Growth of mediterranean young-of-the-year bluefin tuna thunnus thynnus (scombridae)regional differences and hatching periods

  1. Ana Gordoa 1
  2. Igaratza Fraile 2
  3. Haritz Arrizabalaga 2
  4. Nuria Raventós 1
  1. 1 Centro de Estudios Avanzados de Blanes (CEAB-CSIC)
  2. 2 AZTI Centro Tecnológico de Investigación Marina y Alimentaria
    info

    AZTI Centro Tecnológico de Investigación Marina y Alimentaria

    Pedernales, España

Revista:
Scientia Marina

ISSN: 0214-8358

Año de publicación: 2021

Volumen: 85

Número: 2

Páginas: 61-69

Tipo: Artículo

DOI: 10.3989/SCIMAR.05108.006 DIALNET GOOGLE SCHOLAR lock_openAcceso abierto editor

Otras publicaciones en: Scientia Marina

Resumen

Este estudio analiza las tasas de crecimiento de los alevines de atún rojo en el Mediterráneo. Se examinaron las posibles diferencias en las tasas de crecimiento entre diferentes años: 2013 y 2016 y diferentes regiones: oriental, central y occidental. Se determinó la edad de un total 134 ejemplares analizando la microestructura de los otolitos. Las tallas de los peces oscilaron entre 14,7 y 57 cm de longitud furcal, las edades estimadas variaron entre 45 y 192 días. Los modelos de crecimiento anual explicaron más del 90% de la variabilidad del crecimiento. Las diferencias observadas en las tasas de crecimiento entre 2013 (3,2 mm d–1) y 2016 (2,7 mm d–1) no fueron significativas, mientras que la tasa de crecimiento diaria fue significativamente más rápida en la región oriental (4,01 mm d–1) que en las regiones occidental (2,52 mm d–1) y central (2,75 mm d–1). Los periodos de eclosión de las larvas coincidieron con los periodos de desove conocidos, pero en las regiones central y oriental duraron más de lo que se había informado anteriormente. En la región central el periodo de eclosión mostró dos picos, a mediados de junio y a mediados de julio, lo que coincide con estudios anteriores que se-ñalan dos pulsos de desove distintos. Estos pulsos podrían deberse a la existencia de diferentes contingentes de BFT, los residentes del Mediterráneo y los migrantes del Atlántico, que desovarían en momentos diferentes, pero para apoyar esta hipótesis es necesario investigar más

