Effect of Microorganisms on Production and Cost-Benefit Analysis of Intensive Pacific White Shrimp (Litopenaeus vannamei) Culture

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Mongkhon Primphon
Niti Chuchird
Chalor Limsuwan

Abstract

The use of probiotics and bacterial management in shrimp pond aquaculture can be a crucial element to the success of production. The effects of probiotics on the survival, yield, and economics (cost and benefit) of Pacific white shrimp (Litopenaeus vannamei) farming in commercial ponds were determined. Six experimental ponds in a commercial operation were used, with three assigned as control ponds (no probiotics) and the other three as treatment ponds (with probiotics) during March-June 2011. The same stocking density and source of post larvae was used and optimum stocking density at 100-125 pl/m2 was maintained. Three major groups of probiotics including Bacillus spp., nitrifying bacteria and hydrogen sulfide oxidizing bacteria were used, either by mixing with the feed, applying directly to the water, or adding to the sludge area. Some water quality parameters were measured and compared between the ponds. Production and growth data were compared after harvest. Yield, survival, mean body weight (MBW) and average daily growth (ADG) of treated ponds were higher than those in the control (2,494±319.88 kg/rai, 73.18±6.47 %, 17.21±0.50 g. and 0.14 ±0.004 g/day, respectively). Whereas in the control ponds, the figures obtained were 1,970± 205.30 kg/rai, 63.15±3.69 %, 15.78±0.61 g., and 0.13 ± 0.005 g/day, respectively. Furthermore the FCR in treated ponds was 1.71 ± 0.03, which was significantly lower (p<0.05) therefore better, than that in the control ponds, which was 2.01 ± 0.10. Water conditions measured by Biological Oxygen Demand (BOD) in the treatment ponds increased slowly and showed less fluctuation than in the control ponds. Total organic matter (TOM) appeared to increase slowly in the treatment ponds compared to the control. All other water parameters such as ammonia, nitrite, and nitrate were all within acceptable limits. A combination of probiotics could improve water and bottom soil conditions by balancing and maintaining water parameters, increase the yield, survival and size of shrimp at harvest, reduceng feed conversion ratio and improving the income gained. However more research is needed to improve management practices and discover better probiotics application for more effectivity according to different farming models.

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Primphon, M., Chuchird, N., & Limsuwan, C. (2016). Effect of Microorganisms on Production and Cost-Benefit Analysis of Intensive Pacific White Shrimp (Litopenaeus vannamei) Culture. Journal of Fisheries and Environment, 40(1), 15–25. Retrieved from https://li01.tci-thaijo.org/index.php/JFE/article/view/80437
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References

1. Alavandi, S.V., K.K. Vijayan, T.C. Santiago, M. Poornima, K.P. Jithendran, S.A. Ali, and J.J.S. Rajan. 2004. Evaluation of Pseudomonas sp. PM 11 and Vibrio fluvialis PM 17 on immune indices of tiger shrimp, Penaeus monodon. Fish Shellfish Immunol. 17: 115–120.

2. APHA, AWWA and WEF. 1995. Standard Methods for Examination Water and Wastewater. 20th ed. United Book Press, Maryland. 1,220 p.

3. Balcázar, J.L., I.D. Blas, I. Ruiz-Zarzuela, D. Cunningham, D. Vendrell, and J.L. Múzquiz. 2006. Review: The role of probiotics in aquaculture. Vet. Microbiol. 114: 173–186.

4. Boyd, C.E. and A. Gross. 1998. Use of probiotics for improving soil and water quality in aquaculture ponds. In Flegel TW (ed), Advances in Shrimp Biotechnology. National Center for Genetic Engineering and Biotechnology, Bangkok.

5. Direkbusarakom, S., M. Yoshimizu, Y. Ezura, L. Ruangpan, and Y. Danayadol. 1997. Vibrio spp. the dominant flora in shrimp hatchery against some fish pathogenic viruses. Mar. Biotechnol. 6: 266–267.

6. Gatesoupe, F.-J. 1999. The use of probiotics in aquaculture. Aquacult. 180: 147– 165.

7. Gomes, L.C., R.P. Brinn, J.L. Marcon, L.A. Dantas, F.R. Brandão, J.S. de Abreu, P.E.M. Lemos, D.M. McComb, and B. Baldisserotto. 2009. Benefits of using the probiotic Efinol-L during transportation of cardinal tetra, Paracheirodona xelrodi (Schultz), in the Amazon. Aquacult. Res. 40: 157–165.

8. Gullian, M., F. Thompson, and J. Rodriguez. 2004. Selection of probiotic bacteria and study of their immune stimulatory effect in Penaeus vannamei. Aquacult. 233:1–14.

9. Hong, H.A., L.H. Duc, and S.M. Cutting. 2005. The use of bacterial spore formers as probiotics. FEMS Microbiol. Rev. 29:813–835.

