Information required under Article 4(4) of Regulation No. 1143/2014

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Information required under Article 4(4) of Regulation No. 1143/2014 Invasive alien species shall only be included on the Union list if they meet all of the following criteria: (a) they are found, based on available scientific evidence, to be alien to the territory of the Union excluding the outermost regions; The American mink (Neovison vison) is native to North America: its natural range extends from Alaska and Canada through most of the United States, except a few southern regions as California, Nevada, Arizona, Utah, New-Mexico and West-Texas (Dunstone, 1993, Larivière 1999). The species is present in most of Europe and is still spreading. The known distribution consist of the following countries in the EU: Austria, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Ireland, Italy, Latvia, Lithuania, Poland, Portugal, Romania, Slovakia, Spain, Sweden, United Kingdom (Macdonald & Harrington 2003, Bonesi & Palazón 2007, Roy et al 2009, Zalewski et al 2010, Hegyeli & Kecskés 2015). Moreover, the species was recorded (without evidences of established populations) in Belgium, Hungary, Luxembourg, Netherland and Slovenia (Bonesi & Palazón 2007, Dekker & Hofmeester 2014). Escapes and deliberate releases from fur farms have been the main pathways for the establishment of feral populations. (b) they are found, based on available scientific evidence, to be capable of establishing a viable population and spreading in the environment under current conditions and in foreseeable climate change conditions in one biogeographical region shared by more than two Member States or one marine subregion excluding their outermost regions; American mink can be considered as an effective invader: it is an opportunistic predator with a high reproduction rate, it is capable to adapt to a number of habitat types, and juveniles can disperse long distances from their natal territories. The species is spreading rapidly in Europe, being common in major part of the continent, from North (Finland, Sweden, and Norway) to South (Portugal, Spain) (Macdonald & Harrington 2003, Bonesi & Palazón 2007). Successful colonisation observed in very different climatic and landscape conditions suggests that the species may invade most of Europe in the nearest future unless appropriate measures are implemented. Thus, the species could establish in different biogeographic regions in the Av. da República, 16 a 16B, 1050-191 Lisboa, PORTUGAL TEL 21 350 79 00 1/5

EU such as Alpine, Baltic, Boreal, Continental, Atlantic, Mediterranean, Steppic, Pannonian and Black sea region. Following this, the American mink could become invasive in 9 countries in the EU where it is not known to exist (as an established population): Belgium, Bulgaria, Croatia, Cyprus, Hungary, Malta, the Netherlands, Luxembourg, and Slovenia. Further, a number of countries (e.g., Portugal Rodrigues et al. 2015) have still locations free of American mink, and it is likely to invade to these areas as well. Landscape features such as mountains may slow down but not stop the rate of colonisation (Zalewski et al 2009, Fraser et al 2013). The species can be successfully kept and bred in captivity (fur farms) and it may establish in a variety of habitats in the wild: rivers, streams, canals, wetlands, lakes and coastal areas. There is no evidence that the existence of competitors, predators or diseases will prevent the establishment of new populations. (c) they are, based on available scientific evidence, likely to have a significant adverse impact on biodiversity or the related ecosystem services, and may also have an adverse impact on human health or the economy; American mink is an invasive mammal with the highest impact on native species in Europe, affecting negatively at least 47 native species. Several of these species are considered as threatened (Genovesi et al. 2012). Through ecological competition American mink affects negatively several native carnivores: for example, American mink is a direct cause of the extinction of the few last remaining populations of the European mink (Maran et al. 1998, Sidorovich & Macdonald 2001). It may also affect other small mustelids such as polecat (Barrientos 2015) and stoat (Sidorovich & Solovej 2007). Alien mink predation seriously damages waterfowl, small mammals, amphibians and fish across Europe (Barreto et al. 1998, Macdonald et al. 2002, Nordström et al. 2002, 2003, Ahola et al. 2006, Fischer et al. 2009, Melero et al. 2012). It may also launch small-scale trophic cascades, e.g. affecting plant biodiversity through its predation on voles (Fey et al. 2009). American mink may cause damages to small livestock, preying on chickens, rabbits and other small domestic animals. Also, its presence in fish farms or fish ponds may cause economic damages (for example, some damages have been reported from Norwegian salmon farms and UK fresh water trout farms). Mink may also affect hunting reserves as a predator of rabbits and partridges. Economic losses related to conservation/control activities may be very high. Eradication and control of the species is generally costly, especially if the activity (eradication) covers a large area (Roy et al. 2009, Zabala et al. 2010, Roy 2011). (d) it is demonstrated by a risk assessment carried out pursuant to Article 5(1) that concerted action at Union level is required to prevent their introduction, establishment or spread; 2/5

The Risk Assessment carried out shows clearly that there is a need for concrete action at EU level to prevent the potential introduction, establishment and spread. Probability of entry, establishment and spread is carefully evaluated in the Risk Assessment. It is found that the lack of regulations demanding farms to take precautionary measures to avoid escapes in several European countries makes the likelihood of escapes very high and there is a need to elaborate means and methods to prevent mink escapes from farms. Preventing of American mink establishment in the wild and moving into new areas is a difficult task but well-planned conservation activities may prevent the colonization at a local level. Removal and control of the species has been successfully carried out at local level in different countries (UK, Spain, Finland, Estonia). EU-level coordinated action is required to prevent its expansion into the areas which still remain free of the American mink. (e) it is likely that the inclusion on the Union list will effectively prevent, minimise or mitigate their adverse impact. Including the American mink on the EU list of invasive alien species would help to prevent or at least, minimise, its adverse impact. Currently, control and eradication programs are on-going in several countries (Spain, UK, Poland) but to ensure effectiveness of those activities to reduce ecological damage, it is important that sufficient resources are provided to cover the costs. Funding available from the EU is an important mechanism to prevent the negative impact of the American mink in the areas. 3/5