Referencias bibliográficas

  • Abascal F.J., Medina A., De la Serna J.M., et al. 2016. Tracking bluefin tuna reproductive migration into the Mediterranean Sea with electronic pop-up satellite archival tags using two tagging procedures. Fish. Oceanogr. 25: 54-66.
  • Addis P., Secci M., Biancacci C., et al. 2016. Reproductive status of Atlantic bluefin tuna, Thunnus thynnus, during migration off the coast of Sardinia (western Mediterranean). Fish. Res. 181: 137-147.
  • Anderson J.T. 1988. A review of size dependent survival during pre-recruit stages of fishes in relation to recruitment. J. Northwest Atl. Fish. Sci. 8: 55-66.
  • Arai K., Graves J.E., Secor D.H.. 2020. Sub-annual cohort representation among young-of-the-year recruits of the western stock of Atlantic bluefin tuna. Fish. Res. 225: 105476.
  • Aranda G., Medina A., Santos A., et al. 2013. Evaluation of Atlantic bluefin tuna reproductive potential in the western Mediterranean Sea. J. Sea Res. 76: 154-160.
  • Arrizabalaga H., Arregui I., Medina A., et al. 2019. Life History and Migrations of Mediterranean Bluefin Tuna. In: Block B.A. (ed), The Future of Bluefin Tunas: Ecology, Fisheries Management, and Conservation, pp 67-93
  • Block B.A., Teo S.L., Walli A., et al. 2005. Electronic tagging and population structure of Atlantic bluefin tuna. Nature 434: 1121-1127.
  • Boustany A.M., Reeb C.A., Block B.A. 2008. Mitochondrial DNA and electronic tracking reveal population structure of Atlantic bluefin tuna (Thunnus thynnus). Mar. Biol. 156: 13-24.
  • Brothers E.B., Prince E.D., Lee D.W. 1983. Age and growth of young-of-the-year bluefin tuna, Thunnus thynnus, from otolith microstructure. NOAA Tech. Report NMFS 8: 49-59. Campana S.E. 1996. Year-class strength and growth rate in young Atlantic cod Gadus morhua. Mar. Ecol. Prog. Ser. 135: 21-26.
  • Carlsson J., McDowell J., Díaz-Jaimes P., et al. 2004. Microsatellite and mitochondrial DNA analyses of Atlantic bluefin tuna (Thunnus thynnus thynnus) population structure in the Mediterranean Sea. Mol. Ecol. 13: 3345-3356.
  • Cermeño P., Quílez-Badia G., Ospina-Alvarez A., et al. 2015. Electronic tagging of Atlantic bluefin tuna (Thunnus thynnus, L.) reveals habitat use and behaviors in the Mediterranean Sea. PLoS ONE 10: e0116638.
  • Corriero A., Desantis S., Deflorio M., et al. 2003. Histological investigation on the ovarian cycle of the bluefin tuna in the western and central Mediterranean. J. Fish. Biol. 63: 108-119.
  • D’Ortenzio F., Ribera d’Alcalà M. 2009. On the trophic regimes of the Mediterranean Sea: a satellite analysis. Biogeosciences 6: 139-148.
  • Di Natale A., Idrissi M. 2012. 2011 ICCAT Atlantic Wide Research Programme for bluefin tuna (GBYP). Coordination Detailed Activity Report For Phase 2. Collect. Vol. Sci. Pap. ICCAT 68: 176-207.
  • Di Natale A., Tensek S., Celona A., et al. 2017. Another peculiar situation for YOY of bluefin tuna (Thunnus thynnus) in the Mediterranean Sea in 2016. ICCAT Collect. Vol. Sci. Pap. 74: 2839-2849.
  • Duclerc J., Piccinetti C., Piccinetti Manfrin G., et al. 1974. Nouvelles donne sur la reproduction du thon rouge et d’autres espèces de thonidés en Méditerranée. Rapp. Comm. Int. Mer Médit 22: 37.
  • Fromentin J.M., Powers J.E. 2005. Atlantic bluefin tuna: population dynamics, ecology, fisheries and management. Fish Fish 6: 281-306.
  • Fromentin J.-M., Lopuszanski D. 2013. Migration, residency, and homing of bluefin tuna in the western Mediterranean Sea. ICES J. Mar. Sci. 71: 510-518.
  • Galuardi B., Royer F., Golet W., et al. 2010. Complex migration routes of Atlantic bluefin tuna (Thunnus thynnus) question current population structure paradigm. Can. J. Fish. Aquat. Sci. 67: 966-976.
  • García A., Alemany F., De la Serna J., et al. 2005. Preliminary results of the 2004 bluefin tuna larval surveys off different Mediterranean sites (Balearic Archipelago, Levantine Sea and the Sicilian Channel). ICCAT Col. Vol. Sci. Pap. 58: 1261-1270.
  • García A., Cortés D., Ramírez T., et al. 2006. First data on growth and nucleic acid and protein content of field-captured Mediterranean bluefin (Thunnus thynnus) and albacore (Thunnus alalunga) tuna larvae: a comparative study. Sci. Mar. 70: 67-78.
