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Taxonomy and ecology of some gammaridean species (Crustacea: Amphipoda) from Tarifa Island, southern Spain

Published online by Cambridge University Press:  17 June 2010

T. Krapp-Schickel
Affiliation:
Museum A. Koenig, Adenauerallee 160, D-53113 Bonn, Germany
J.M. Guerra-García*
Affiliation:
Laboratorio de Biología Marina, Departamento de Fisiología y Zoología, Facultad de Biología, Universidad de Sevilla, Avenida Reina Mercedes 6, 41012 Sevilla, Spain
E. Baeza-Rojano
Affiliation:
Laboratorio de Biología Marina, Departamento de Fisiología y Zoología, Facultad de Biología, Universidad de Sevilla, Avenida Reina Mercedes 6, 41012 Sevilla, Spain
M.P. Cabezas
Affiliation:
Laboratorio de Biología Marina, Departamento de Fisiología y Zoología, Facultad de Biología, Universidad de Sevilla, Avenida Reina Mercedes 6, 41012 Sevilla, Spain
*
Correspondence should be addressed to: J.M. Guerra-García, Laboratorio de Biología Marina, Departamento de Fisiología y Zoología, Facultad de Biología, Universidad de Sevilla, Avenida Reina Mercedes 6, 41012 Sevilla, Spain email: jmguerra@us.es

Abstract

On Tarifa Island (Strait of Gibraltar) several amphipod species were studied from intertidal algae: Ampithoe ferox, Apherusa mediterranea, Hyale spinidactyla, Hyale cf. youngi and Jassa cadetta. The allometric growth of gnathopod 2 in male is demonstrated for A. ferox. Jassa cadetta had been recorded previously only from the northern Adriatic Sea, while Hyale spinidactyla and Hyale cf. youngi had been only known from the Atlantic Ocean. Along the intertidal area, A. mediterranea and J. cadetta were dominant in the low levels located near the infralittoral area, while A. ferox, Hyale spinidactyla and Hyale cf. youngi were distributed in intermediate and upper levels, closer to the supralittoral zone. All the species showed the maximum peaks of abundance from April to October, coinciding with the maximum seawater temperatures.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2010