REFERENCES: Ahola, M., Nordström, M., Banks, P.B., Laanetu, N. & Korpimäki, E. (2006) Alien mink predation induces prolonged declines in archipelago amphibians. Proc. R. Soc. B 273: 1261 1265. Barreto, G. R., Rushton, S. P., Strachan, R. and Macdonald, D. W. (1998) The role of habitat and mink predation in determining the status and distribution of declining populations of water voles in England. Anim. Conserv. 1: 129 137. Barrientos, R. (2015) Adult sex-ratio distortion in the native European polecat is related to the expansion of the invasive American mink. Biological Conservation. 186: 28-34. DOI: 10.1016/j.biocon.2015.02.030 Bonesi, L. & Palazon, S. (2007) The American mink in Europe: status, impacts and control. Biological Conservation 134: 470-483. Dekker, J.J.A & Hofmeester, T.R. (2014) The status of the American mink (Neovison vison) in the Netherlands. Lutra, 57 (1): 5-15. Dunstone, N. (1993) The mink. T & AD Pyser Natural History, London. Fey, K., Banks, P.B, Oksanen, L. & Korpimäki, E. (2009) Does removal of an alien predator from small islands in the Baltic Sea induce a trophic cascade? Ecography 32: 546-552. Fischer, D. (2009) Predation of the alien American mink, Mustela vison on native crayfish in middle-sized streams in central and western Bohemia. Folia Zool. 58: 45 56. Fraser, E.J., Macdonald, D.W., Oliver, M.K., Piertney, S. & Lambin, X. (2013) Using population genetic structure of an invasive mammal to target control efforts an example of the American mink in Scotland. Biological Conservation, 167: 35 42. Genovesi, P., Carnevali, L., Alonzi, A. and Scalera, R. (2012) Alien mammals in Europe: updated numbers and trends, and assessment of the effects on biodiversity. Integrative Zoology, 7: 247 253. Hegyeli, Z. & Kecskes, A. (2014) The occurrence of wild-living American Mink Neovison vison in Transylvania, Romania. Small Carnivore Conservation, 51: 23 28. Larivière, S. (1999) Mustela vison. Mammalian Species 608: 1-9. Macdonald, D. W., Sidorovich, V. E., Anisomova, E. I., Sidorovich, N. V. and Johnson, P. J. (2002a) The impact of American mink Mustela vison and European mink Mustela lutreola on water voles Arvicola terrestris in Belarus. Ecography, 25: 295 302. Macdonald, D.W. & Harrington, L.A. (2003) The American mink: the triumph and tragedy of adaptation out of context. New Zealand Journal of Zoology 30: 421-441. 4/5

Maran, T., Macdonald, D.W., Kruuk. H., Sidorovich. V., Rozhnov, V.V. (1998) The continuing decline of the European mink, Mustela lutreola: evidence for the intraguild aggression hypothesis. In: Dustone N, Gorman ML (eds) Behaviour and ecology of riparian mammals. Symposia of the Zoological Society of London, Cambridge University Press: 297 324. Melero, Y., Plaza, M., Santulli, G., Saavedra, D., Gosàlbez, J., Ruiz-Olmo, J. & Palazón, S. (2012) Evaluating the effect of American mink, an alien invasive species, on the abundance of a native community: is coexistence possible? Biodiversity and Conservation 21: 1795 1809. Nordström, M., Högmander, J., Nummelin, J., Laine, J., Laanetu, N. & Korpimäki, E. (2002) Variable responses of waterfowl breeding populations to long-term removal of introduced American mink. Ecography 25: 385 394. Nordström, M. (2003) Introduced predator in Baltic Sea archipelagos: variable effects of feral mink on bird and small mammal populations. PhD thesis, Annales Universitatis Turkuensis, SER. AII, TOM. 158. Roy, S., Reid, N., McDonald, R.A. (2009) A review of mink predation and control in Ireland. Iris Wildlife Manuals, No. 40. National Parks and Wildlife Service, Department of the Environment, Heritage and Local Government, Dublin, Ireland. Roy, S. (2011) Strategies to improve landscape scale management of mink populations in the west coast of Scotland: lessons learned from the Uists 2001-2006. In: Veitch, C. R.; Clout, M. N. and Towns, D. R. (eds.). 2011. Island invasives: eradication and management. IUCN, Gland, Switzerland. Pages 114-117. Rodrigues, D.C., Simões, L., Mullins, J., Lamoa, S., Fernandes, C., Rebelo, R., Santos-Reis, M. (2015) Tracking the expansion of the American mink (Neovison vison) range in NW Portugal. Biological Invasions, 17 (1): 13-22. Sidorovich, V. & Solovej, I. (2007) The stoat Mustela erminea population decline in northern Belarus and its consequences for weasels Mustela nivalis. New Zealand Journal of Zoology 34:9-23. Sidorovich, V. & MacDonald, D.W. (2001). Density dynamics and changes in habitat use by the European mink and other native mustelids in connection with the American mink expansion in Belarus. Netherlands Journal of Zoology 51(1): 107-126. Zabala, J., Zuberogoitia, I. & González-Oreja, J.A. (2010) Estimating costs and outcomes of invasive American mink (Neovison vison) management in continental areas: a framework for evidence based control and eradication. Biol. Invasions. 12: 2999-3012. Zalewski, A., Michalska Parda, A., Bartoszewicz, M., Kozakiewicz, M., Brzezinski, M. (2010) Multiple introductions determine the genetic structure of an invasive species population: American mink Neovison vison in Poland. Biological Conservation, 143, 6:1355 1363 5/5