Published February 5, 2024 | Version v1

Otolith as a tool to differentiate juveniles of two species Centropomidae

Description

Carvalho, Barbara Maichak de, Neto, Renato Luiz Bot, Júnior, Roberto Schwarz, Spach, Henry Louis, Volpedo, Alejandra Vanina (2024): Otolith as a tool to differentiate juveniles of two species Centropomidae. Papéis Avulsos de Zoologia 64: 1-7, DOI: 10.11606/1807-0205/2024.64.007, URL: https://www.revistas.usp.br/paz/article/view/215772

Files

source.pdf

Files (921.2 kB)

Name Size Download all
md5:75785e93af8a83f198726631d1a1165e
921.2 kB Preview Download

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:7578FF93FF8AFFF198726631FFA1165E

References

  • Assis, C.A. 2003. The lagenar otoliths of teleosts: their morphology and its application in species identification, phylogeny and systematics. Journal of Fish Biology, 62(6): 1268-1295. https://doi.org/10.1046/j.1095- 8649.2003.00106.x.
  • Assis, I.O.; Silva, V.E.L.; Souto-Vieira, D.; Lozano, A.P.; Volpedo, A.V. & Fabre, N.N. 2020. Ecomorphological patterns in otoliths of tropical fishes: assessing trophic groups and depth strata preference by shape. Environmental Biology of Fishes, 103(4): 349-361. https://doi.org/10.1007/ s10641-020-00961-0.
  • Avigliano, E.; Martinez, C.F.R. & Volpedo, A.V. 2014. Combined use of otolith microchemistry and morphometry as indicators of the habitat of the silverside (Odontesthes bonariensis) in a freshwater-estuarine environment. Fisheries Research, 149: 55-60. https://doi.org/10.1016/j.fishres.2013.09.013.
  • Bezerra, B.; Silva, L.L.; Santos-Silva, C.M. & Carvalho, G.G. 2019. Changes of precipitation extremes indices in Sao Francisco River Basin, Brazil from 1947 to 2012. Theoretical and Applied Climatology, 135(1-2): 565-576. https://doi.org/10.1007/s00704-018-2396-6.
  • Bot Neto, R.L.; Carvalho, B.M.; Schwarz Junior, R. & Spach, H.L. 2020. Ontogenetic variation in the sagitta otolith of Centropomus undecimalis (Actinopterygii: Perciformes: Centropomidae) in a tropical estuary. Acta Ichthyologica et Piscatoria, 50(4): 433-443. https://doi.org/10.3750/ AIEP/03014.
  • Bot Neto,R.L.; Cattani,A.P.;Spach,H.L.; Contente,R.F.;Cardoso,O.R.; Marion, C. & Schwarz Junior, R. 2023. Patterns in composition and occurrence of the fish fauna in shallow areas of the Sao Francisco River mouth. Biota Neotropica, 23(2):1-16, https://doi.org/10.1590/1676-0611- bn-2022-1387.
  • Brenha-Nunes, M.R.; Santificetur, C.; Conversani, V.R.M.; Giaretta, M.B.; Rossi-Wongtschowski, C.L.D.B. & Siliprandi, C.C. 2016. Atlas of marine bony fish otoliths (sagittae) of southeastern-southern Brazil Part IV: Perciformes (Centropomidae, Acropomatidae, Serranidae, Priacanthidae, Malacanthidae, Pomatomidae, Carangidae, Lutjanidae, Gerreidae and Haemulidae). Brazilian Journal of Oceanography, 64(Sp.1): 23-75. https://doi.org/10.1590/S1679-875920161100064(sp1).
  • Campana, S.E. 1999. Chemistry and composition of fish otoliths: pathways, mechanisms and applications. Marine Ecology Progress Series, 188: 263-297. https://doi.org/10.3354/meps188263.
  • Carvalho,B.M.; Spach,H.L.; Vaz-dos-Santos,A.M. & Volpedo,A.V. 2019. Otolith shape index: is it a tool for trophic ecology studies? Journal of the Marine Biological Association of the United Kingdom, 99(7): 1675-1682. https://doi.org/10.1017/S0025315419000729.
  • Carvalho, B.M.; Volpedo, A.V. & Favaro, L.F. 2020. Ontogenetic and sexual variation in the sagitta otolith of Menticirrhus americanus (Teleostei;Sciaenidae) (Linnaeus, 1758) in a subtropical environment. Papeis Avulsos de Zoologia, 60(9): 1-12, e20206009. https://doi.org/10.11606/1807- 0205/2020.60.09.
  • Carvalho-Filho, A.; Oliveira,J.; Soares,C. & Araripe J. 2019. A new species of snook, Centropomus (Teleostei: Centropomidae), from northern South America, with notes on the geographic distribution of other species of the genus. Zootaxa, 4671: 81-92. https://doi.org/10.11646/zootaxa.4671.1.6.
