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DNA-barcoding of sympatric species of ectoparasitic gastropods of the genus Cerithiopsis (Mollusca: Gastropoda: Cerithiopsidae) from Croatia

Published online by Cambridge University Press:  09 August 2012

M.V. Modica
Affiliation:
Dipartimento di Biologia e Biotecnologie ‘Charles Darwin’, La Sapienza University, Viale dell'Università 32, I-00185 Roma, Italy
P. Mariottini
Affiliation:
Dipartimento di Biologia, Università ‘RomaTre’, Viale Marconi 446, I-00146 Roma, Italy
J. Prkić
Affiliation:
Getaldićeva 11, C-21000 Split, Croatia
M. Oliverio*
Affiliation:
Dipartimento di Biologia e Biotecnologie ‘Charles Darwin’, La Sapienza University, Viale dell'Università 32, I-00185 Roma, Italy
*
Correspondence should be addressed to: M. Oliverio, Dipartimento di Biologia e Biotecnologie ‘Charles Darwin’, La Sapienza University, Viale dell'Università 32, I-00185 Roma, Italy email: [email protected]

Abstract

The ectoparasitic gastropod genus Cerithiopsis Forbes & Hanley, 1850 was nominally based on Murex tubercularis Montagu, 1803. We have used the DNA barcode COI sequences to assay sympatric samples of morphotypes recently described as distinct species of the Cerithiopsis tubercularis-complex. Our results demonstrated that, in the Croatian waters, the gastropods usually called C. tubercularis in fact comprise a complex of cryptic species, which can be reliably diagnosed only by examining the soft parts. In the present study we have demonstrated that the colour pattern of the head-foot is diagnostic at the species level in this complex and, coupled with genetic data, may provide a sounding base for a revision of the cerithiopsids of the European coasts.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2012 

