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How can alien species inventories and interception data help us prevent insect invasions?

Published online by Cambridge University Press:  04 October 2007

M. Kenis*
Affiliation:
CABI Bioscience Centre, 1 Rue des Grillons, 2800 Delémont, Switzerland
W. Rabitsch
Affiliation:
Austrian Federal Environment Agency Ltd.Department of Nature Conservation, Spittelauer Lände 5, 1090 Vienna, Austria Institute of Zoology, University of Vienna, Althanstrasse 14, A-1090 Vienna, Austria
M.-A. Auger-Rozenberg
Affiliation:
Institut National de la Recherche Agronomique (INRA), Station de Zoologie Forestière, Avenue de la pomme de pine, BP 20619, 45166 Olivet, France
A. Roques
Affiliation:
Institut National de la Recherche Agronomique (INRA), Station de Zoologie Forestière, Avenue de la pomme de pine, BP 20619, 45166 Olivet, France
*
*Author for correspondence Fax: +41 32421 4871 E-mail: m.kenis@cabi.org

Abstract

Information relevant to invasion processes and invasive alien insect species management in Central Europe was extracted from two databases: a compilation of two inventories of alien insects in Austria and Switzerland, and a list of interceptions of non-indigenous plant pests in Europe gathered by the European and Mediterranean Plant Protection Organisation (EPPO) for the period 1995–2004. For one-third of the insects established in Switzerland and Austria, the region of origin is unclear. Others come mainly from North America, Asia and the Mediterranean region. Among the intercepted insects, 40% were associated with commodities from Asia, 32% from Europe and only 2% from North America. Sternorrhyncha, Coleoptera and Psocoptera were particularly well represented in the alien fauna compared to the native fauna. In the interception database, Sternorrhyncha were also well represented but Diptera accounted for the highest number of records. Sap feeders and detritivores were the dominant feeding niches in the alien insect fauna. In contrast, external defoliators, stem borers, gall makers, root feeders, predators and parasitoids were underrepresented. Nearly 40% of the alien insects in Switzerland and Austria live only indoors. Another 15% live outdoors but exclusively or predominantly on exotic plants. Less than 20% are found mainly in ‘natural’ environments. The majority of introductions of alien insects in Europe are associated with the international trade in ornamental plants. An economic impact was found for 40% of the alien insects in Switzerland and Austria, whereas none is known to have an ecological impact. The implications of these observations for further studies and the management of alien species in Europe are discussed.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2007

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References

Alpert, P., Bone, E. & Holzapfel, C. (2000) Invasiveness, invasibility and the role of environmental stress in the spread of non-native plants. Perspectives in Plant Ecology, Evolution and Systematics 3, 5266.CrossRefGoogle Scholar
Baufeld, P. & Enzian, S. (2005) Maize growing, maize high-risk areas and potential yield losses due to western corn rootworm (Diabrotica virgifera virgifera) damage in selected European countries. pp. 285302in Vidal, S., Kuhlmann, U. & Edwards, C.R. (Eds) Western Corn Rootworm: Ecology and Management. Wallingford, CAB International.CrossRefGoogle Scholar
