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Comparative assessment of age, growth and food habit of the black-chinned tilapia, Sarotherodon melanotheron (Rüppell, 1852), from a closed and open lagoon, Ghana

  • Received : 2019.08.05
  • Accepted : 2019.12.03
  • Published : 2019.12.31

Abstract

Background: The black-chinned tilapia, Sarotherodon melanotheron, is the most abundant fish species in the Nakwa (an open lagoon) and Brenu (a closed lagoon) in the Central Region of Ghana. Aspects of the life history characteristics and the ecology of the fish populations in both lagoons were studied to assess the bio-ecological status of this important resource. Methods: Fish samples were obtained from fishermen that fish on the Nakwa and Brenu lagoons using cast, drag and gill nets. The age of the fish was assessed from otoliths analysis and its growth modelled following the von Bertalanffy growth function. Morphometric characteristics of the fish populations were analysed using power regression and ANOVA for parameters comparisons, and Student's t test to determine whether species grew isometrically. The percentage occurrence method was used to analyse the stomach contents of the fish. Results: A total of 382 fish samples from both lagoons were measured, comprising 209 from Nakwa lagoon and 176 from Brenu lagoon. The size and weight of fish samples ranged between 3.9-11.5 cm total length and 1.0-27.3 g for Nakwa Lagoon and 5.6-12.8 cm total length and 3.2-29.8 g for the Brenu Lagoon. The estimated von Bertalanffy growth parameters were L∞ = 12.04 cm and K = 2.76/year for the Nakwa Lagoon samples and L∞ = 13.44 cm and K = 3.27/year for Brenu Lagoon samples. Daily otolith incremental rate ranged from 0.01-0.03 mm per day to 0.01-0.02 mm per day for Nakwa and Brenu lagoons, respectively. Stomach content analysis of the fish samples revealed that the species are planktivorous and the range of food varied between the lagoons. Green algae were the most prevalent food item in the stomachs of the fish samples from Nakwa with the frequency of 69% whilst diatoms (80.5%) were most prevalent phytoplanktonic food item for the fish in Brenu lagoon. Conclusions: The estimates of asymptotic length for the species in both lagoons are close to known values of the species length at first sexual maturity and points to intensive fishing pressure. As a consequence, a comprehensive sample-based survey is required in both lagoons to derive estimates of management reference points. The results of the stomach content analysis are beneficial to the construction of diet matrix for ecosystem models of the two systems.

