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Assessing the extent of establishment of Undaria pinnatifida in Plymouth Sound Special Area of Conservation, UK

Published online by Cambridge University Press:  22 August 2014

Sabrina Heiser*
Affiliation:
British Antarctic Survey, Madingley Road, High Cross, Cambridge, Cambridgeshire, CB3 0ET, UK Marine Biology and Ecology Research Centre, Plymouth University, Drake Circus, Plymouth, Devon, PL4 8AA, UK
Jason M. Hall-Spencer
Affiliation:
Marine Biology and Ecology Research Centre, Plymouth University, Drake Circus, Plymouth, Devon, PL4 8AA, UK
Keith Hiscock
Affiliation:
Marine Biological Association, Citadel Hill, Plymouth, Devon, PL1 2PB, UK
*
Correspondence should be addressed to: S. Heiser, British Antarctic Survey, High Cross, Madingley Road, Cambridge, CB3 0ET, UK email: [email protected]
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Abstract

The north-west Pacific kelp, Undaria pinnatifida, was first discovered in Europe on the Mediterranean coast of France (1971) and introduced to Brittany for aquaculture (1983). In the north-east Atlantic, it occurs in Spain, France, the British Isles, Belgium and Holland. The first UK record was in the Hamble estuary (1994) and it was found off Plymouth in 2003. The UK distribution is presently restricted to the south of England and the northern Irish Sea. We assessed the distribution of U. pinnatifida and native kelps and their allies in Plymouth Sound (at 0 to +1 m relative to Chart Datum). Undaria pinnatifida was widespread along rocky shores, on other hard substrata and grew in the same areas as Saccharina latissima and Saccorhiza polyschides. Undaria pinnatifida was significantly more abundant on vertical substrata than on upward-facing hard substrata. It was almost as common as all of the other kelp species combined on vertical substrata but was outnumbered by native species on upward-facing substrata. Undaria pinnatifida has become the visually dominant macroalga in marinas and has spread to surrounding natural habitats in Plymouth Sound. The extent to which it will outcompete native kelps requires monitoring, especially in conservation areas.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2014 