  • Cruz,A.& Lombarte,A.2004.Otolith size and its relationship with colour patterns and sound production. Journal of Fish Biology, 65(6): 1512-1525. https://doi.org/10.1111/j.0022-1112.2004.00558.x.
  • Daros, F.A.; Spach, H.L. & Correia, A.T. 2016. Habitat residency and movement patterns of Centropomus parallelus juveniles in a subtropical estuarine complex. Journal of Fish Biology, 88(5): 1796-1810. https://doi. org/10.1111/jfb.12944.
  • Figueiredo,J.L.& Menezes,N.A.1980.Manual de Peixes Marinhos do Sudeste do Brasil, III Teleostei (2), Sao Paulo, Museu de Zoologia, Universidade de Sao Paulo.
  • Figueiredo-Filho, J.M.; Marceniuk, A.P.; Feijo, A.; Siccha-Ramirez, R.; Ribeiro, G.S.; Oliveira,C.& Rosa, R.S. 2021.Taxonomy of Centropomus Lacepede, 1802 (Perciformes: Centropomidae), with focus on the Atlantic species of the genus. Zootaxa, 4942: 301-338. https://doi.org/10.11646/zootaxa.4942.3.1.
  • Freire, K.M.F.;Tubino, R.A.; Monteiro-Neto, C.; Andrade-Tubino,M.F.; Belruss, C.G.; Tomas, A.R.G.; Tutui, S.L.S.; Castro, P.M.G.; Maruyama, L.S.; Catella, A.C.; Crepaldi, D.V.; Daniel, C.R.A.; Machado, M.L.; Mendonca, J.T.; Moro, P.S.; Motta, F.S.; Ramires, M.; Silva, M.H.C. & Vieira, J. 2016. Brazilian recreational fisheries: current status, challenges and future Direction. Fisheries Management and Ecology, 23(2-3): 276-290. https://doi. org/10.1111/fme.12171.
  • Froese, R. & Pauly, D. 2023. FishBase. World Wide Web electronic publication. https://fishbase.org, version 08/2023.
  • Gagliano,M. & McCormick,M.I. 2004.Feeding history influence otolith shape in tropical fish.Marine Ecology Progress Series, 278:291-296.https://doi. org/10.3354/meps278291.
  • Gauldie, R.W. & Crampton, J.S. 2002. An eco-morphological explanation of individual variability in the shape of the fish otolith: comparison of the otolith of Hoplostethus atlanticus with other species by depth.Journal of Fish Biology, 60(5): 1204-1221.https://doi.org/10.1006/jfbi.2002.1938.
  • Granados-Amores, E.; Granados-Amores, J.; Zavala-Leal, O.I. & Flores-Ortega, J.R. 2020. Geometric morphometrics in the sulcus acusticus of the sagittae otolith as tool to discriminate species of the genus Centropomus (Centropomidae: Perciformes) from the southeastern Gulf of California. Marine Biodiversity, 50(1): 1-7. https://doi.org/10.1007/s12526-019- 01030-1.
  • Hammer, O.; Harper, D.A.T. & Ryan, P.D. 2001. Past: Paleontological Statistics Software Package for Education and Data Analysis. Palaeontologia Electronica, 4:1-9.
  • Heileman, S. 2009. XVI-53 East Brazil Shelf: LME #16. In: Sherman, K. & Hempel,G.(Eds.).The UNEP Large Marine Ecosystems Report:a perspective on changing conditions in LMEs of the world's regional seas.Nairobi, UNEP Regional Seas Report and Studies,182: 711-721.
  • Jaramillo, A.M.; Tombari, A.D.; Benedito Dura, V.; Rodrigo Santamalia, M. & Volpedo,A.V.2014. Otolith eco-morphological patterns of benthic fishes from the coast of Valencia (Spain).Thalassas. Revista de Ciencias del Mar, 30(1): 57-66.
  • Junior, J.; Almeida, V.G. & Souza-Filho, J.J. 2007. Adaptacao de juvenis selvagens de Centropomus undecimales (Bloch, 1792) (Pisces,Centropomidae) ao ambiente controlado.[Adaptation of wild juveniles of Centropomus undecimales (Bloch,1792) (Pisces,Centropomidae) to the controlled environment.] Candomba-Revista Virtual, 3(1): 15-26.
  • Lira, A.S.; Fredou, F.L.; Viana, A.P.; Eduardo, L.N. & Fredou, T. 2017. Feeding ecology of Centropomus undecimalis (Bloch, 1792) and Centropomus parallelus (Poey, 1860) in two tropical estuaries in Northeastern Brazil. Pan-American Journal of Aquatic Sciences, 12:123-135.
  • Mallat,S.1991. Zero crossings of a wavelet transform.IEEE Transaction on Information Theory,37(4):1019-1033.https://doi.org/10.1109/18.86995.
  • Medeiros, R.; Oliveira, C.D.; Souto,D.; Rangely, J. & Fabre,N.N. 2021. Growth stanza in fish life history using otoliths shape: the protandric Centropomus case (Carangaria: Centropomidae). Neotropical Ichthyology, 19(4): 1-19,e200145.https://doi.org/10.1590/1982-0224-2020-0145.
