randomized in a factorial arrangement (4x2) with four cultures systems (shrimps and fish) and two culture medium (clear water and bioflocs), with four replications: (M50/0) - monoculture L. schmitti density 50 m- 2; (P50/5) í  polyculture L. schmitti and M. curema density 50 m-2 and 5 m2, respectively; (P50/10) í  polyculture L. schmitti and M. curema density 50 m-2 and 10 m-2 respectively; (M0/10) - monoculture M. curema density 10 m-2. The polyculture of L. schmitti with mullet affected zootechnical performance of shrimp, however, L. schmitti juveniles showed better performance, for all analyzed indexes, when cultured in the bioflocs. The mullet in monoculture and polyculture with lower stocking density (5m-2) showed better final weight , weight gain and specific growth rate than mullet in polyculture with higher density (10m-2) and better performance when cultured in clear water. The bioflocs contributed significantly to shrimp juvenile growth, however fish did not present the same performance in bioflocs system.

References

ANDERSON, D.M.; GLIBERT, P.M.; BURKHOLDER, J. M. 2002 Harmful Algal Blooms and Eutrophication Nutrient Sources, Composition, and Consequences. Estuaries, 25: 704 -726.

AOAC. 2000 Official methods of analysis. 17a ed. Association of Official Analytical Chemists, Gaithersburg, MD. ARTILES, M. A.; REYES, R.; TIZOL, R. 2001 Policultivo de lisa (Mugil liza) con camarón blanco (Litopenaeus schmitti) en estanques de tierra. Boletí­­n del Centro Investigaciones Biológicas, 35(3): 325-338.

AVINEMELECH, Y. 2011 Tilapia Production Using Biofloc Technology: Saving Water, Waste Recycling Improves Economics. Global Aquaculture Advocate, 14(3): 66-68.

AVNIMELECH, Y. 1999 Carbon/nitrogen ratio as a control element in aquaculture systems, Aquaculture, 176: 227-235.

AVNIMELECH, Y. 2007 Feeding with microbial flocs by tilapia in minimal discharge bio-flocs technology ponds. Aquaculture, 264: 140-147.

AVNIMELECH, Y. 2009 Biofloc Technology: A Practical Guide Book. Baton Rouge, Louisiana, United States. The World Aquaculture Society. 181 p.

AZIM, M. E e LITTLE, D. C. 2008 The biofloc technology (BFT) in indoor tanks: Water quality, biofloc composition, and growth and welfare of Nile tilapia (Oreochromis niloticus) Aquaculture, 283: 29 - 35.

BALLESTER, E. L, C.; ABREU, P. C.; CAVALLI, R. O.; EMERENCIANO, M.; ABREU, L.; WASIELESKY, W. JR. 2010 Effect of practical diets with different protein levels on the performance of Farfantepenaeus paulensis juveniles nursed in a zero exchange suspended microbial flocs intensive system. Aquaculture Nutrition, 16: 163 - 172.

BARBIERI, E.; BONDIOLI, A. C. V.; MELO, C. B.; HENRIQUES, M. B. 2014 Nitrite toxicity to Litopenaeus schmitti (Burkenroad, 1936, Crustacea) at different salinity levels. Aquaculture Research, 47(4): 1260-1268.

BARBIERI, E. 2010 Acute toxicity of ammonia in White shrimp (Litopenaeus schmitti) (Burkenroad, 1936, Crustacea) at different salinity levels. Aquaculture, 302(1-4): 231-237.

BOYD, C. E. 1997 Pond bottom soil and water quality management for pond aquaculture. Alabama: ASA, 55 p.

BUENO, S. L. S. 1900 Maturation and spawning of the white shrimp Penaeus schmitti Burkenroad, 1936, under large scale rearing conditions. Journal of the World Aquaculture Society, 3(21): 170 - 179.

BURFORD, M. A.; THOMPSON, P. J.; McINTOSH, R. P.; BAUMAN, R. H.; PEARSON, D. C. 2004 The contribution of flocculated material to shrimp (Litopenaeus vannamei) nutrition in a high-intensity zero-exchange system. Aquaculture, 232(1 - 4): 525 - 537.

CARVALHO, C. V. A.; BIANCHINI, A.; TESSER, M. B.; SAMPAIO, L. A. 2010 The effect of protein levels on growth, postprandial excretion and tryptic activity of juvenile mullet Mugil platanus (Gunther). Aquaculture Research, 41: 511 - 518.