Causton, C.E., Peck, S.B., Sinclair, B.J., Roque-Albelo, L., Hodgson, C.J. & Landry, B. (2006) Alien insects: threats and implications for conservation of Galápagos Islands. Annals of the Entomological Society of America 99, 121143.Google Scholar
Drake, J.M. & Lodge, D.M. (2006) Allee effects, propagule pressure and the probability of establishment: risk analysis for biological invasions. Biological Invasions 8, 365375.CrossRefGoogle Scholar
EEA (2005) EUNIS Habitat Classification. http://eunis.eea.eu.int/habitats.jsp. Cited 20 July 2006.Google Scholar
Elton, C.S. (1958) The Ecology of Invasions by Animals and Plants. 181 pp. London, Methuen.CrossRefGoogle Scholar
Essl, F. & Rabitsch, W. (Eds) (2002) Neobiota in Österreich. Wien, Umweltbundesamt.Google Scholar
Fauna Europaea (2005) http://www.faunaeur.org. Cited 20 July 2006Google Scholar
Freise, J.F. & Heitland, W. (2004) Bionomics of the horse-chestnut leaf miner Cameraria ohridella Deschka and Dimic 1986, a pest on Aesculus hippocastanum in Europe (Insecta: Lepidoptera: Gracillariidae). Senckenbergiana Biologica 84, 120.Google Scholar
Freude, H., Harde, K.W. & Lohse, G.A. (1965–1983) Die Käfer Mitteleuropas, Band 1–11. Krefeld, Germany, Goeke and Evers.Google Scholar
Geiter, O., Homma, S. & Kinzelbach, R. (2002) Bestandsaufnahme und Bewertung von Noezoen in Deutschland. Umweltforschungsplan des Bundesministeriums für Umwelt, Naturschutz und Reaktorsicherheit. Forschungsbericht 296 89 901/'1 UBA-FB 000215.Google Scholar
Godfray, H.C.J. (1994) Parasitoids. Behavioral and Evolutionary Ecology. 471 pp. Princeton University Press, Princeton, USA.CrossRefGoogle Scholar
Gómez, C. & Oliveras, J. (2003) Can the Argentine ant (Linepithema humile Mayr) replace native ants in myrmecorchory? Acta Oecologica 24, 4753.Google Scholar
Haack, R.A. (2001) Intercepted Scolytidae (Coleoptera) at U.S. ports of entry: 1985–2000. Integrated Pest Management Reviews 6, 253282.Google Scholar
Haack, R.A. (2006) Exotic bark- and wood-boring Coleoptera in the United States: recent establishments and interceptions. Canadian Journal of Forest Research 36, 269288.Google Scholar
Hérard, F., Jollivet, C. & Reynaud, P. (2005) Gestion des foyers de capricornes asiatiques: en France, Autriche, Allemagne et Italie, l’éradication est lancée. Phytoma – La Défense des Végétaux 583, 2226.Google Scholar
Hill, M., Baker, R., Broad, G., Chandler, P.J., Copp, G.H., Ellis, J., Jones, D., Hoyland, C., Laing, I., Longshaw, M., Moore, N., Parrot, D., Pearman, D., Preston, C., Smith, R.M. & Waters, R. (2005) Audit of Non-Native Species in England. English Nature Research Report 662, Northminister House, Peterborough, UK.Google Scholar
Kenis, M. (2005) Insects-Insecta. pp. 131212in Wittenberg, R. (Ed.) An inventory of alien species and their threat to biodiversity and economy in Switzerland. CABI Bioscience Switzerland Centre. Centre report to the Swiss Agency for Environment, Forests and Landscape.Google Scholar
Kenis, M., Tomov, R., Svatos, A., Schlinsog, P., Lopez Vaamonde, C., Heitland, W., Grabenweger, G., Girardoz, S., Freise, J. & Avtzis, N. (2005) The horse-chestnut leaf miner in Europe. Prospects and Constraints for biological control. pp. 7790 in Proceedings of the Second International Symposium on Biological Control of Arthropods. Morgantown, WV, USA, Forest Health Technology Enterprise Team, 12–16 September 2005, Davos, Switzerland.Google Scholar
Klausnitzer, B. (2004) Harmonia axyridis (Pallas, 1773) in Basel-Stadt (Coleoptera, Coccinellidae). Mitteilungen der Entomologischen Gesellschaft Basel 54, 115122.Google Scholar