  • Morissette, O. & Whitledge, G.W. 2022. Listening with the invasive fish ear: applications and innovations of otolith chemistry analysis in invasive fish biology. Environmental Biology of Fishes, 105: 1-17. https://doi. org/10.1007/s10641-022-01217-9.
  • Oliveira,J.C.; Aguiar,W.; Cirano,M.; Genz,F.& Amorim,F.N. 2018.A climatology of the annual cycle of river discharges into the Brazilian continental shelves: from seasonal to interannual variability. Environmental Earth Sciences, 77: 1-17.https://doi.org/10.1007/s12665-018-7349-y.
  • Ostini,S.;Oliveira,I.R.; Serralheiro,P.C.S.& Sanches,E.G.2007. Criacao do robalo-peva (Centropomus parallelus) submetido a diferentes densidades de estocagem.[Rearing of fat snook (Centropomus parallelus) at different stocking densities.] Revista Brasileira de Saude e Producao Animal, 8(3): 250-257.
  • Parisi-Baradad,V.;Manjabacas,A.;Lombarte,A.; Olivella,R.; Chic,O.;Piera,J. & Garcia-Ladona,E. 2010.Automatic taxon identification of teleost fishes in an otolith online database. Fisheries Research, 105: 13-20. https:// doi.org/10.1016/j.fishres.2010.02.005.
  • Popper,A.N. & Fay,R.R. 2011. Rethinking sound detection by fishes.Hearing Research, 273:25-36.https://doi.org/10.1016/j.heares.2009.12.023.
  • Rivas, L.R. 1986. Systematic review of the perciform fishes of the genus Centropomus.Copeia, (3): 579-611.https://doi.org/10.2307/1444940.
  • Sadighzadeh,Z.;Valinassa,T.;Vosugi, G.; Motallebi,A.A.; Fatemi,M.R.; Lombarte, A. &Tuset,V.M. 2014.Use of otolith shape for stock identification of John's 74 snapper, Lutjanus johnii (Pisces: Lutjanidae), from the Persian Gulf and the Oman Sea.Fisheries Research, 155: 59-63. https://doi. org/10.1016/j.fishres.2014.02.024.
  • Schulz-Mirbach,T.;Ladich,F.;Plath,M.& Heb,M. 2019.Enigmatic ear stones: what we know about the functional role and evolution of fish otoliths. Biological Reviews,94(2):457-482.https://doi.org/10.1111/brv.12463.
  • Stransky,C. & MacLellan, S.E. 2005. Species separation and zoogeography of redfish and rockfish (genus Sebastes) by otolith shape analysis.Canadian Journal of Fisheries and Aquatic Science, 62(10): 2265-2276. https://doi. org/10.1139/f05-143.
  • Tombari, A.D.;Volpedo, A.V. & Echeverria,D.D. 2005. Desarrollo de la sagitta en juveniles y adultos de Odontesthes argentinensis (Valenciennes,1835) y O.bonariensis (Valenciennes,1835) de la provincia de Buenos Aires,Argentina (Teleostei: Atheriniformes). Revista Chilena de HistOria Natural, 78(4): 623-633.https://doi.org/10.4067/S0716-078X2005000400003.
  • Torres, G.J.; Lombarte, A. & Morales-Nin, B. 2000. Variability of the sulcus acusticus in the sagitta otolith of the genus Merluccius (Merlucciidae). Fisheries Research, 46: 5-13. https://doi.org/10.1016/S0165- 7836(00)00128-4.
  • Tuset, V.M.; Imondi, R.; Aguado, G.; Otero-Ferrer, J.L.; Santschi, L.; Lombarte, A. & Love, M. 2015. Otolith Patterns of Rockfishes from the Northeastern Pacific. Journal of Morphology, 276(4): 458-469. https://doi. org/10.1002/jmor.20353.
  • Tuset,V.M.;Lombarte,A.&Assis,C.A.2008.Otolith atlas for the western Mediterranean, north and central eastern Atlantic. Scientia Marina, 72(1): 7-198.https://doi.org/10.3989/scimar.2008.72s17.
  • Verocai,J.E.; Lombarte, A. & Norbis,W. 2023. Ontogenetic changes in sagitta otoliths of whitemouth croaker Micropogonias furnieri(Acanthuriformes: Sciaenidae)and its implication in acoustic communication.Animal Biology, 73(2): 195-211.https://doi.org/10.1163/15707563-bja10105.
  • Volpedo A.V.&Echeverria D.D.2003.Ecomorphological patterns of the sagitta in fish on the continental shelf off Argentine.Fisheries Research, 60(2-3): 551-560.https://doi.org/10.1016/S0165-7836(02)00170-4.
  • Volpedo, A.V.; Tombari, A.D. & Echeverria, D.D. 2008. Eco-morphological patterns of the sagitta of Antarctic fish. Polar Biology, 31(5): 635-640. https://doi.org/10.1007/s00300-007-0400-1.