  • García A., Cortés D., Quintanilla J., et al. 2013. Climate-induced environmental conditions influencing interannual variability of Mediterranean bluefin (Thunnus thynnus) larval growth. Fish. Oceanogr. 22: 273-287.
  • Giovanardi O., Romanelli M. 2010. Preliminary note on tuna larvae in samples from the coasts of the southern-central Mediterranean Sea collected by the MV Arctic Sunrise in June/July 2008. ICCAT Col Vol Sci Pap 65: 740-743.
  • Goldstein J., Heppell S., Cooper A., et al. 2007. Reproductive status and body condition of Atlantic bluefin tuna in the Gulf of Maine, 2000-2002. Mar. Biol. 151: 2063-2075.
  • Gordoa A., Carreras G. 2014. Determination of Temporal Spawning Patterns and Hatching Time in Response to Temperature of Atlantic Bluefin Tuna (Thunnus thynnus) in the Western Mediterranean. PLoS ONE 9: e90691.
  • Gunn J.S., Clear N.P., Carter T.I., et al. 2008. Age and growth in southern bluefin tuna, Thunnus maccoyii (Castelnau): direct estimation from otoliths, scales and vertebrae. Fish. Res. 92: 207-220.
  • Hamad N., Millot C., Taupier-Letage I. 2005. A new hypothesis about the surface circulation in the eastern basin of the Mediterranean Sea. Prog. Oceanogr. 66: 287-298.
  • Heath M. 1992. Field investigations of the early life stages of marine fish. Pages 1-174 Advances in Mar. Biol. Elsevier.
  • Heinisch G., Corriero A., Medina A., et al., 2008. Spatial-temporal pattern of bluefin tuna (Thunnus thynnus L. 1758) gonad maturation across the Mediterranean Sea. Mar. Biol. 154: 623-630.
  • Ishihara T., Watai M., Ohshimo S., et al. 2019. Differences in larval growth of Pacific bluefin tuna (Thunnus orientalis) between two spawning areas, and an evaluation of the growth-dependent mortality hypothesis. Environ Biol Fishes 102: 581-594.
  • Itoh T., Shiina Y., Tsuji S., et al. 2000. Otolith daily increment formation in laboratory reared larval and juvenile bluefin tuna Thunnus thynnus. Fish Sci 66: 834-839.
  • Jenkins G.P., Davis T.L. 1990. Age, growth rate, and growth trajectory determined from otolith microstructure of southern bluefin tuna Thunnus maccoyii larvae. Mar. Ecol. Prog. Ser. 63: 93-104.
  • Karakulak S., Oray I., Corriero A., et al. 2004. Evidence of a spawning area for the bluefin tuna (Thunnus thynnus L.) in the eastern Mediterranean. J. Appl. Ichthyol. 20: 318-320.
  • La Mesa M., La Mesa G., Micalizzi M. 2005. Age and growth of madeira scorpionfish, Scorpaena maderensis Valenciennes, 1833, in the central Mediterranean. Fish. Res. 74: 265-272.
  • Le Pape O., Bonhommeau S. 2015. The food limitation hypothesis for juvenile marine fish. Fish Fish 16: 373-398.
  • Lutcavage M.E., Brill R.W., Skomal G.B., et al. 1999. Results of pop-up satellite tagging of spawning size class fish in the Gulf of Maine: do North Atlantic bluefin tuna spawn in the mid-Atlantic? Can. J. Fish. Aquat. Sci. 56: 173-177.
  • Medina A., Abascal F., Megina C., et al. 2002. Stereological assessment of the reproductive status of female Atlantic northern bluefin tuna during migration to Mediterranean spawning grounds through the Strait of Gibraltar. J. Fish. Biol. 60: 203-217.
  • Meekan M.G., Fortier L. 1996. Selection for fast growth during the larval life of Atlantic cod Gadus morhua on the Scotian Shelf. Mar. Ecol. Prog. Ser. 137: 25-37.
  • Megalofonou P. 2006. Comparison of otolith growth and morphology with somatic growth and age in young-of-the-year bluefin tuna. J. Fish. Biol. 68: 1867-1878.
  • Millot C. 1999. Circulation in the western Mediterranean Sea. J. Mar. Syst. 20: 423-442.
  • Morales-Nin B., Fortuño J.M. 1990. Mercury body burden and otolith characteristics of bluefin tuna from the northwest Mediterranean (Balearic Sea). Sci. Mar. 54: 277-285.
  • Nishida T., Tsuji S., Segawa K. 1998. Spatial data analyses of Atlantic bluefin tuna larval surveys in the 1994 ICCAT BYP. ICCAT Col. Vol. Sci. Pap. 48: 107-110.
  • Oray I., Karakulak F. 2005. Further evidence of spawning of bluefin tuna (Thunnus thynnus L., 1758) and the tuna species (Auxis rochei Ris., 1810, Euthynnus alletteratus Raf., 1810) in the eastern Mediterranean Sea: preliminary results of TUNALEV larval survey in 2004. J. Appl. Ichthyol. 21: 236-240.
