Hostname: page-component-8448b6f56d-xtgtn Total loading time: 0 Render date: 2024-04-23T22:52:48.242Z Has data issue: false hasContentIssue false

First records of the red lionfish (Pterois volitans) in Martinique, French West Indies: monitoring invasion status through visual surveys

Published online by Cambridge University Press:  27 January 2015

Ewan Trégarot
Affiliation:
Observatoire du Milieu Marin Martiniquais, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France
Marine Fumaroli
Affiliation:
Observatoire du Milieu Marin Martiniquais, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France
Alexandre Arqué
Affiliation:
Observatoire du Milieu Marin Martiniquais, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France
Claire Hellio
Affiliation:
LEMAR, Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale, Technopôle Brest Iroise – rue Dumont d'Urville, 29280 Plouzané, France
Jean-Philippe Maréchal*
Affiliation:
Observatoire du Milieu Marin Martiniquais, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France School of Biological Sciences, King Henry Building, University of Portsmouth, Portsmouth PO1 2DY, UK Nova Blue Environment, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France
*
Correspondence should be addressed to: J.-P. Maréchal, Nova Blue Environment, 14 rue Chéry-Rosette, Fond Lahaye, 97233 Schoelcher, Martinique, FWI, France email: marechal.jean@gmail.com
Get access