Keywords

References

  1. Abobi SM. Weight-length models and relative condition factors of nine (9) freshwater fish species from the Yapei Stretch of the White Volta, Ghana. Elixir Appl Zool. 2015;79:30427-31.
  2. Abowei J, Davies O, Eli A. Study of the length-weight relationship and condition factor of five fish species from Nkoro River, Niger Delta, Nigeria. Curr Res J Biol Sci. 2009;1:94-8.
  3. Aguilera B, Catalan IA, Palomera I, Olivar MP. Otolith growth of European sea bass (Dicentrarchus labrax L.) larvae fed with constant or varying food levels. Scientia Marina. 2009;73:173-82.
  4. Ayoade A, Ikulala A. Length weight relationship, condition factor and stomach contents of Hemichromis bimaculatus, Sarotherodon melanotheron and Chromidotilapia guentheri (Perciformes: Cichlidae) in Eleiyele Lake, Southwestern Nigeria. Revista de biologia tropical. 2007;55:969-77.
  5. Bannerman P, Quartey R. Report on the observations of commercial light fishing operation in Ghana. Tema: The Marine Fisheries Research Division (MFRD); 2004.
  6. Blay J, Asabere-Ameyaw A. Assessment of the fishery of a stunted population of the cichlid, Sarotherodon melanotheron (Ruppel), in a "closed" lagoon in Ghana. J Appl Ichthyology. 1993;9:1-11. https://doi.org/10.1111/j.1439-0426.1993.tb00382.x
  7. Campana S, Jones C (1992) Analysis of otolith microstructure data. In: Otolith microstructure examination and analysis.(Eds DK Stevenson and SE Campana.) pp. 73-100. Canadian Special Publication of Fisheries and Aquatic Sciences 117.
  8. Dankwa H, Shenker J, Lin J, Ofori-Danson P, Ntiamoa-Baidu Y. Fisheries of two tropical lagoons in Ghana, West Africa. Fisheries Manage Ecol. 2004;11:379-86. https://doi.org/10.1111/j.1365-2400.2004.00406.x
  9. Dankwa HR, Quarcoopome T, Owiredu SA, Amedorme E. State of fish and fisheries of Fosu Lagoon, Ghana. Int J Fisheries Aquat Stud. 2016;4:259-64.
  10. Davies-Vollum KS, Zhang Z, Agyekumhene A. Impacts of lagoon opening and implications for coastal management: case study from Muni-Pomadze lagoon, Ghana. J Coastal Conserv. 2019;23:293-301. https://doi.org/10.1007/s11852-018-0658-1
  11. Ekau W, Blay J. Validation of daily increment deposition and early development in the otoliths of Sarotherodon melanotheron. J Fish Biol. 2000;57:1539-49. https://doi.org/10.1006/jfbi.2000.1412
  12. Entsua-Mensah M, Ofori-Danson P, Koranteng K. Management issues for the sustainable use of lagoon fish resources. In: Biodiversity and sustainable use of fish in the coastal zone, ICLARM Conference Proceedings; 2000. p. 24-7.
  13. Fowler AJ. Validation of annual growth increments in the otoliths of a small, tropical coral reef fish. Marine Ecology Progress Series. 1990:25-38.
  14. Fryer G, Iles TD. Cichlid fishes of the great lakes of Africa. Edinburgh: Oliver and Boyd, Edinburg, Scotland; 1972.
  15. Gauldie R. A measure of metabolism in fish otoliths. Comparative Biochemistry and Physiology Part A: Physiology. 1990;97:475-80. https://doi.org/10.1016/0300-9629(90)90113-7
  16. Gayanillo F, Saparre P, Pauly D. FAOICLARM stock assessment tools II (FiSAT II). Rome: FAO Computerized information series (Fisheries); 2005.
  17. Geffen A. Otolith ring deposition in relation to growth rate in herring (Clupea harengus) and turbot (Scophthalmus maximus) larvae. Marine Biology. 1982;71:317-26. https://doi.org/10.1007/BF00397048
  18. Isaac VJ (1990) The accuracy of some length-based methods for fish population studies. WorldFish.
  19. Jimenez-Badillo L. Age-growth models for tilapia Oreochromis aureus (Perciformes, Cichlidae) of the Infiernillo reservoir, Mexico and reproductive behaviour. Revista de biologia tropical. 2006;54:577-88. https://doi.org/10.15517/rbt.v54i2.13923
  20. Kone T, Teugels GG. Food habits of brackish water tilapia Sarotherodon melanotheron in riverine and lacustrine environments of a West African coastal basin. Hydrobiologia. 2003;490:75-85. https://doi.org/10.1023/A:1023410528580
  21. Koranteng K, Ofori-Danson P, Entsua-Mensah M. Fish and fisheries of the Muni lagoon in Ghana, West Africa. Biodivers Conserv. 2000;9:487-99. https://doi.org/10.1023/A:1008903813222
  22. Kumolu-Johnson C, Ndimele P. Length-weight relationships and condition factors of twenty-one fish species in Ologe Lagoon, Lagos, Nigeria. Asian J Agric Sci. 2010;2:174-9.