CARVALHO, C. V. A.; BIANCHINI, A.; TESSER, M. B.; SAMPAIO, L. A. 2010 The effect of protein levels on growth, postprandial excretion and tryptic activity of juvenile mullet Mugil platanus (Gunther). Aquaculture Research, 41: 511-518.

COSTA, L. C. O.; XAVIER, J. A. A.; NEVES, L. F. M.; AZAMBUJA, A. M. V.; WASIELESKY, W. JR.; FIGUEIREDO, M. R. C. 2013 Polyculture of Litopenaeus vannamei shrimp and Mugil platanus mullet in earthen ponds. Revista Brasileira de
Zootecnia, 42(9): 605 - 611.

CRAB, R., DEFOIRDT, T.; BOSSIER, P.; VERSTRAETE, W. 2012 Biofloc technology in aquaculture: Beneficial effects and future challenges. Aquaculture, 356-357: 351 í  356.

CRAB, R.; CHIELENS, B.; WILLE, M.; BOSSIER P.; VERSTRAETE, W. 2010 The effect of different carbon sources on the nutritional nutritional value of bioflocs, a feed for Macrobrachium rosenbergii postlarvae. Aquaculture Research, 41: 559 í  567.

CRAB, R.; KOCHVAC, M.; VERSTRAETEA, W.; AVNIMELECH, Y. 2009 Bio-flocs technology application in over-wintering of tilapia. Aquacultural Engineering, 40(3): 105 - 112.

CUZON, G.; LAURENCE, A.; GAXIOLA, G.; ROSAS, C.; GUILLAUME, J. 2004 Nutrition of Litopenaeus vannamei reared in tanks or in ponds. Aquaculture, 235: 513 - 531.

DELBON e RANZANI PAIVA. 2012 Eugenol em juvenis de Tilápia do Nilo: concentrações e administrações sucessivas. Boletim do Instituto de Pesca, 38(1): 43 - 52.

EMERENCIANO, M. G. C.; WASIELESKY, W. JR.; SOARES, R. B.; BALLESTER, E. C.; IZEPPI, E. M.; CAVALLI, R. O. 2007 Crescimento e sobrevivência do camarão-rosa (Farfantepenaeus paulensis) na fase de berçário em meio heterotrófico. Acta Scientiarum Biological Sciences, Maringá, 29(1): 1 í  7.

EMERENCIANO, M.; BALLESTER, E. L. C.; CAVALLI, R. O.; WASIELESKY, W. JR. 2012 Biofloc technology application as a food source in a limited water exchange nursery system for pink shrimp Farfantepenaeus brasiliensis (Latreille,
1817). Aquaculture Research, 43: 447 - 457.

FISH BREEDING ASSOCIATION. 2003 Technical Handbook. Fish Breeding Association, Israel, 106 p.

FOLCH, J. M.; LEES, M.; SLOANE-STANLEY, G. H. 1957 A simple method for the isolation and purification of total lipids from animal tissues. Journal Biological Chemistry, 226: 497 í  507.

FURTADO, P. S.; GAOANA, C. A. P.; SERRA, F. P.; POERSCH, L. H.; WASIELESKY, W. JR. 2013 Cultivo de camarões marinhos com tecnologia de bioflocos: A influência da alcalinidade pH e CO2. Panorama da Aquicultura, 23(135): 43 í  53.

GALINDO, J.; ÁLVAREZ, J.; FRAGA, I.; REYES, R.; JAIME, B.; FERNÁNDEZ, I. 1992 Requerimientos de lí­­pidos de juveniles de camarón blanco Panaeus schmitti. Revista Cubana de Investigaciones Pesqueras, 17(2): 23 - 36.

GALVÃO, J. A.; BITTENCOURT-OLIVEIRA, M. C.; OETTERER, M. 2012 Cultivo aquático sustentável implica melhoramento de cianobactérias. Revista Visão Agrí­­cola, 11: 54 - 55.

GAONA, C. N.; SERRA, F. P.; POERSCH, L. H.; WASIELESKY,W. JR. 2012 Sistema de bioflocos: A importí­¢ncia e o manejo dos sólidos suspensos totais. Panorama da aquicultura, 22(134): 38 í  46.

