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Feeding of Scorpaena porcus (Scorpaenidae) in intertidal rock pools in the Gulf of Cadiz (NE Atlantic)

Published online by Cambridge University Press:  23 February 2017

Jesus C. Compaire*
Affiliation:
Departamento de Biologia, Facultad de Ciencias del Mar y Ambientales, Edificio CASEM, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain
Pau Casademont
Affiliation:
Departamento de Ingenieria Quimica y Tecnologia de los Alimentos, Facultad de Ciencias, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain
Remedios Cabrera
Affiliation:
Departamento de Biologia, Facultad de Ciencias del Mar y Ambientales, Edificio CASEM, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain
Carmen Gómez-Cama
Affiliation:
Departamento de Biologia, Facultad de Ciencias del Mar y Ambientales, Edificio CASEM, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain
Milagrosa C. Soriguer
Affiliation:
Departamento de Biologia, Facultad de Ciencias del Mar y Ambientales, Edificio CASEM, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain
*
Correspondence should be addressed to: J.C. Compaire, Departamento de Biologia, Facultad de Ciencias del Mar y Ambientales, Edificio CASEM, Avenida Republica Saharaui s/n, 11510 Puerto Real, Cadiz, Spain email: jesus.canocompaire@uca.es

Abstract

The present work on the feeding ecology of Scorpaena porcus according to season, sex and size, is the first study carried out in the rocky intertidal in the NE Atlantic. Previous studies were carried out with fish collected in fishing grounds from Mediterranean areas. A total of 106 fish were caught in monthly samplings from April 2008 to July 2010 in three areas of the rocky intertidal zone in the Gulf of Cadiz. The diet composition varied with season, size and sex. Shrimps were the main diet resource during all year, but other prey were also important depending on the season. As the size of fish increased, predation on smaller crustaceans decreased and consumption of larger crustaceans and fish augmented. Females and males based their diet on shrimps, while indeterminate fish fed largely on amphipods. No significant differences were found between feeding intensity and season, size and sex. Nevertheless, the PERMANOVA results showed that the number of prey is affected by the interaction between sex and size class. Our results highlight that S. porcus is a stenophagic species that shows a gradual segregation in the use of resources as it grows, which indicates there is no intraspecific competition in the rocky intertidal.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2017 