Koch, R.L. (2003) The multicolored Asian lady beetle, Harmonia axyridis: a review of its biology, uses in biological control, and non-target impacts. Journal of Insect Science 3, 32. Available online: insectscience.org/3.32.Google Scholar
Kolar, C.S. & Lodge, D.M. (2001) Progress in invasion biology: predicting invaders. Trends in Ecology and Evolution 16, 199204.CrossRefGoogle ScholarPubMed
Levine, J.M. & D'Antonio, C.M. (2003) Forecasting biological invasions with increasing international trade. Conservation Biology 17, 322326.CrossRefGoogle Scholar
Levine, J.M., Vilà, M., D'Antonio, C.M., Dukes, J.S., Grigulis, K. & Lavorel, S. (2003) Mechanisms underlying the impact of exotic plant invasions. Philosophical Transactions of the Royal Society of London 270, 775781.Google ScholarPubMed
Löhr, B., Varela, A.M. & Santos, B. (1990) Exploration for natural enemies of the cassava mealybug, Phenacoccus manihoti (Homoptera: Pseudococcidae), in South America for the biological control of this introduced pest in Africa. Bulletin of Entomological Research 80, 417421.CrossRefGoogle Scholar
Lonsdale, W.M. (1993) Rates of spread on an invading species – Mimosa pigra in northern Australia. Journal of Ecology 81, 513521.Google Scholar
Louda, S.M., Arnett, A.E., Rand, T.A. & Russell, F.L. (2003) Invasiveness of some biological control insects and adequacy of their ecological risk assessment and regulation. Conservation Biology 17, 322326.Google Scholar
Majerus, M.E.N., Strawson, V. & Roy, H.E. (2006) The potential impacts of the arrival of the harlequin ladybird, Harmonia axyridis (Pallas) (Coleoptera: Coccinellidae), in Britain. Ecological Entomology 31, 207215.Google Scholar
Mattson, W.J., Niemelä, P., Millers, I. & Inguanzo, Y. (1994) Immigrant phytophagous insects on woody plants in the United States and Canada: an annotated list. General Technical Report NC-169. St. Paul (MN), US Department of Agriculture.Google Scholar
McClure, M.S. & Cheah, C.A.S. (1999) Reshaping the ecology of invading populations of hemlock woolly adelgid, Adelges tsugae (Homoptera: Sdelgidae), in Eastern North America. Biological Invasions 1, 247254.Google Scholar
Memmott, J., Craze, P.G., Harman, H.M., Syrett, P. & Fowler, S.V. (2005) The effect of propagule size on the invasion of an alien insect. Journal of Animal Ecology 74, 5062.Google Scholar
Miller, N., Estoup, A., Toepfer, S., Bourguet, D., Lapchin, L., Derridj, S., Kim, K.S., Reynaud, P., Furlan, L. & Guillemaud, T. (2005) Multiple transatlantic introductions of the western corn rootworm. Science 310, 992.CrossRefGoogle ScholarPubMed
Mondor, E.B., Tremblay, M.N. & Messing, R.H. (2007) Morphological and ecological traits promoting aphid colonization of the Hawaiian Islands. Biological Invasions 9, 87100.Google Scholar
National Research Council (United States) (2002) Predicting invasions of non-indigenous plants and plant pests. Washington DC, National Academy Press.Google Scholar
Niemelä, P. & Mattson, W.J. (1996) Invasion of North America Forest by European phytophagous insects. Bioscience 46, 741753.Google Scholar
Parker, I.M., Simberloff, D., Lonsdale, W.M., Goodell, K., Wonham, M., Kareiva, P.M., Williamson, M.H., Von Holle, B., Moyle, P.B., Byers, J.E. & Goldwasser, L. (1999) Impact: toward a framework for understanding the ecological effects of invaders. Biological Invasions 1, 319.Google Scholar
Pimentel, D. (2002) Non-native invasive species of arthropods and plant pathogens in the British Isles. pp. 151158in Pimentel, D. (Ed.) Biological Invasions. Economic and Environmental costs of Alien Plants, Animal and Microbe Species. Boca Raton, USA, CRC Press.Google Scholar
