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Exotic species introductions into South America: an underestimated threat?

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Abstract

Prior studies on the latitudinal extent and ecological impact of exotic plant species suggest that areas of high diversity, such as the Neotropics, may be relatively 'resistant' to invasions. To explore the generality of this assertion and assess the impact of alien species on continental tropical faunas, I compiled data for threatened Neotropical animals from the red data books of Bolivia, Brazil, Minas Gerais (a Brazilian state), Peru, and Venezuela. A total of 378 species (including both vertebrates and invertebrates) were considered. For each taxon, I recorded whether it is threatened by habitat conversion, overexploitation, and/or exotic species. As suggested by other researchers, exotic species introductions appear to be relatively unimportant in South America, threatening only 6% of animal taxa. However, many South American animals are themselves either recent invaders or survivors of the Great American Biotic Interchange (GABI) which began during the Pliocene. Here, I hypothesize that the GABI may have acted as an 'extinction filter', leaving faunal groups of mostly South American origin relatively more threatened by the current wave of exotic invaders than those with prominent North American representation. The data support this prediction. For taxa whose current diversity patterns were not strongly influenced by the GABI, exotic species are indeed an important threat. For example, alien invaders threaten 29% of continental fishes and 30% of amphibians, figures comparable to those recorded in temperate areas. As more information on these less-studied taxa becomes available, the magnitude of the threat posed by exotic species introductions will probably reveal itself to be large. Of critical importance is to assess the impact of invasions on biological realms that have only been recently exposed to alien taxa, such as the aquatic faunas of the numerous drainages that occur along the eastern and western slopes of the South American Andes. The results of these investigations provide predictions for similar research focussed on other continental tropical regions of the world.

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References

  • Allan JD andFlecker AS (1993) Biodiversity conservation in running waters. BioScience 43: 32-43

    Google Scholar 

  • Andrade GI (1998a)Efecto de las especies introducidas y transplantadas sobre la biota local. In: Chaves ME andArango N (eds) Informe nacional sobre el estado de la biodiversidad 1997-Colombia. Tomo II. Causas de pérdida de biodiversidad, pp 93-95. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt, PNUMA, Ministerio del Medio Ambiente, Santaféde Bogotá, Colombia

    Google Scholar 

  • Andrade GI (1998b)Introducción de especies en ecosistemas terrestres. In: Chaves ME andArango N (eds) Informe nacional sobre el estado de la biodiversidad 1997-Colombia. Tomo II. Causas de pérdida de biodiversidad, pp 96-98. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt, PNUMA, Ministerio del Medio Ambiente, Santaféde Bogotá, Colombia

    Google Scholar 

  • Armstrong S (1995) Rare plants protect Cape's water supplies. New Scientist 145: 8

    Google Scholar 

  • Balmford A (1996) Extinction filters and current resilience: the significance of past selection pressures for conservation biology. Trends in Ecology and Evolution 11: 193-196

    Google Scholar 

  • Banarescu P (1992) Zoogeography of Fresh Waters, vol. 2. Distribution and Dispersal of Freshwater Animals in North America and Eurasia. AULA-Verlag, Wiesbaden, Germany

    Google Scholar 

  • Berger L,Speare R,Daszak P,Green DE,Cunningham AA,Goggin CL,Slocombe R,Ragan MA,Hyatt AD,McDonald KR,Hines HB,Lips KR,Marantelli G andParkes H (1998) Chytridiomycosis causes amphibian mortality associated with population declines in the rain forests of Australia and Central America. Proceedings of the National Academy of Sciences USA 95: 9031-9036

    Google Scholar 

  • Bonino NA (1995) Introduced mammals in Patagonia, southern Argentina: consequences, problems, and management considerations. In: Bissonette JA andKrausman PR (eds) Proceedings of the First International Wildlife Management Congress, pp 406-409. The Wildlife Society, Bethesda, Maryland

    Google Scholar 

  • Bruggers RL andZaccagnini ME (1994) Vertebrate pest problems related to agricultural production and applied research in Argentina. Vida Silvestre Neotropical 3: 71-83

    Google Scholar 

  • Bussing WA (1985) Patterns of distribution of the Central American ichthyofauna. In: Stehli FG andWebb SD (eds) The Great American Biotic Exchange, pp 453-473. Plenum Press, New York/London