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References

REFERENCES

Aksiray, F. (1987) The identification key of Turkish marine fishes. 4th edition. Istanbul: Istanbul University Press, no. 349.Google Scholar
Anderson, M.J. (2001a) A new method for non-parametric multivariate analysis of variance. Australian Ecology 26, 3246.Google Scholar
Anderson, M.J. (2001b) Permutation tests for univariate or multivariate analysis of variance and regression. Canadian Journal of Fisheries and Aquatic Sciences 58, 626639.Google Scholar
Anderson, M.J. and ter Braak, C.J.F. (2003) Permutation tests for multi-factorial analysis of variance. Journal of Statistical Computation and Simulation 73, 85113.CrossRefGoogle Scholar
Arculeo, M., Froglia, C. and Riggio, S. (1993) Food partitioning between Serranus scriba and Scorpaena porcus (Perciformes) on the infralittoral ground of the South Tyrrhenian Sea. Cybium 17, 251258.Google Scholar
Başçïnar, N.S. and Saǧlam, H. (2009) Feeding habits of black scorpionfish Scorpaena porcus, in the South-Eastern Black Sea. Turkish Journal of Fisheries and Aquatic Sciences 9, 99103.Google Scholar
Bell, J.D. and Harmelin-Vivien, M.L. (1983) Fish fauna of French Mediterranean Posidonia oceanica seagrass meadows. II: feeding habits. Tethys 11, 114.Google Scholar
Benavides, M., Echevarría, F., Sánchez-García, R., Garzón, N. and González-Gordillo, J.I. (2010) Mesozooplankton community structure during summer months in the Bay of Cádiz. Thalassas 26, 103118.Google Scholar
Bilgin, S. and Çelik, E.Ş. (2009) Age, growth and reproduction of the black scorpionfish, Scorpaena porcus (Pisces, Scorpaenidae), on the Black Sea coast of Turkey. Journal of Applied Ichthyology 25, 5560.CrossRefGoogle Scholar
Bowen, S.H. (1983) Quantitative description of the diet. In Nielsen, L.A., Johnson, D.L. and Lampton, S.S. (eds) Fisheries techniques. Bethesda, MD: American Fisheries Society, pp. 325336.Google Scholar
Bradai, M.N. and Bouain, A. (1990) Feeding pattern of Scorpaena porcus and S. scrofa (Teleostei, Scorpaenidae) from Gulf of Gabes, Tunisia. Cybium 14, 207216.Google Scholar
Bradai, M.N. and Bouain, A. (1991) Reproduction de Scorpaena porcus (Linnaeus, 1758) et de Scorpaena scrofa (Linnaeus, 1758) (Pisces, Scorpaenidae) du Golfe de Gabes. Oebalia 17, 167180.Google Scholar
Bray, J.R. and Curtis, J.T. (1957) An ordination of upland forest communities of southern Wisconsin. Ecological Monographs 27, 325349.Google Scholar
Carpentieri, P., Colloca, F., Belluscio, A. and Ardizzone, A. (2001) Preliminary notes on feeding habits of Scorpaena porcus (Linnaeus, 1758) in the central Tyrrhenian Sea. Biologia Marina Mediterránea 8, 699703.Google Scholar
Castriota, L., Falautano, M., Finoia, M.G., Consoli, P., Pedà, C., Esposito, V., Battaglia, P. and Andaloro, F. (2012) Trophic relationships among scorpaeniform fishes associated with gas platforms. Helgoland Marine Research 66, 401411.Google Scholar
Compaire, J.C., Cabrera, R., Gómez-Cama, C. and Soriguer, M.C. (2016) Trophic relationships, feeding habits and seasonal dietary changes in an intertidal rockpool fish assemblage in the Gulf of Cadiz (NE Atlantic). Journal of Marine Systems 158, 165172.Google Scholar
Demirhan, S.A. and Can, M.F. (2009) Age, growth and food composition of Scorpaena porcus (Linnaeus, 1758) in the southeastern Black Sea. Journal of Applied Ichthyology 25, 215218.Google Scholar
Faria, C. and Almada, V. (2001) Microhabitat segregation in three rocky intertidal fish species in Portugal: does it reflect interspecific competition? Journal of Fish Biology 58, 145159.Google Scholar
Flores-Coto, C., Martínez-Gutiérrez, R., González-Félix, M., Sanvicente-Añorve, L. and Zavala-Garcia, F. (2000) Annual variation of ichthyoplankton assemblages in shelf waters of the southern Gulf of Mexico. Caribbean Journal of Science 36, 233243.Google Scholar
Follesa, M.C., Cabiddu, S., Sabatini, A. and Cau, A. (2004) Relazioni trofiche nelle specie di Scorpaena (Linneo, 1758) del Mediterraneo centro-occidentale. Biologia Marina Mediterránea 11, 586591.Google Scholar
García-Gómez, A., de la Gándara, F. and Raja, T. (2002) Utilización del aceite de clavo, Syzygium aromaticum L. (Merr. & Perry), como anestésico eficaz y económico para labores rutinarias de manipulación de peces marinos cultivados. Boletín Instituto Español Oceanografía 18, 2123.Google Scholar
García-LaFuente, J. and Ruiz, J. (2007) The Gulf of Cádiz pelagic ecosystem: a review. Progress in Oceanography 74, 228251.Google Scholar
Gibson, R.N. (1968) The food and feeding relationships of littoral fish in the Banylus region. Vie et Milieu A14, 447456.Google Scholar
Gibson, R.N. (1970) Observations on the biology of giant goby Gobius cobitis Pallas. Journal of Fish Biology 2, 281288.Google Scholar
Gibson, R.N. (1972) The vertical distribution and feeding relationships of intertidal fish on the Atlantic coast of France. Journal of Animal Ecology 41, 189207.CrossRefGoogle Scholar
González-Gordillo, J.I. and Rodríguez, A. (2003) Comparative seasonal and spatial distribution of decapod larvae assemblages in three coastal zones off the south-western Iberian Peninsula. Acta Oecologica 24, 219233.CrossRefGoogle Scholar
Griffiths, S.P. (2000) The use of clove oil as an anaesthetic and method for sampling intertidal rockpool fishes. Journal of Fish Biology 57, 14531464.Google Scholar
Guziur, J. (1976) The feeding of two years old carp, Cyprinus carpio L., in a vendance Lake Klawoj. Ekologia Polska 24, 211235.Google Scholar
Harmelin, J.G. (1987) Structure and variability of the ichthyofauna in a Mediterranean protected rocky area (National Park of Port-Cros, France). Marine Ecology 8, 263284.Google Scholar