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References

REFERENCES

Arenas, F., Bishop, J.D.D., Carlton, J.T., Dyrynda, P.J., Farnham, W.E., Gonzalez, D.J., Jacobs, M.W., Lambert, C., Lambert, G., Nielson, S.E., Pederson, J.A., Porter, J.S., Ward, S. and Wood, C.E. (2006) Alien species and other notable records from a rapid assessment survey of marinas on the south coast of England. Journal of the Marine Biological Association of the United Kingdom 86, 13291337.Google Scholar
Britton-Simmons, K.H. (2004) Direct and indirect effects of the introduced alga Sargassum muticum on benthic, subtidal communities of Washington State, USA. Marine Ecology Progress Series 277, 6178.Google Scholar
Buschbaum, C., Chapman, A.S. and Saier, B. (2006) How an introduced seaweed can affect epibiota diversity in different coastal systems. Marine Biology 148, 743754.Google Scholar
Casas, G., Scrosati, R. and Piriz, M.L. (2004) The invasive kelp Undaria pinnatifida (Phaeophyceae, Laminariales) reduces native seaweed diversity in Nuevo Gulf (Patagonia, Argentina). Biological Invasions 6, 411416.Google Scholar
Connor, D.W. and Hiscock, K. (1996) Data collection methods. In Hiscock, K. (ed.) Marine Nature Conservation Review: rationale and methods. Peterborough, UK: Joint Nature Conservation Committee, pp. 5165.Google Scholar
Digimap Collections (2011) Plymouth Sound. Available at: http://edina.ac.uk/digimap/ (accessed 6 December 2011).Google Scholar
Eno, N.C., Clark, R.A. and Sanderson, W.G. (1997) Non-native marine species in British waters: a review and directory. Peterborough, UK: Joint Nature Conservation Committee.Google Scholar
Farrell, P. and Fletcher, R.L. (2006) An investigation of dispersal of the introduced brown alga Undaria pinnatifida (Harvey) Suringar and its competition with some species on the man-made structures of Torquay Marina (Devon, UK). Journal of Experimental Marine Biology and Ecology 334, 236243.Google Scholar
Fletcher, R.L. and Farrell, P. (1999) Introduced brown algae in the north east Atlantic, with particular respect to Undaria pinnatifida (Harvey) Suringar. Helgoländer Meeresuntersuchungen 5, 259275.Google Scholar
Fletcher, R.L. and Manfredi, C. (1995) The occurrence of Undaria pinnatifida (Phaeophyceae, Laminariales) on the south coast of England. Botanica Marina 38, 355358.CrossRefGoogle Scholar
Floc'h, J.Y., Pajot, R. and Wallentinus, I. (1991) The Japanese brown alga Undaria pinnatifida on the coast of France and its possible establishment in European waters. Journal du Conseil International pour l'Exploration de la Mer 47, 379390.Google Scholar
Hay, C.H. (1990) The dispersal of sporophytes of Undaria pinnatifida by coastal shipping in New Zealand, and implications for further dispersal of Undaria in France. British Phycological Journal 25, 301313.CrossRefGoogle Scholar
Hewitt, C.L., Campbell, M.L., McEnnulty, F., Moore, K.M., Murfet, N.B., Robertson, B. and Schaffelke, B. (2005) Efficacy of physical removal of a marine pest: the introduced kelp Undaria pinnatifida in a Tasmanian Marine Reserve. Biological Invasions 7, 251263.Google Scholar
Hopkins, C.C.E. (2002) Introduced marine organisms in Norwegian waters, including Svalbard. In Leppäkoski, E., Follasch, S. and Olenin, S. (eds) Invasive aquatic species of Europe: distribution, impacts and management. Dordrecht, The Netherlands: Kluwer Academic Publishers, pp. 240252.Google Scholar
ICES (2007) Alien species alert: Undaria pinnatifida (wakame or Japanese kelp). Copenhagen, Denmark: International Council for the Exploration of the Sea.Google Scholar
Lowe, S., Browne, M., Boudjelas, S. and De Poorter, M. (2000) 100 of the world's worst invasive alien species: a selection from the global invasive species database. Auckland, New Zealand: The Invasive Species Specialist Group (ISSG) a specialist group of the Species Survival Commission (SSC) of the World Conservation Union (IUCN). Available from: http://www.issg.org/database/species/reference_files/100English.pdf.Google Scholar
MarLIN (2012) Recording marine life. Available at: http://www.marlin.ac.uk/sightingsMapper.php?sps=Undaria%20pinnatifida (accessed 19 February 2012).Google Scholar
Molnar, J.L., Gamboa, R.L., Revenga, C. and Spalding, M.D. (2008) Assessing the global threat of invasive species to marine biodiversity. Frontiers in Ecology and the Environment 6, 485492.Google Scholar
Morita, T., Kurashima, A. and Maegawa, M. (2003) Temperature requirements for the growth and maturation of the gametophytes of Undaria pinnatifida and U. undarioides (Laminariales, Phaeophyceae). Phycological Research 51, 154160.Google Scholar
National Biodiversity Network (2012) Interactive map of records for Undaria pinnatifida. Available at: http://www.searchnbn.net/imt/?mode=SPECIES&species=NBNSYS0000188802 (accessed 10 September 2012).Google Scholar
Nyberg, C.D. and Wallentinus, I. (2005) Can species traits be used to predict marine macroalgal introductions? Biological Invasions 7, 265279.Google Scholar
Peteiro, C. and Freire, Ó. (2011) Effect of water motion on the cultivation of the commercial seaweed Undaria pinnatifida in a coastal bay of Galicia, Northwest Spain. Aquaculture 314, 269276.Google Scholar
Pimentel, D., McNair, S., Janecka, J., Wightman, J., Simmonds, C., O'Connell, C., Wong, E., Russel, L., Zern, J., Aquino, T. and Tsomondo, T. (2001) Economic and environmental threats of alien plant, animal, and microbe invasions. Agriculture, Ecosystems and Environment 84, 120.Google Scholar
Pinet, P.R. (2009) Invitation to oceanography. 5th edition. Burlington, MA: Jones and Bartlett Publishers.Google Scholar
Reise, K., Olenin, S. and Thieltges, D.W. (2006) Are aliens threatening European aquatic coastal ecosystems? Helgoland Marine Research 60, 7783.Google Scholar
Ribera Sagun, M.A. (2002) Review of non-native marine plants in the Mediterranean Sea. In Leppäkoski, E., Gollasch, S. and Olenin, S. (eds) Invasive aquatic species of Europe: distribution, impacts and management. Dordrecht, The Netherlands: Kluwer Academic Publishers, pp. 291310.Google Scholar
Schaffelke, B., Smith, J.E. and Hewitt, C.L. (2006) Introduced macroalgae—a growing concern. Journal of Applied Phycology 18, 529541.Google Scholar
Stæhr, P.A., Pederson, M.F., Thomsen, M.S., Wernberg, T. and Krause-Jensen, D. (2000) Invasion of Sargassum muticum in Limfjorden (Denmark) and its possible impact on the indigenous macroalgal community. Marine Ecology Progress Series 207, 7988.Google Scholar
Streftaris, N., Zenetos, A. and Papathanassiou, E. (2005) Globalisation in marine ecosystems: the story of non-indigenous marine species across European seas. Oceanography and Marine Biology: an Annual Review 43, 419453.Google Scholar
Thornber, C.S., Kinlan, B.P., Graham, M.H. and Stachowicz, J.J. (2004) Population ecology of the invasive kelp Undaria pinnatifida in California: environmental and biological controls on demography. Marine Ecology Progress Series 268, 6980.Google Scholar
Thompson, G.A. and Schiel, D.R. (2012) Resistance and facilitation by native algal communities in the invasion success of Undaria pinnatifida . Marine Ecology Progress Series 468, 95105.Google Scholar
Trowbridge, C.D. (2006) A global proliferation of non-native marine and brackish macroalgae. In Critchley, A.T., Ohno, M. and Largo, D.B. (eds) World seaweed resources—an authoritative reference system. DVD-ROM, version 1.0. Amsterdam, The Netherlands: ETI Bioinformatics.Google Scholar
White, L.F. and Shurin, J.B. (2011) Density dependent effects of an exotic marine macroalga on native community diversity. Journal of Experimental Marine Biology and Ecology, 405, 111119.Google Scholar
Williams, S.L. and Smith, J.E. (2007) A global review of the distribution, taxonomy, and impacts of introduced seaweeds. Annual Review of Ecology, Evolution, and Systematics 38, 327359.CrossRefGoogle Scholar
Williams, F., Eschen, R., Harris, A., Djeddou, D., Pratt, C., Shaw, R.S., Varia, S., Lamontagne-Godwin, J., Thomas, S.E. and Murphy, S.T. (2010) The economic cost of invasive non-native species on Great Britain. Wallingford and Surrey, UK: Centre for Agricultural Bioscience International.Google Scholar
Wotton, D.M., O'Brien, C., Stuart, M.D. and Fergus, D.J. (2004) Eradication success down under: heat treatment of a sunken trawler to kill the invasive seaweed Undaria pinnatifida. Marine Pollution Bulletin 49, 844849.Google Scholar