Abstract

The red lionfish (Pterois volitans) was first recorded in Martinique on 1 February 2011. Three years later, despite control measures to prevent the increase of lionfish population densities, the species is now well established. Maximum density has reached 1320 individuals ha−1 in some locations and the maximum fish size of 41 cm total length has been observed. A monitoring program was initiated by the Marine Institute of Martinique (OMMM) in 2011 to monitor the invasion and adjust local control efforts. Our results highlight how fast lionfish have been able to invade new littoral areas, especially hard bottom habitats. It took two years for them to completely colonize the west coast of Martinique, despite increasing capture efforts. It is expected that small-scale fisheries would target lionfish. Coastal ecosystems are clearly being subjected to a new threat, which may negatively affect local biodiversity.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2015 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Barbour, A.B., Allen, M.S., Frazer, T.K. and Sherman, K.D. (2011) Evaluating the potential efficacy of invasive lionfish (Pterois volitans) removals. Plos One 6(5), e19666, doi: 10.1371/journal.pone.0019666.Google Scholar
Barbour, A.B., Montgomery, M.L., Adamson, A.A., Díaz-Ferguson, E. and Silliman, B.R. (2010) Mangrove use by the invasive lionfish Pterois volitans. Marine Ecology Progress Series 401, 291294.Google Scholar
Betancur-R, R., Hines, A., Acero, A., Orti, G., Wilbur, A.E. and Freshwater, D.W. (2011) Reconstructing the lionfish invasion: insights into Greater Caribbean biogeography. Journal of Biogeography 38, 12811293.CrossRefGoogle Scholar
Claydon, J.A.B., Calosso, M.C. and Traiger, S.B. (2012) Progression of invasive lionfish in seagrass, mangrove and reef habitats. Marine Ecology Progress Series 448, 119129.CrossRefGoogle Scholar
Coat, S., Bocquené, G. and Godard, E. (2006) Contamination of some aquatic species with the organochlorine pesticide chlordecone in Martinique. Aquatic Living Resources 19, 181187.Google Scholar
Côté, I.M., Green, S.J., Morris, J.A. Jr , Akins, J.L. and Steinke, D. (2013) Diet richness of invasive Indo-Pacific lionfish revealed by DNA barcoding. MEPS 472, 249256.CrossRefGoogle Scholar
Darling, E.S., Green, S.J., O'Leary, J.K. and Cote, I.M. (2011) Indo-Pacific lionfish are larger and more abundant on invaded reefs: a comparison of Kenyan and Bahamian lionfish populations. Biological Invasions 13, 20452051.Google Scholar
de León, R., Vane, K., Bertuol, P., Chamberland, V.C., Simal, F., Imms, E. and Vermeij, M.J.A. (2013) Effectiveness of lionfish removal efforts in the southern Caribbean. Endangered Species Research 22, 175182.Google Scholar
Freshwater, D.W., Hines, A., Parham, S., Wilbur, A., Sabaoun, M., Woodhead, J., Akins, L., Purdy, B., Whitfield, P.E. and Paris, C.B. (2009) Mitochondrial control region sequence analyses indicate dispersal from the US East Coast as the source of the invasive Indo-Pacific lionfish Pterois volitans in the Bahamas. Marine Biology 156, 12131221.Google Scholar
Green, S. and Côté, I. (2009) Record densities of Indo-Pacific lionfish on Bahamian coral reefs. Coral Reefs 28, 107.Google Scholar
Green, S., Tamburello, N., Miller, S., Akins, J. and Côté, I. (2013) Habitat complexity and fish size affect the detection of Indo-Pacific lionfish on invaded coral reefs. Coral Reefs 32(2), 413421.Google Scholar
Green, S.J., Akins, J.L., Maljković, A. and Côté, I.M. (2012) Invasive lionfish drive Atlantic coral reef fish declines. Plos One 7, e32596.Google Scholar
Green, S.J., Dulvy, N.K., Brooks, A.L.M., Akins, J.L., Cooper, A.B., Miller, S. and Côté, I.M. (2104) Linking removal targets to the ecological effects of invaders: a predictive model and field test. Ecological Applications 24, 13111322, http://dx.doi.org/10.1890/13-0979.1.Google Scholar
Grubich, J., Westneat, M. and McCord, C. (2009) Diversity of lionfishes (Pisces: Scorpaenidae) among remote coral reefs of the Palau Archipelago. Coral Reefs 28, 807.Google Scholar
Hackerott, S., Valdivia, A., Green, S.J., Côté, I.M., Cox, C.E., Akins, L., Layman, C.A., Precht, W.F. and Bruno, J.F. (2013) Native predators do not influence invasion success of pacific lionfish on Caribbean reefs. Plos One 8, e68259.Google Scholar
Hamner, R.M., Freshwater, D.W. and Whitfield, P.E. (2007) Mitochondrial cytochrome b analysis reveals two invasive lionfish species with strong founder effects in the western Atlantic. Journal of Fish Biology 71, 214222.Google Scholar
Hare, J.A. and Whitfield, P.E. (2003) An integrated assessment of the introduction of lionfish (Pterois volitans/miles complex) to the Western Atlantic Ocean. NOAA Technical Memorandum, NOS NCCOS 2, 21.Google Scholar
Johnston, M.W. and Purkis, S.J. (2011) Spatial analysis of the invasion of lionfish in the western Atlantic and Caribbean. Marine Pollution Bulletin 62, 12181226.CrossRefGoogle ScholarPubMed
Kochzius, M., Söller, R., Khalaf, M.A. and Blohm, D. (2003) Molecular phylogeny of the lionfish genera Dendrochirus and Pterois (Scorpaenidae, Pteroinae) based on mitochondrial DNA sequences. Molecular Phylogenetics and Evolution 28, 396403.Google Scholar
Kulbicki, M., Beets, J., Chabanet, P., Cure, K., Darling, E., Floeter, S.R., Galzin, R., Green, A., Harmelin-Vivien, M., Hixon, M., Letourneur, Y., Lison de Loma, T.L., McClanahan, T., McIlwain, J., Mou-Tham, G., Myers, R., O'Leary, J.K., Planes, S., Vigliola, L. and Wantiez, L. (2012) Distribution of Indo-Pacific lionfishes Pterois spp. in their native ranges: implications for the Atlantic invasion. Marine Ecology Progress Series 446, 189205.CrossRefGoogle Scholar
Legrand, H., Lenfant, P., Sotheran, I.S., Foster-Smith, R.L., Galzin, R. and Marechal, J.-P. (2012) Mapping marine benthic habitats in Martinique (French West Indies). Caribbean Journal of Science 46, 267282.Google Scholar
Morris, J.A. (2012) Invasive lionfish: a guide to control and management. Marathon, Florida: Caribbean Fisheries Institute, Special Publication Series, Number 1, 113 pp.Google Scholar
Morris, J.A. and Akins, J.L. (2009) Feeding ecology of invasive lionfish (Pterois volitans) in the Bahamian archipelago. Environmental Biology of Fishes 86, 389398.Google Scholar
Morris, J.A., Shertzer, K.W. and Rice, J.A. (2011) A stage-based matrix population model of invasive lionfish with implications for control. Biological Invasions 13, 712.Google Scholar
Morris, J.A. and Whitfield, P.E. (2009) Biology, ecology, control and management of the invasive Indo-Pacific lionfish: an updated integrated assessment. NOAA Technical Memorandum NOS NCCOS 99, 157.Google Scholar
Munoz, R.C., Currin, C.A. and Whitfield, P.E. (2011) Diet of invasive lionfish on hard bottom reefs of the Southeast USA: insights from stomach contents and stable isotopes. Marine Ecology-Progress Series 432, 181193.Google Scholar
Pimiento, C., Nifong, J.C., Hunter, M.E., Monaco, E. and Silliman, B.R. (2013) Habitat use patterns of the invasive red lionfish Pterois volitans: a comparison between mangrove and reef systems in San Salvador, Bahamas. Marine Ecology 110, doi: 10.1111/maec.12114.Google Scholar
Roberts, C.M. (1997) Connectivity and management of Caribbean coral reefs. Science 278, 14541457.CrossRefGoogle ScholarPubMed
Robertson, A., Garcia, A.C., Flores Quintana, H.A.F., Smith, T.B., Castillo, B.F. II, Reale-Munroe, K., Gulli, J.A., Olsen, D.A., Hooe-Rollman, J.I., Jester, E.L.E., Klimek, B.J. and Plakas, S.M. (2013) Invasive lionfish (Pterois volitans): a potential human health threat for ciguatera fish poisoning in tropical waters. Marine Drugs 12, 8897.Google Scholar
Schultz, E.T. (1986) Pterois volitans and Pterois miles: two valid species. Copeia 3, 686690.Google Scholar
Shulman, M.J. and Bermingham, E. (1995) Early life histories, ocean currents, and the population genetics of Caribbean reef fishes. Evolution 49, 897910.CrossRefGoogle ScholarPubMed
Valdez-Moreno, M., Quintal-Lizama, C., Gómez-Lozano, R. and García-Rivas, M. (2012) Monitoring an Alien invasion: DNA barcoding and the identification of lionfish and their prey on coral reefs of the Mexican Caribbean. Plos One 7, e36636.Google Scholar
Whitfield, P.E., Hare, J.A., David, A.W., Harter, S.L., Munoz, R.C. and Addison, C.M. (2007) Abundance estimates of the Indo-Pacific lionfish Pterois volitans/miles complex in the Western North Atlantic. Biological Invasions 9, 5364.Google Scholar