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References

REFERENCES

Aartsen, J.J. van, Menkhorst, H.P.M.G. and Gittenberger, E. (1984) The marine Mollusca of the Bay of Algeciras, Spain, with general notes on Mitrella, Marginellidae and Turridae. Basteria Supplement 2, 1135.Google Scholar
Appeltans, W., Bouchet, P., Boxshall, G.A., De Broyer, C., de Voogd, N.J., Gordon, D.P., Hoeksema, B.W., Horton, T., Kennedy, M., Mees, J., Poore, G.C.B., Read, G., Stöhr, S., Walter, T.C. and Costello, M.J. (eds) (2012) World Register of Marine Species. Available at http://www.marinespecies.org (accessed 8 May 2012).Google Scholar
Bouchet, P. (1985) Les Triphoridae de Méditerranée et du proche Atlantique (Mollusca, Gastropoda). Lavori S.I.M. 21, 558.Google Scholar
Bouchet, P. (1997) Nouvelles observations sur la systématique des Triphoridae de Méditerranée et du proche Atlantique. Bollettino Malacologico 31, 205220.Google Scholar
Cecalupo, A. and Robba, E. (2010) The identity of Murex tubercularis Montagu, 1803 and description of one new genus and two new species of the Cerithiopsidae (Gastropoda: Triphoroidea). Bollettino Malacologico 46, 4564.Google Scholar
Cecalupo, A. and Robba, E. (2011) Case 3532. Murex tubercularis Montagu, 1803 (currently Cerithiopsis tubercularis; Mollusca, Gastropoda, Cerithiopsidae): proposed conservation of usage of the specific name by designation of a neotype. Bulletin of Zoological Nomenclature 68, 4146.CrossRefGoogle Scholar
Costello, M.J., Bouchet, P., Boxshall, G., Arvantidis, C. and Appeltans, W. (2008) European Register of Marine Species. Available at http://www.marbef.org/data/erms.php (accessed 8 May 2012).Google Scholar
Crocetta, F., Bonomolo, G., Albano, P.G., Barco, A., Houart, R. and Oliverio, M. (2012) The status of the north-eastern Atlantic and Mediterranean small mussel drills of the Ocinebrina aciculata complex (Mollusca: Gastropoda: Muricidae), with the description of a new species. Scientia Marina 76, 177189.CrossRefGoogle Scholar
Folmer, O., Black, M., Hoeh, W., Lutz, R. and Vrijenhoek, R. (1994) DNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebrates. Molecular Marine Biology and Biotechnology 3, 294299.Google ScholarPubMed
Forbes, E. and Hanley, S. (1850–1851) A history of British Mollusca and their shells. Volume 3. London: J. Van Voorst, 616 pp.Google Scholar
Gofas, S. (2011) Familia Cerithiopsidae. In Gofas, S., Moreno, D. and Salas, C. (eds) Moluscos marinos de Andalucía. Volume 1. Málaga: Servicio de Publicaciones e Intercambio Científico, Universidad de Málaga, pp. 152161.Google Scholar
Gofas, S. and Le Renard, J. (eds) (2012) CLEMAM: Check List of European Marine Mollusca. Available at http://www.somali.asso.fr/clemam/index.clemam.html (accessed 8 May 2012).Google Scholar
Jeffreys, J.G. (1867) British conchology, or an account of the Mollusca which now inhabit the British Isles and the surrounding seas. Volume IV. London: John Van Voorst, 486 pp.Google Scholar
Jobb, G. (2008) ‘Treefinder version of April 2008’. Software distributed by the author at http://www.treefinder.de/ (accessed 8 May 2012).Google Scholar
Jobb, G., von Haeseler, A. and Strimmer, K. (2004) TREEFINDER, a powerful graphical analysis environment for molecular phylogenetics. BMC Evolutionary Biology 4, 18.CrossRefGoogle ScholarPubMed
Librado, P. and Rozas, J. (2009) DnaSP v5: a software for comprehensive analysis of DNA polymorphism data. Bioinformatics 25, 14511452.CrossRefGoogle ScholarPubMed
Marshall, B.A. (1978) Cerithiopsidae (Mollusca: Gastropoda) of New Zealand, and a provisional classification of the family. New Zealand Journal of Zoology 5, 47120.CrossRefGoogle Scholar
Montagu, G. (1803) Testacea Britannica, or natural history of British shells, marine, land and the fresh-water, including the most minute: systematically arranged and embellished with figures. Romsey: J.S. Hollis, pp. xxxvii + pp. 20–611 + pl. 1–16.Google Scholar
Nei, M. (1987) Molecular evolutionary genetics. New York: Columbia University Press, 512 pp.CrossRefGoogle Scholar
Oliverio, M. (2003) The Mediterranean molluscs: the best known malacofauna of the world…so far. Biogeographia 24, 195208.Google Scholar
Oliverio, M. and Mariottini, P. (2001) A molecular framework for the phylogeny of Coralliophila and related muricoids. Journal of Molluscan Studies 67, 215224.CrossRefGoogle Scholar
Prkić, J. and Buzzurro, G. (2007) A new species of Cerithiopsis (Gastropoda: Cerithiopsidae) from Croatian coasts. Triton 15, 14.Google Scholar
Prkić, J. and Mariottini, P. (2010) Description of two new Cerithiopsis from the Croatian coast, with comments on the Cerithiopsis tubercularis complex (Gastropoda: Cerithiopsidae). Aldrovandia, Roma 5, 327 [2010].Google Scholar
Prkić, J., Mariottini, P., Oliverio, M. and Warén, A. (2012) Comment on Murex tubercularis Montagu, 1803 (currently Cerithiopsis tubercularis; Mollusca, Gastropoda, CERITHIOPSIDAE): proposed conservation of usage of the specific name by designation of a neotype (Case 3532; see BZN 68: 41–46; 205). Bulletin of Zoological Nomenclature 69, 5659.Google Scholar
Ronquist, F. and Huelsenbeck, J.P. (2003) MrBayes version 3.0: Bayesian phylogenetic inference under mixed models. Bioinformatics 19, 15721574.CrossRefGoogle Scholar
Scuderi, D. and Criscione, F. (2011) New ecological and taxonomical data on some Ptenoglossa (Mollusca, Caenogastropoda) from the Gulf of Catania (Ionian Sea). Biodiversity Journal 2, 3548.Google Scholar
Swofford, D.L. (2002) PAUP*. Phylogenetic Analysis Using Parsimony (*and Other Methods). Version 4 [1998], beta 4.0b10 [2002]. Sunderland, MA: Sinauer Associates.Google Scholar
Tamura, K., Peterson, D., Peterson, N., Stecher, G., Nei, M. and Kumar, S. (2011) MEGA5: Molecular Evolutionary Genetics Analysis using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony Methods. Molecular Biology and Evolution 28, 27312739.CrossRefGoogle ScholarPubMed