  23. Labropoulou M, Papaconstantinou C. Comparison of otolith growth and somatic growth in two macrourid fishes. Fisheries Res. 2000;46:177-88. https://doi.org/10.1016/S0165-7836(00)00144-2
  24. Lazard J. Transferts de poissons et developpement de la production piscicole: exemple de trois pays d'Afrique subsaharienne; 1990.
  25. Legendre M, Ecoutin J-M. Suitability of brackish water tilapia species from the Ivory Coast for lagoon aquaculture. I-Reproduction. Aquat Living Resour. 1989;2:71-9. https://doi.org/10.1051/alr:1989009
  26. Massou A, Panfili J, Lae R, Baroiller J-F, Mikolasek O, Fontenelle G, Bail PY. Effects of different food restrictions on somatic and otolith growth in Nile tilapia reared under controlled conditions. J Fish Biol. 2002;60:1093-104. https://doi.org/10.1006/jfbi.2002.1917
  27. McCormick M, Molony B. Effects of feeding history on the growth characteristics of a reef fish at settlement. Mar Biol. 1992;114:165-73. https://doi.org/10.1007/BF00350866
  28. MoFAD. National Fisheries Management Plan, Government of Ghana; 2015. p. 48.
  29. Molony B. Episodes of starvation are recorded in the otoliths of juvenile Ambassis vachelli (Chandidae), a tropical estuarine fish. Mar Biol. 1996;125:439-46. https://doi.org/10.1007/bf00353256
  30. Myers P, Espinosa R, Parr CS, Jones T, Hammond GS, Dewey TA (2018) The Animal Diversity Web (online). Accessed at http://animaldiversity.org.
  31. Ndimele P, Kumolu-Johnson C, Aladetohun N, Ayorinde O. Length-weight relationship, condition factor and dietary composition of Sarotherodon melanotheron, Ruppell, 1852 (Pisces: cichlidae) in Ologe Lagoon, Lagos, Nigeria. Agric Biol J North Am. 2010;1:584-90.
  32. Ofori-Danson P, Kumi GN (2006) Food and feeding habit of Sarotherodon melanotheron, Ruppell, 1852 (Pisces: Cichlidae) in Sakumo Lagoon, Ghana. West African Journal of Applied Ecology 10.
  33. Ogle D. Introductory fisheries analyses with R: CRC Press; 2016.
  34. Panfili J, Mbow A, Durand J-D, Diop K, Diouf K, Thior D, Ndiaye P, Lae R. Influence of salinity on the life-history traits of the West African black-chinned tilapia (Sarotherodon melanotheron): comparison between the Gambia and Saloum estuaries. Aquat Living Resour. 2004;17:65-74. https://doi.org/10.1051/alr:2004002
  35. Panfili J, Tomas J. Validation of age estimation and back-calculation of fish length based on otolith microstructures in tilapias (Pisces, Cichlidae). Fishery Bull. 2001;99:139.
  36. Pannella G. Fish otoliths: daily growth layers and periodical patterns. Science. 1971;173:1124-7. https://doi.org/10.1126/science.173.4002.1124
  37. Pauly D, Munro J (1984) Once more on the comparison of growth in fish and invertebrates. Fishbyte (Philippines).
  38. R CT (2019) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. https://www.R-project.org/.
  39. Saliu J. Observation on the condition factor of Brycinus nurse (Pisces: Cypriniformes, Characidae) from Asa Reservoir, Ilorin, Nigeria. Trop Freshwater Biol. 2001;10:9-17. https://doi.org/10.4314/tfb.v10i1.20837
  40. Simon K, Mazlan A, Samat A, Zaidi C, Aziz A. Size, growth and age of two congeneric archer fishes (Toxotes jaculatrix Pallas, 1767 and Toxotes chatareus Hamilton, 1822) inhabiting Malaysian coastal waters. Sains Malaysiana. 2010;39:697-704.
  41. Smylie M, Shervette V, McDonough C. Age, growth, and reproduction in two coastal populations of Longnose Gars. Trans Am Fisheries Soc. 2016;145:120-35. https://doi.org/10.1080/00028487.2015.1111256
  42. Sokal RR, Rohlf FJ. Introduction to biostatistics. New York; 1987.
  43. Wade J. The relationship between temperature, food intake and growth of brown trout, Salmon trutta (L.) fed natural and artificial pelleted diet in earth ponds. J Aquat Sci. 1992;7:59-71.
  44. Waldron ME, Kerstan M. Age validation in horse mackerel (Trachurus trachurus) otoliths. ICES J Mar Sci. 2001;58:806-13. https://doi.org/10.1006/jmsc.2001.1071
  45. Yankson K. Gonad maturation and sexuality in the West African bloody cockle, Anadara senilis (L.). J Molluscan Stud. 1982;48:294-301. https://doi.org/10.1093/oxfordjournals.mollus.a065651

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