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Estimation of first maturity size of dolphinfish Coryphaena hippurus Linnaeus in the Molucca Sea, North Sulawesi, Indonesia

  • Pratasik, Silvester Benny (Department of Fisheries Resources Management, Faculty of Fisheries and Marine Sciences, Sam Ratulangi University) ;
  • Tilaar, Ferdinand Frans (Department of Fisheries Resources Management, Faculty of Fisheries and Marine Sciences, Sam Ratulangi University) ;
  • Salaki, Meiske Sofie (Department of Fisheries Resources Management, Faculty of Fisheries and Marine Sciences, Sam Ratulangi University)
  • 투고 : 2021.11.17
  • 심사 : 2022.05.05
  • 발행 : 2022.06.30

초록

This study aims to estimate the smallest size of mature individuals that can be exploited. Fish samples of Coryphaena hippurus were collected from Kalinaun fishermen's catches in the Molucca Sea. They were sexed, then the fork length (FL) and maturity stage were recorded. Results showed that C. hippurus in the Molucca Sea had a sex ratio of 1:1.94 (p < 0.05). Males had a length range of 499-831 mm FL and females were in the length range of 481-813 mm FL. Size at first maturity was estimated as 529 mm FL for males with a range of 475-588 mm FL and 405 mm FL for females. This study provided basic information for future management needs of the dolphinfish, especially in the Molucca Sea.