HERNí­â‚¬DEZ, J. Z. e NUNES, A. J. P. 2001 Biossegurança no cultivo de camarão marinho qualidade da água e fatores ambientais. Revista da Associação Brasileira de Criadores de Camarão, 3(2): 55 - 59.

HERNANDEZ-BARRAZA, C.; LOREDO, J.; ADAME, JORGE.; FITZSIMMONS, K. M. 2012 Effect of Nile tilapia (Oreochromis niloticus) on the growth performance of Pacific white shrimp (Litopenaeus vannamei) in a sequential polyculture system. Latim American Journal Aquatic Research, 40(4): 936-942.

ITO, K. e BARBOSA, J. C. 1997 Ní­­vel protéico e proporção de proteí­­na de origem animal em dietas artificiais para tainha, Mugil platanus. Boletim do Instituto de Pesca, 24: 111 - 117.

JU, Z. Y .; FORSTER, I .; CONQUEST, L.; DOMINY, W .; KUO, W. C.; HORGEN, F. V. 2008 Determination of microbial community structures of shrimp floc cultures by biomarkers and analysis of floc amino acid profiles. Aquaculture Research, 39: 118 - 133.

KRUMMENAUER, D.; LARA, G.; FOÉS, G.; POERSCH, L. H.; WASIELESKY, W. JR. 2013 Sistema de Bioflocos: É possí­­vel reutilizar a água por diversos ciclos? Panorama da aquicultura, 136(23): 40 - 47.

KUBITZA, F. Qualidade da água na produção de peixes í  parte I. 1998 Panorama da aquicultura, 8(45): 36 - 41.

KUBTIZA, F. 2003 Qualidade da água no cultivo de peixes e camarões. 1a ed. Jundiaí­­: F. Kubtiza. 229 p.

LUO, G.; GAO, Q.; WANG, C.; LIU, W.; SUN, D.; LI, L.; TAN, H. 2014 Growth, digestive activity, welfare, and partial cost-effectiveness of genetically improved farmed tilapia (Oreochromis niloticus) cultured in a recirculating aquaculture system and an indoor biofloc system. Aquaculture, 422 í  423: 1 - 7.

McINTOSH, D.; SAMOCHA, T. M.; JONES, E. R.; LAWRENCE, A. L.; MCKEE, D. A.; HOROWITZ, S.; HOROWITZ, A. 2000 The effect of a commercial bacterial supplement on the high-density culturing of Litopenaeus vannamei with a low-protein diet in an outdoor tank system and no water exchange. Aquacultural Engineering, 21: 215 í  227.

MIRANDA-FILHO, K. C.; WASIELESKY, W. JR.; MAí­"¡ADA, A. P . 1995 Efeito da amônia e nitrito no crescimento da tainha Mugil platanus (Pisces, Mugilidae). Brazilian Journal of Biology, 55: 45 - 50.

MUANGKEOW, B.; IKEJIMA, K .; POWTONGSOOK, S.; YI, Y. 2007 Effects of white shrimp, Litopenaeus vannamei (Boone), and Nile Tilapia, Oreochromis niloticus L., stocking density on growth, nutrient conversion rate and
economic return in integrated closed recirculation system. Aquaculture, 269: 363 - 376.

NASCIMENTO, I. A.; BRAY, W. A.; LEUNG TRUJILLO, J. R.; LAWRENCE, A. L. 1991 Reproduction of ablated an unablated Penaeus schmitti in captivity using diets consisting of fresh-frozen natural and dried formulated feeds. Aquaculture, 99: 387 - 398.

OKAMOTO, M. H.; SAMPAIO, L. A.; MAí­"¡ADA, A. P. 2007 Efeito da temperatura sobre o crescimento e sobrevivência de juvenis de tainha Mugil platanus Günther, 1880. Atlí­¢ntica, 28: 61 - 66.

POERSCH, L. H.; FÓES, G.; KRUMMENAUER, D.; ROMANO, L. A.; WASIELESK, W. JR. 2012 Bioflocos uma alternativa para camarões saudáveis. Panorama da Aquicultura, 22(130): 28 - 37.