Harmelin-Vivien, M.L., Kaim-Malka, R.A., Ledoyer, M. and Jacob-Abraham, S.S. (1989) Food partitioning among scorpaenid fishes in Mediterranean seagrass beds. Journal of Fish Biology 34, 715734.Google Scholar
Krebs, C.J. (1989) Ecological methodology. New York, NY: Harper and Row.Google Scholar
Labropoulou, M. and Eleftheriou, A. (1997) The foraging ecology of two pairs of congeneric demersal fish species: importance of morphological characteristics in prey selection. Journal of Fish Biology 50, 324340.Google Scholar
La Mesa, G., La Mesa, M. and Tomassetti, P. (2007) Feeding habits of the Madeira rockfish Scorpaena maderensis from central Mediterranean Sea. Marine Biology 150, 13131320.Google Scholar
La Mesa, M., La Mesa, G. and Micalizzi, M. (2005) Age and growth of madeira scorpionfish, Scorpaena maderensis Valenciennes, 1833, in the central Mediterranean. Fisheries Research 74, 265272.CrossRefGoogle Scholar
Macías, D., Martin, A.P., García-Lafuente, J., García, C.M., Yool, A., Bruno, M., Vázquez-Escobar, A., Izquierdo, A., Sein, D.V. and Echevarría, F. (2007) Mixing and biogeochemical effects induced by tides on the Atlantic–Mediterranean flow in the Strait of Gibraltar: an analysis through a physical–biological coupled model. Progress in Oceanography 74, 252272.Google Scholar
Macpherson, E. (1981) Resource partitioning in a Mediterranean demersal fish community. Marine Ecology Progress Series 4, 183193.Google Scholar
McArdle, B.H. and Anderson, M.J. (2001) Fitting multivariate models to community data: a comment on distance-based redundancy analysis. Ecology 82, 290297.Google Scholar
Morales-Nin, B. (1992) Determinación del crecimiento de peces óseos en base a la microestructura de los otolitos. FAO Fisheries Technical Paper 322, 3638.Google Scholar
Morte, M.S., Redon, M.J. and Sanz-Brau, A. (1999) Feeding ecology of two megrims Lepidorhombus boscii (Risso, 1810) and Lepidorhombus whiffiagonis (Walbaum, 1792) in the western Mediterranean. Journal of the Marine Biological Association of the United Kingdom 79, 161169.Google Scholar
Morte, S., Redon, M.J. and Sanz-Brau, A. (2001) Diet of Scorpaena porcus and Scorpaena notata (Pisces: Scorpaenidae) in the western Mediterranean. Cahiers de Biologie Marine 42, 333344.Google Scholar
Orlov, A.M. (2002) Summer diet and feeding of shortraker (Sebastes borealis) and rougheye (S. aleutianus) rockfishes (Scorpaenidae) in the western Bering Sea. Aqua 6, 2938.Google Scholar
Pallaoro, A. and Jardas, I. (1991) Food and feeding habits of black scorpionfish (Scorpaena porcus L. 1758) (Pisces, Scorpaenidae) along the Adriatic coast. Acta Adriatica 32, 885898.Google Scholar
Ruiz, J., García-Isarch, E., Huertas, E., Prieto, L., Juárez, A., Muñoz, J.L., Sánchez-Lamadrid, A., Rodríguez, S., Naranjo, J.M. and Baldó, F. (2006) Meteorological and oceanographic factors influencing Engraulis encrasicolus early life stages and catches in the Gulf of Cádiz. Deep Sea Research Part II: Topical Studies in Oceanography 53, 13631376.Google Scholar
Sanvicente-Añorve, L., Flores-Coto, C. and Sánchez-Velasco, L. (1998) Spatial and seasonal patterns of larval fish assemblages in the southern Gulf of Mexico. Bulletin of Marine Science 62, 1730.Google Scholar
Schoener, T.W. (1970) Nonsynchronous spatial overlap of lizards in patchy habitats. Ecology 51, 408418.Google Scholar
Schoener, T.W. (1968) The anolis lizards of bimini: resource partitioning in a complex fauna. Ecology 49, 704726.Google Scholar
Siblot-Boutéflika, D. (1976) Contribution à l’étude des Scorpaenidae de la région d'Alger. Thèse Doc 3ème Cycle Océanographie, Univ. Aix-Marseille II, 181 pp.Google Scholar
Spivak, E.D., Arévalo, E., Cuesta, J.A. and González-Gordillo, J.I. (2010) Population structure and reproductive biology of the stone crab Xantho poressa (Crustacea: Decapoda: Xanthidae) in the ‘Corrales de Rota’ (south-western Spain), a human-modified intertidal fishing area. Journal of the Marine Biological Association of the United Kingdom 90, 323334.CrossRefGoogle Scholar
Stagioni, M., Montanini, S. and Vallisneri, M. (2012) Feeding of tub gurnard Chelidonichthys lucerna (Scorpaeniformes: Triglidae) in the north-east Mediterranean. Journal of the Marine Biological Association of the United Kingdom 92, 605612.Google Scholar
Trenhaile, A.S. (1997) Coastal dynamics and landforms. Oxford: Clarendon Press.Google Scholar
Ünsal, N. and Oral, M. (1996) An investigation on the growth and reproduction characteristics of the Black scorpionfish (Scorpaena porcus Linnaeus, 1758) in the Sea of Marmara. Turkish Journal of Zoology 20, 303308.Google Scholar
Werner, E.E. and Gilliam, J.F. (1984) The ontogenetic niche and species interactions in size-structured populations. Annual Review of Ecology and Systematics 15, 393425.Google Scholar
Wootton, R.J. (1992) Constraints in the evolution of fish life histories. Netherlands Journal of Zoology 42, 291303.Google Scholar
Zander, C.D. and Hagemann, T. (1989) Feeding ecology of littoral gobiid and blennioid fishes of the Banyuls area (Mediterranean Sea): 3. Seasonal variations. Topics in Marine Biology 53, 441449.Google Scholar
Zander, C.D. and Heymer, A. (1992) Feeding habits of Gobius auratus and other benthic small-sized fish from the French Mediterranean coast under regard of some alternating parameters. Zoologischer Anzeiger 228, 220228.Google Scholar
Zupo, V. and Stübing, D. (2010) Diet of fish populations in Posidonia oceanica meadows off the Island of Ischia (Gulf of Naples, Italy): assessment of spatial and seasonal variability. Natural Science 2, 12741286.Google Scholar