키워드

참고문헌

  1. Beardsley GL Jr. Age, growth, and reproduction of the dolphin, Coryphaena hippurus, in the straits of Florida. Copeia. 1967;1967:441-51. https://doi.org/10.2307/1442132
  2. Benjamin D, Kurup BM. Stock assessment of dolphinfish, Coryphaena hippurus (Linnaeus, 1758) off southwest coast of India. J Mar Biol Assoc India. 2012;54:95-9.
  3. Benseddik AB, Besbes R, Missaoui H, Najai SE, Jarboui O. Reproductive dynamics and fecundity of Coryphaena hippurus (Linnaeus, 1758) in the Eastern Tunisian coast (Central Mediterranean). Curr Trends Fish Aquac. 2019.
  4. Brown P, Sivakumaran KP, Stoessel D, Giles A, Green C, Walker T. Carp population biology in Victoria. Victoria: Marine and Freshwater Resources Institute, Department of Primary Industries, Snobs Creek; 2003. Report No.: 56.
  5. Carlson AK, Rubenstein DI, Levin SA. Linking multiscalar fisheries using metacoupling models. Front Mar Sci. 2020;7:614. https://doi.org/10.3389/fmars.2020.00614
  6. Chodrijah U, Nugroho D. Size structure and population parameters of dolphinfish (Coryphaena hippurus Linnaeus, 1758) in the Celebes Sea. BAWAL. 2016;8:147-58.
  7. Das M, Dewan S, Debnath SC. Studies on fecundity of Heteropneustes fossilis (Bloch) in a mini pond of Bangladesh Agricultural University, Mymensingh. Bangladesh J Agric Sci. 1989;16:1-6.
  8. Effendie MI. Fisheries biology. Bogor: Yayasan Dewi Sri; 2002. p. 163.
  9. Farley J, Davies C, Hillary R, Eveson P. Estimating size/age at of southern bluefin tuna. In: Proceedings of the 18th Meeting of the Scientific Committee; 2013; Canberra, Australia.
  10. Freshwater C, Holt KR, Huanga AM, Holt CA. Benefits and limitations of increasing the stock-selectivity of Pacific salmon fisheries. Fish Res. 2020;226:105509. https://doi.org/10.1016/j.fishres.2020.105509
  11. Galimany E, Baeta M, Durfort M, Lleonart J, Ramon M. Reproduction and size at first maturity in a Mediterranean exploited Callista chione bivalve bed. Sci Mar. 2015;79:233-42. https://doi.org/10.3989/scimar.04155.13A
  12. Goldstein J, Heppell S, Cooper A, Brault S, Lutcavage M. Reproductive status and body condition of Atlantic bluefin tuna in the Gulf of Maine, 2000-2002. Mar Biol. 2007;151:2063-75. https://doi.org/10.1007/s00227-007-0638-8
  13. Hutchings JA. Life histories of fish. In: Hart P, Reynolds J, editors. Handbook of fish biology and fisheries. Oxford: Blackwell Science; 2002. p. 149-74.
  14. Hutchings JA, Myers RA. Effect of age on the seasonality of maturation and spawning of Atlantic cod, Gadus morhua, in the Northwest Atlantic. Can J Fish Aquat Sci. 1993;50:2468-74. https://doi.org/10.1139/f93-271
  15. Hutchings JA, Reynolds JD. Marine fish population collapses: consequences for recovery and extinction risk. BioScience. 2004;54:297-309. https://doi.org/10.1641/0006-3568(2004)054[0297:MFPCCF]2.0.CO;2
  16. Ilkyaz AT, Metin G, Soykan O, Kinacigil HT. Spawning season, first maturity length and age of 21 fish species from the Central Aegean Sea, Turkey. Turk J Fish Aquat Sci. 2018;18:211-6.
  17. Indian Ocean Tuna Commission [IOTC]. Review of the statistical data and fishery trends for tropical tunas. In: Proceedings of the Fifteenth Working Party on Tropical Tunas; 2013; San Sebastian, Spain.
  18. Jonsson B, Jonsson N. Early environment influences later performance in fishes. J Fish Biol. 2014;85:151-88. https://doi.org/10.1111/jfb.12432
  19. Karna SK, Panda S. Growth estimation and length at maturity of a commercially important fish species i.e., Dayscieaena albida (Boroga) in Chilika Lagoon, India. Eur J Exp Biol. 2011;1:84-91.
  20. Langangen O, Ohlberger J, Stige LC, Durant JM, Ravagnan E, Stenseth NC, et al. Cascading effects of mass mortality events in Arctic marine communities. Glob Change Biol. 2017;23:283-92. https://doi.org/10.1111/gcb.13344
  21. Lin SJ, Chiang WC, Musyl MK, Wang SP, Su NJ, Chang QX, et al. Movements and habitat use of dolphinfish (Coryphaena hippurus) in the East China Sea. Sustainability. 2020;12:5793. https://doi.org/10.3390/su12145793
  22. Malone MA, Buck KM, Moreno G, Sancho G. Diet of three large pelagic fishes associated with drifting fish aggregating devices (DFADs) in the Western Equatorial Indian Ocean. Anim Biodivers Conserv. 2011;34:287-94. https://doi.org/10.32800/abc.2011.34.0287
  23. McIntyre TM, Hutchings JA. Small-scale temporal and spatial variation in Atlantic cod (Gadus morhua) life history. Can J Fish Aquat Sci. 2003;60:1111-21. https://doi.org/10.1139/f03-090
  24. Nandikeswari R. Size at first maturity and maturity stages of Terapon jarbua (Forsskal, 1775) from Pondicherry coast, India. J Fish. 2016;4:385-9. https://doi.org/10.17017/j.fish.118
  25. Olsen E, Hansen C, Nilsen I, Perryman H, Vikebo F. Ecological effects and ecosystem shifts caused by mass mortality events on early life stages of fish. Front Mar Sci. 2019;6:669. https://doi.org/10.3389/fmars.2019.00669
  26. Oxenford HA. Biology of the dolphinfish (Coryphaena hippurus) in the Western Central Atlantic: a review. Sci Mar. 1999; 63:277-301. https://doi.org/10.3989/scimar.1999.63n3-4303
  27. Palko BJ, Beardsley GL, Richards WJ. Synopsis of the biological data on dolphin-fishes, Coryphaena hippurus Linnaeus and Coryphaena equiselis Linnaeus. NOAA Tech Rep NMFS Circ. 1982;443.
  28. Peixoto S, Calazans N, Silva EF, Nole L, Soares R, Fredou FL. Reproductive cycle and size at first sexual maturity of the white shrimp Penaeus schmitti (Burkenroad, 1936) in northeastern Brazil. Lat Am J Aquat Res. 2018;46:1-9. https://doi.org/10.3856/vol46-issue1-fulltext-1
  29. Perle CR, Snyder S, Merten W, Simmons M, Dacey J, Rodriguez-Sanchez R, et al. Dolphinfish movements in the Eastern Pacific Ocean of Mexico using conventional and electronic tags. Anim Biotelemetry. 2020;8:30. https://doi.org/10.1186/s40317-020-00217-9
  30. Potoschi A, Renones O, Cannizzaro L. Sexual development, maturity and reproduction of dolphinfish (Coryphaena hippurus) in the Western and Central Mediterranean. Sci Mar. 1999;63:367-72. https://doi.org/10.3989/scimar.1999.63n3-4367
  31. Queensland East Coast Trochus Fishery [ECTF]. General effort review: sustainability of permitted species [Internet]. 2004 [cited 2021 Aug 4]. https://www.daf.qld.gov.au/__data/assets/pdf_file/0003/76629/StockAssessment-CTrawl-2004-Part9
  32. Rijnsdorp AD, Peck MA, Engelhard GH, Mollmann C, Pinnegar JK. Resolving the effect of climate change on fish populations. ICES J Mar Sci. 2009;66:1570-83. https://doi.org/10.1093/icesjms/fsp056
  33. Roa R, Ernst B, Tapia F. Estimation of size at sexual maturity: an evaluation of analytical and resampling procedures. Fish Bull. 1999;97:570-80.
  34. Schlenker LS, Faillettaz R, Stieglitz JD, Lam CH, Hoenig RH, Cox GK, et al. Remote predictions of mahi-mahi (Coryphaena hippurus) spawning in the open ocean using summarized accelerometry data. Front Mar Sci. 2021;8:626082. https://doi.org/10.3389/fmars.2021.626082
  35. Scott B, Marteinsdottir G, Wright P. Potential effects of maternal factors on spawning stock-recruitment relationships under varying fishing pressure. Can J Fish Aquat Sci. 1999;56:1882-90. https://doi.org/10.1139/f99-125
  36. Sturges HA. The choice of a class interval. J Am Stat Assoc. 1926;21:65-6. https://doi.org/10.1080/01621459.1926.10502161
  37. Taquet M, Dagorn L, Gaertner JC, Girard C, Aumerruddy R, Sancho G, et al. Behavior of dolphinfish (Coryphaena hippurus) around drifting FADs as observed from automated acoustic receivers. Aquat Living Resour. 2007;20:323-30. https://doi.org/10.1051/alr:2008008
  38. Tesfahun A. Overview of length-weight relationship, condition factor and size at first maturity of Nile tilapia Oreochromis niloticus (L.) in different water bodies of Ethiopia: a review. Greener J Biol Sci. 2018;8:21-8. https://doi.org/10.15580/GJBS.2018.3.060618077
  39. Udupe KS. Statistical method of estimating the size at first maturity in fishes. Fishbyte. 1986;4:8-10.
  40. Whitney NM, Taquet M, Brill RW, Girard C, Schwieterman GD, Dagorn L, et al. Swimming depth of dolphinfish (Coryphaena hippurus) associated and unassociated with fish aggregating devices. Fish Bull Natl Ocean Atmos Admin. 2016;114:426-34.