10. Irianto, A., and B. Austin. 2002. Review: Probiotics in aquaculture. J. Fish Dis.25:633–642.

11. Jueliang. P., N. Chuchird, and C. Limsuwan. 2013. The effects of probiotics, β-1,3- glucan and organic acid on Pacific White Shrimp’s (Litopenaeus vannamei) immune system and survival upon challenge Vibrio harveyi. KU. Fish. Res. Bull. 37 (3): 25-37.

12. Karunasagar, I., S.K. Otta and K. Joshua. 1996. Applications of Vibrio vaccine in shrimp culture, Fishing Chimes 16: 49.

13. Moriarty, D.J. W. 1997. The role of microorganisms in aquaculture ponds. Aquaculture 151: 333–349.

14. Nelson, D.W. and L. E. Sommers. 1996. Total carbon, organic carbon and organic matter. In Sparks D. L., A. L. Page, P. A. Helmke, R. H. Loeppert, P. N. Soltanpour, M. A. Tabatabai, C. T. Johnston and M. E. Summers. SSSA. Book Series: 5 Method of Soil Analysis Part 3 Chemical Method. SSSA. USA. p.1123-1139.

15. Nimrat S, S. Suksawat, P. Maleeweach and V. Vuthiphandchai. 2008. Effect of different shrimp pond bottom soil treatments on the change of physical characteristics and pathogenic bacteria in pond bottom soil. Aquaculture, 285: 123-129.

16. Nogami, K., and M. Maeda. 1992. Bacteria as bio control agents for rearing larva of the crab Portumustri tuberculatus. Can. J. Fish. Aquaculture. Sci. 49:2373–2376.

17. Otta, S.K., I. Karunasagar, and I. Karunasagar. 1999. Bacterial flora associated with shrimp culture ponds growing Penaeus monodon. J. Aquacult. Trop. 14: 309–318.

18. Panichakornkul, L. 2007. Effects of Paracoccus pantotrophus on Water Quality and Production of Pacific White Shrimp (Litopenaeus vannamei) Cultured in Low Salinity Water. Thesis of Master of Science (Fisheries Science). Department of Fisheries Biology, Kasetsart University, Bangkok. 104 p.

19. Porubcan, R.S. 1991. Reduction in chemical oxygen demand and improvement in Penaeus monodon yield in ponds inoculated with aerobic Bacillus bacteria. Program and Abstracts of the 22nd Annual Conference and Exposition, World Aquaculture Society, San Juan, Puerto Rico.

20. Rengpipat, S., S. Rukpratanporn, S. Piyatiratitivorakul, and P. Menasveta. 2000. Immunity enhancement in black tiger shrimp (Penaeus monodon) by a probiont bacterium (Bacillus S11). Aquacult. 191: 271–288.

21. Somboon, M., W. Purivirojkul, C. Limsuwan and N. Chuchird. 2012. Effect of Vibrio spp. in white feces infected shrimp in Chanthaburi, Thailand. KU. Fish. Res. Bull. 36 (1): 7-15.

22. Steel, R. G. D. and J. H. Torrie. 1980. Principles and Procedures of Statistics: A Biometerial Approach. 2nd ed. McGraw-Hill Publishing Co., New York, USA.

23. Strickland and Parson. 1972. A Practical Handbook of Seawater Analysis. 2nd ed. Fisheries Research Board of Canada. 310 p.

24. Suhendra, T., J. Handoko, D. Octaviano, R.S. Porubcan, and P.A. Douillet. 1997. Management with bacterial probiotics for Vibrio and virus control in an Indonesian shrimp farm, pp. 201-202. In Proceeding of the IV Central American aquaculture symposium: Sustainable culture of shrimp and tilapia.

25. Tanasomwang, V., T. Nakai, Y. Nishimura, and K. Muroga. 1998. Vibrio-inhibiting marine bacteria isolated from black tiger shrimp hatchery. Fish Pathol. 33: 459–466.

26. Verschuere, L., G. Rombaut, P. Sorgeloos, and W. Verstraete. 2000. Probiotic bacteria as biological control agents in aquaculture. Microbiol. Mol. Biol. Rev. 64: 655–671.

27. Ziaei-Nejad, S., M.H. Rezaei, G.A. Takami, D.L. Lovett, A.-R.Mirvaghefi, and M. Shakouri. 2006. The effect of Bacillus spp. bacteria used as probiotics on digestive enzyme activity, survival and growth in the Indian white shrimp Fenneropenaeus indicus. Aquacult. 252: 516–524.

28. Zhou, X.X., Y.B. Wang, and W.F. Li. 2009. Effect of probiotic on larvae shrimp (Penaeus vannamei) based on water quality, survival rate and digestive enzyme activities. Aquacult. 287: 349–353.