Pimentel, D., Lach, L., Zuniga, R. & Morrison, D. (2002a) Environmental and economic costs associated with non-indigenous species in the United States. pp. 285306in Pimentel, D. (Ed.) Biological Invasions. Economic and Environmental costs of Alien Plants, Animal and Microbe Species. Boca Raton, USA, CRC Press.Google Scholar
Pimentel, D., McNair, S., Janecka, J., Wightman, J., Simmonds, C., O'Connell, C., Wong, E., Russel, L., Zern, J., Aquino, T. & Tsomondo, T. (2002b) Economic and environmental threats of alien plant, animal and microbe invasions. pp. 307330in Pimentel, D. (Ed.) Biological Invasions. Economic and Environmental costs of Alien Plants, Animal and Microbe Species. Boca Raton, USA, CRC Press.Google Scholar
Pyšek, P., Sádlo, J. & Mandák, B. (2002) Catalogue of alien plants of the Czech Republic. Preslia 74, 97186.Google Scholar
Puth, L.M. & Post, D.M. (2005) Studying invasion: have we missed the boat? Ecology Letters 8, 715721.Google Scholar
Rabitsch, W. & Essl, F. (2006) Biological invasions in Austria: Patterns and case studies. Biological Invasions 8, 295308.Google Scholar
Reichard, S.H. & White, P. (2001) Horticulture as a pathway of invasive plant introductions in the United States. BioScience 51, 103113.CrossRefGoogle Scholar
Roques, A. & Auger-Rozenberg, M.A. (2006) Tentative analysis of the interceptions of nonindigenous organisms in Europe during 1995–2004. EPPO Bulletin 36, 490496.CrossRefGoogle Scholar
Šefrová, H, & Laštůvka, Z. (2005) Catalogue of alien animal species in the Czech Republic. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 53, 151170.Google Scholar
Simberloff, D. (1986) Introduced insects: a biogeographic and systematic perspective. pp. 326in Mooney, H.A. & Drake, J.A. (Eds) Ecology of Biological Invasions of North America and Hawaii. New York, Springer-Verlag.Google Scholar
Simberloff, D. (2005) The politics of assessing risk for biological invasions: the USA as a case study. Trends in Ecology and Evolution 20, 216222.Google Scholar
Simberloff, D., Parker, I.M. & Windle, P.N. (2005) Introduced species policy, management and future research needs. Frontiers in Ecology and the Environment 3, 1220.Google Scholar
Smith, R.M., Baker, R.H.A., Malumphy, C.P., Hockland, S., Hammon, R.P., Ostojá-Starzewski, J.C. & Collins, D.W. (2005) Non-native invertebrate plant pests established in Great Britain: an assessment of patterns and trends. BCPC Symposium Proceedings 81, 119124.Google Scholar
Tkacz, B.M. (2002) Pest risks associated with importing wood to the United States. Canadian Journal of Plant Pathology 24, 111116.Google Scholar
Venette, R.C., Moon, R.D. & Hutchison, W.D. (2002) Strategies and statistics of sampling for rare individuals. Annual Review of Entomology 47, 143174.CrossRefGoogle ScholarPubMed
Williamson, M. (1996) Biological Invasions. 244 pp. London, Chapman and Hall.Google Scholar
Wittenberg, R. (Ed.) (2005) An Inventory of Alien Species and their Threat to Biodiversity and Economy in Switzerland. CABI Bioscience Switzerland Centre. Centre report to the Swiss Agency for Environment, Forests and Landscape.Google Scholar
Wittenberg, R. & Cock, M.J.W. (2001) Invasive Alien Species: A Toolkit of Best Prevention and management Practices. 228 pp. Wallingford, CAB International.Google Scholar
Work, T.T., McCullough, D.G., Cavey, J.F. & Komsa, R. (2005) Arrival rate of nonindigenous species into the United States through foreign trade. Biological Invasions 7, 323332.Google Scholar