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References

REFERENCES

Arresti, A. (1996) Descripcion del anfípodo marino Hyale spinidactyla Chevreux, 1926 (Crustacea, Amphipoda, Gammaridea) en el País Vasco. Miscellània Zoologica 19, 7991.Google Scholar
Blondel, J. and Aronson, J. (1999) Biology and wildlife of the Mediterranean region. New York: Oxford University Press.Google Scholar
Carballo, J.L., Naranjo, S. and García-Gómez, J.C. (1997) Where does the Mediterranean Sea begin? Zoogeographical affinities of the littoral sponges of the Strait of Gibraltar. Journal of Biogeography 24, 223232.CrossRefGoogle Scholar
Chevreux, E. (1902) Amphipodes recueillis par la Melita sur les côtes occidentale et meridionale de Corse. Association Française pour l'Avancement des Sciences, Congrès d'Aiaccio 30, 692699.Google Scholar
Chevreux, E. (1911) Campagnes de la Melita. Les Amphipodes d'Algerie et de Tunisie. I. Gammarina. Mémoires de la Société Zoologique de France 23, 143285, 1–17, taf VI–XX, Text Abb 1–17.Google Scholar
Chevreux, E. (1925) Voyage de la goelette Melita aux Canaries et au Sénégal 1889–1890. Amphipodes. I. Gammariens (suite). Bulletin de la Société Zoologique de France 50, 365393.Google Scholar
Chevreux, E. and Fage, L. (1925) Amphipodes. Faune de France 9. Paris: P. Lechevalier, 488 pp, 438 figs.Google Scholar
Conradi, M. and López-González, P.J. (1999) The benthic Gammaridea (Crustacea, Amphipoda) fauna of Algeciras Bay (Strait of Gibraltar): distributional ecology and some biogeographical considerations. Helgoland Marine Research 53, 28.CrossRefGoogle Scholar
Fa, D.A., Finlayson, C., García-Adiego, E., Sánchez-Moyano, J.E. and García-Gómez, J.C. (2002) Influence of some environmental factors on the structure and distribution of the rocky shore macrobenthic communities in the Bay of Gibraltar: preliminary results. Almoraima 28, 7388.Google Scholar
Gofás, S. (1998) Marine molluscs with a very restricted range in the Strait of Gibraltar. Biodiversity and Distributions 4, 255266.Google Scholar
Guerra-García, J.M. and García-Gómez, J.C. (2000) La fauna submarina de la Isla de las Palomas (Tarifa, Cádiz). In Temas de Flora, Fauna y Ecología del Campo de Gibraltar. Cuadernos del Instituto II, Campo de Gibraltar, pp 717.Google Scholar
García-Gómez, J.C., Corzo, J.R., López-Fe, C.M., Sánchez-Moyano, J.E., Corzo, M., Rey, J., Guerra-García, J.M. and García-Asencio, I.M. (2003) Metodología cartográfica submarina orientada a la gestión y conservación del medio litoral: mapa de las comunidades bentónicas del frente litoral norte del Estrecho de Gibraltar. Boletín del Instituto Español de Oceanografía 19, 149163.Google Scholar
Guerra-García, J.M., Maestre, M.J., González, A.R. and García-Gómez, J.C. (2006) Assessing a quick monitoring method using rocky intertidal communities as a bioindicator: a multivariate approach in Algeciras Bay. Environmental Monitoring and Assessment 116, 345361.CrossRefGoogle ScholarPubMed
Guerra-García, J.M., Cabezas, M.P., Baeza-Rojano, E., Espinosa, F. and García-Gómez, J.C. (2009) Is the north side of the Strait of Gibraltar more diverse than the south side? A case study using the intertidal peracarids (Crustacea: Malacostraca) associated to the seaweed Corallina elongata. Journal of the Marine Biological Association of the United Kingdom 89, 387397.CrossRefGoogle Scholar
Guerra-García, J.M. and Takeuchi, I. (2002) The Caprellidea (Crustacea: Amphipoda) from Ceuta, North Africa, with the description of three species of Caprella: a key to the species of Caprella, and biogeographical discussion. Journal of Natural History 36, 675713.CrossRefGoogle Scholar
Hsü, K.J., Ryan, W.B.F. and Cita, M. (1973) Late Miocene desiccation of the Mediterranean. Nature 242, 240244.CrossRefGoogle Scholar
Krapp, T., Rampin, M. and Libertini, A. (2008) A cytogenetical study of Ischyroceridae (Amphipoda) allows the identification of a new species, Jassa cadetta sp. n., in the Lagoon of Venice. Organisms, Diversity and Evolution 8, 337345.CrossRefGoogle Scholar
Krapp-Schickel, G. (1982a) Family Calliopiidae. In Ruffo, (ed.) The Amphipoda of the Mediterranean, Part 1, Gammaridea. Mémoires de l'Institut Océanographique 13, 164178.Google Scholar
Krapp-Schickel, G. (1982b) Family Ampithoidae. In Ruffo, (ed.) The Amphipoda of the Mediterranean, Part 1, Gammaridea. Mémoires de l'Institut Océanographique 13: 94110.Google Scholar
López de la Cuadra, C.M. and García-Gómez, J.C. (1994) Zoogeographical study of the Cheilostomatida from the Strait of Gibraltar. Biology and paleobiology of bryozoans. Denmark: Olsen and Olsen.Google Scholar
Marchini, A., Sconfietti, R. and Krapp-Schickel, T. (2007) Role of the artificial structures on biodiversity: the case of arthropod fauna in the North Adriatic lagoons. Studi Trentini di Scienze Naturali, Acta Biologica 83, 2731.Google Scholar
Moreira, J., Gestoso, L. and Troncoso, J.S. (2008) Diversity and temporal variation of peracarid fauna (Crustacea: Peracarida) in the shallow subtidal of a sandy beach: Playa America (Galicia, NW Spain). Marine Ecology 81, 10691089.Google Scholar
Naranjo, S., Carballo, J.L. and García-Gómez, J.C. (1998) Towards a knowledge of marine boundaries using ascidians as indicators: characterising transition zones for species distribution along Atlantic–Mediterranean shores. Biological Journal of the Linnean Society 64, 151177.CrossRefGoogle Scholar
Reid, D.M. (1951) Report on the Amphipoda (Gammaridea and Caprellidea) of the coast of tropical West Africa. Atlantide Report 2, 189291.Google Scholar
Serejo, C.S. (2001) A new species of amphipod from the Brazilian coast, with redescription of Hyale spinidactyla Chevreux 1925 (Crustacea, Amphipoda, Hyalidae). Zoosystema 23, 479492.Google Scholar
Simkanin, C., Power, A.M., Myers, A., McGrath, A., Southward, N., Mieskowska, N., Lepaer, R. and O'Riordan, R. (2005) Using historical data to detect temporal changes in the abundance of intertidal species on Irish shores. Journal of the Marine Biological Association of the United Kingdom 85, 13291340.CrossRefGoogle Scholar