  • Relini M., G. Palandri, Torchia G. 1995. Tagging of Thunnus thynnus juveniles in the Ligurian Sea, Autumn 1994. ICCAT Col Vol Sci Pap ICCAT 44: 378.
  • Renzoni A., Bernhard M., Sara R., et al. 1978. Comparison between the Hg body burden of Thunnus thynnus from the Mediterranean and the Atlantic. IV Journées Etud. Pollutions.
  • Riccioni G., Landi M., Ferrara G., et al. 2010. Spatio-temporal population structuring and genetic diversity retention in depleted Atlantic bluefin tuna of the Mediterranean Sea. Proc. Nat. Acad. Sci. 107: 2102-2107.
  • Richardson D.E., Marancik K.E., Guyon J.R., et al. 2016. Discovery of a spawning ground reveals diverse migration strategies in Atlantic bluefin tuna (Thunnus thynnus). Proc. Nat. Acad. Sci. 113: 3299-3304.
  • Rodriguez J.M., Johnstone C. Lozano-Peral D. 2019. Is the Southern Bay of Biscay a spawning ground for Thunnus thynnus and Sarda sarda? ICCAT SCRS/2019/201.
  • Rodríguez-Ezpeleta N., Díaz-Arce N., Walter J.F., et al. 2019. Determining natal origin for improved management of Atlantic bluefin tuna. Front. Ecol. Environ. 17: 439-444
  • Rooker J.R., Secor D.H., Zdanowicz V.S., et al. 2003. Identification of Atlantic bluefin tuna (Thunnus thynnus) stocks from putative nurseries using otolith chemistry. Fish. Oceanogr. 12: 75-84.
  • Rooker J.R., Secor D.H., De Metrio G., et al. 2008. Natal homing and connectivity in Atlantic bluefin tuna populations. Science 322: 742-744.
  • Rooker J.R., Arrizabalaga H., Fraile I., et al. 2014. Crossing the line: migratory and homing behaviors of Atlantic bluefin tuna. Mar. Ecol. Prog. Ser. 504: 265-276.
  • Santamaria N., Bello G., Corriero A., et al. 2009. Age and growth of Atlantic bluefin tuna, Thunnus thynnus (Osteichthyes: Thunnidae), in the Mediterranean Sea. J. Appl. Ichthyol. 25: 38-45.
  • Sanzo L. 1932. Uova e primi stadi larvali di tonno (Orcynus thynnus Ltkn.). Mem. R. Com. Talass. Ital. 189: 1-16.
  • Satoh K., Tanaka Y., Masujima M., et al. 2013. Relationship between the growth and survival of larval Pacific bluefin tuna, Thunnus orientalis. Mar. Biol. 160: 691-702.
  • Schaefer K.M. 2001. Reproductive biology of tunas. Fish Physiol. 19: 225-270.
  • Shaltout M., Omstedt A. 2014. Recent sea surface temperature trends and future scenarios for the Mediterranean Sea. Oceanologia 56: 411-443.
  • Skliris N., Sofianos S., Gkanasos A., et al. 2012. Decadal scale variability of sea surface temperature in the Mediterranean Sea in relation to atmospheric variability. Ocean Dyn. 62: 13-30.
  • Susca V., Corriero A., Deflorio M., et al. 2001. New results on the reproductive biology of the bluefin tuna (Thunnus thynnus) in the Mediterranean. ICCAT Col Vol Sci Pap 52: 745-751.
  • Tanaka Y., Satoh K., Iwahashi M., et al. 2006. Growth-dependent recruitment of Pacific bluefin tuna Thunnus orientalis in the northwestern Pacific Ocean. Mar. Ecol. Prog. Ser. 319: 225-235.
  • Teo S.L., Boustany A.M., Block B.A. 2007. Oceanographic preferences of Atlantic bluefin tuna, Thunnus thynnus, on their Gulf of Mexico breeding grounds. Mar. Biol. 152: 1105-1119.
  • Viñas J., Pla C., Tawil M., et al. 2003. Mitochondrial genetic characterization of bluefin tuna (Thunnus thynnus) from three Mediterranean (Libya, Malta, Tunisia); and one Atlantic locations (Gulf of Cadiz). ICCAT Col Vol Sci Pap 55: 1282-1288.
  • Viñas J., Gordoa A., Fernández-Cebrián R., et al. 2011. Facts and uncertainties about the genetic population structure of Atlantic bluefin tuna (Thunnus thynnus) in the Mediterranean. Implications for fishery management. Rev. Fish Biol. Fish. 21: 527-541.
  • Walli A., Teo S.L., Boustany A., et al. 2009. Seasonal movements, aggregations and diving behavior of Atlantic bluefin tuna (Thunnus thynnus) revealed with archival tags. PLoS ONE 4: e6151.
  • Watai M., Ishihara T., Abe O., et al. 2017. Evaluation of growth-dependent survival during early stages of Pacific bluefin tuna using otolith microstructure analysis. Mar. Freshw. Res. 68: 2008-2017.