POERSCH, L. H.; SANTOS, M. H. S.; MIRANDAFILHO, K.; WASIELESKY, W. JR. 2007 Efeito agudo do nitrato sobre alevinos de tainha. Boletim do Instituto de Pesca, 33(2): 247 í  252.

PRETO, A.; CAVALLI, R. O.; PISSETI, T.; ABREU P. C.; WASIELESKY, W. JR. 2005 Efeito da densidade de estocagem sobre o biofilme e o desempenho de pós-larvas do camarão-rosa, Farfantepenaeus paulensis cultivado em gaiolas.
Ciência Rural, 35: 1417 í  1423.

SAMOCHA, T. M.; PATNAIK, S.; SPEED, M.; ALI, A. M.; BURGER, J. M.; ALMEIDA, R. V.; AYUB, Z.; HARISANTO, M.; HOROWITZ, A.; BROCK, D. L. 2007 Use of molasses as carbon source in limited discharge nursery and grow-out systems for Litopenaeus vannamei. Aquaculture Engineering, 36(2): 184 - 191.

SAMOCHA, T. M.; PATNAIK, S.; SPEED, M.; ALI, A. M.; BURGER, J. M.; ALMEIDA, R. V.; AYUB, Z.; HARISANTO, M.; HOROWITZ, A.; BROCK, D. L. 2007 Use of molasses as carbon source in limited discharge nursery and grow-out systems for Litopenaeus vannamei. Aquaculture Engineering, 36(2): 184 í  191.

SANTOS, M. J. M. e VALENTI, W. C. 2002 Production of Nile Tilapia Oreochromis niloticus and freshwater Prawn Macrobrachium rosenbergii stocked at different densities in polyculture systems in Brazil. Journal of the World
Aquaculture Society, 33(3), 369 - 376.

SILVA, L. B.; BARCELLOS, L. J. G.; QUEVEDO, R. M.; SOUZA, S. M. G.; KREUTZ, L. C.; RITTER, F.; FINCO, J. A.; BEDIN, A. C. 2006 Alternative species for traditional carp polyculture in southern South America: Initial growing period. Aquaculture, 255: 417 - 428.

SIMÃO, B.; RODRIGO.; BRITO, L. O.; MAIA, A. S. C.; MIRANDA, L. C.; AZEVEDO, C. M. S. B. 2013 Stocking densities and feeding strategies in shrimp and tilapia polyculture in tanks. Pesquisa Agropecuária Brasileira, 48(8): 1088 - 1095.

SOUZA, B. E.; STRINGUETTA, L. L.; BORDIGNON, A.C.; BOHNENBERGER, L.; BOSCOLO, W. R.; FEIDEN, A. 2009 Policultivo do camarão de água doce Macrobrachium amazonicum (Heller, 1862) com a Tilápia do Nilo (Oreochromis niloticus) alimentadas com rações peletizada e farelada. Semina: Ciências Agrárias, 30(1): 225 í 
232.

STICKLAND, J. H. D. e PARSONS, T. R. 1972 A practical handbook of seawater analysis. 2a ed. Ottawa: Fisheries Research Board of Canada. Bulletin, 167. 311 p.

TIAN, X.; LI, D.; DONG, S.; YAN, X.; QI, Z.; LIU, G.; LU, J. 2001 An experimental study on closed-polyculture of penaeid shrimp with tilapia and constricted tagelus. Aquaculture, 202: 57 - 71.

VAN WYK, P e SCARPA, J. 1999 Water Quality and Management. In: VAN WYK, P., et al. (Ed)., Farming Marine Shrimp in Recirculating Freshwater Systems. Florida: Department of Agriculture and Consumer Services, Tallahassee. p. 128 í  138.

WASIELESKY, W. JR.; ATWOOD, H.; STOKES, AL.; BROWDY, C. L. 2006 Effect of natural production in a zero exchange suspended microbial floc based super-intensive culture system for white shrimp Litopenaeus vannamei, Aquaculture, 258: 396 í  403.

YUAN, D.; YI, Y.; YAKUPITIYAGE, A.; FITZIMMONS, K.; DIANA, J. S. 2010 Effects of addition of red tilapia (Oreochromis spp.) at different densities and sizes on production, water quality and nutrient recovery of intensive culture of white shrimp (Litopenaeus vannamei) in cement tanks. Aquaculture, 298: 226 í  238.

Published

2016-09-30

Most read articles by the same author(s)