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Economic Appraisal of Using Genetics to Control Streptococcus Agalactiae in Nile Tilapia Under Cage and Pond Farming System in Malaysia

Overview
Journal Sci Rep
Specialty Science
Date 2022 May 24
PMID 35610248
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Abstract

Disease outbreaks have been seen as the major threat to sustainable aquaculture worldwide. Injectable vaccines have been one of the few strategies available to control the diseases, however, the adoption of this technology globally is limited. Genetic selection for disease resistance has been proposed as the alternative strategy in livestock and aquaculture. Economic analysis for such strategies is lacking and this study assesses the economic worth of using tilapia fingerlings resistant to Streptococcosis in both cage and pond production systems. The paper also assesses the profitability of paying the higher price for such fingerlings. Partial-budgeting was used to develop a stochastic simulation model that considers the benefits and costs associated with the adoption of tilapia fingerlings resistant to Streptococcosis at the farm level, in one production cycle. In both ponds and cage production systems, the use of genetically selected Streptococcus resistant tilapia fingerlings was found to be profitable where Streptococcus infection is prevalent. In the cages and ponds where Streptococcus related mortality was ≥ 10%, the Nile tilapia aquaculture was found to be profitable even if the amount paid for genetically selected Streptococcus resistant tilapia fingerlings was 100% higher than the amount paid for standard fingerlings.

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References
1.
Houston R, Bean T, Macqueen D, Gundappa M, Jin Y, Jenkins T . Harnessing genomics to fast-track genetic improvement in aquaculture. Nat Rev Genet. 2020; 21(7):389-409. DOI: 10.1038/s41576-020-0227-y. View

2.
Delphino M, Barone R, Leal C, Figueiredo H, Gardner I, Goncalves V . Economic appraisal of vaccination against Streptoccocus agalactiae in Nile tilapia farms in Brazil. Prev Vet Med. 2019; 162:131-135. DOI: 10.1016/j.prevetmed.2018.12.003. View

3.
Suebsong W, Poompuang S, Srisapoome P, Koonawootrittriron S, Luengnaruemitchai A, Johansen H . Selection response for Streptococcus agalactiae resistance in Nile tilapia Oreochromis niloticus. J Fish Dis. 2019; 42(11):1553-1562. DOI: 10.1111/jfd.13074. View

4.
Norris A . Application of genomics in salmon aquaculture breeding programs by Ashie Norris: Who knows where the genomic revolution will lead us?. Mar Genomics. 2017; 36:13-15. DOI: 10.1016/j.margen.2017.11.013. View

5.
Yanez J, Joshi R, Yoshida G . Genomics to accelerate genetic improvement in tilapia. Anim Genet. 2020; 51(5):658-674. DOI: 10.1111/age.12989. View