    Google Scholar 

  • Carey JR,Moyle PB,Rejmánek M andVermeij G (eds) (1996) Invasion biology. Biological Conservation 78: 1-214

  • Case TJ (1991) Invasion resistance, species build-up and community collapse in metapopulation models with interspecific competition. Biological Journal of the Linnean Society 42: 239-266

    Google Scholar 

  • Case TJ (1996) Global patterns in the establishment and distribution of exotic birds. Biological Conservation 78: 69-96

    Google Scholar 

  • Chacón de Ulloa P (1998)Introducción de la hormiga loca en Colombia. In: Chaves ME andArango N (eds) Informe nacional sobre el estado de la biodiversidad 1997-Colombia. Tomo II. Causas de pérdida de biodiversidad, pp 99-100. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt, PNUMA, Ministerio del Medio Ambiente, Santaféde Bogotá, Colombia

    Google Scholar 

  • Collar NJ,Crosby MJ andStattersfield AJ (1994) Birds to Watch 2. The World List of Threatened Birds. BirdLife International, Cambridge, UK

    Google Scholar 

  • Cowling RM,Rundel PW,Lamont BB,Arroyo MK andArianoutsou M (1996) Plant diversity in Mediterranean-climate regions. Trends in Ecology and Evolution 11: 362-366

    Google Scholar 

  • D'Antonio CM andVitousek PM (1992) Biological invasions by exotic grasses, the grass/fire cycle, and global change. Annual Review of Ecology and Systematics 23: 63-87

    Google Scholar 

  • Descimon H (1986) Origins of lepidopteran faunas in the high tropical Andes. In: Vuilleumier F andMonasterio M (eds) High Altitude Tropical Biogeography, pp 500-532. Oxford University Press, Oxford, UK

    Google Scholar 

  • Díaz-Sarmiento JA andAlvarez-León R (1998) Fish diversity conservation in Colombia. In: Harvey B,Ross C,Greer D andCarolsfeld J (eds) Action Before Extinction, pp 215-222. World Fisheries Trust, Victoria, BC, Canada

    Google Scholar 

  • Drake JA,Mooney HA,di Castri F,Groves RH,Kruger RH,Rejmanek FJ andWilliamson M (eds) (1989) Biological Invasions: A Global Perspective. Wiley, New York

    Google Scholar 

  • Duellman WE (1979) The South American herpetofauna: a panoramic view. In: Duellman WE (ed) The South American Herpetofauna: Its Origin, Evolution, and Dispersal, pp 1-28. Museum of Natural History, The University of Kansas, Lawrence, Kansas

    Google Scholar 

  • Duellman WE (1988) Patterns of species diversity in anuran amphibians in the American tropics. Annals of the Missouri Botanical Garden 75: 79-104

    Google Scholar 

  • Elton CS (1958) The Ecology of Invasions by Animals and Plants. Methuen & Co., London

    Google Scholar 

  • Ergueta P andde Morales C (eds) (1996) Libro rojo de los vertebrados de Bolivia. Centro de Datos para la Conservación, La Paz, Bolivia

    Google Scholar 

  • Fang TG,Bodmer RE,Aquino R andValqui MH (eds) (1997) Manejo de fauna silvestre en la Amazonía. Universidad Nacional de la Amazonía Peruana, University of Florida, UNDP/GEF, Instituto de Ecología, La Paz, Bolivia

    Google Scholar 

  • Fonseca GAB,Rylands AB,Costa CMR,Machado RB andLeite YLR (1994) Livro vermelho dos mamíferos brasileiros ameaçados de extinção. Fundação Biodivesitas, Belo Horizonte, Brazil

    Google Scholar 

  • Glade AA (ed) (1988) Libro rojo de los vertebrados terrestres de Chile. Corporación Nacional Forestal, Santiago, Chile

    Google Scholar 

  • Groombridge B (ed) (1993) 1994 IUCN Red List of Threatened Animals. IUCN, Gland, Switzerland/Cambridge, UK

    Google Scholar 

  • Gutiérrez FP andAlvarado H (1998)Introducción de especies en ecosistemas acuáticos. In: Chaves ME andArango N (eds) Informe nacional sobre el estado de la biodiversidad 1997-Colombia. Tomo II. Causas de pérdida de biodiversidad, pp 106-110. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt, PNUMA, Ministerio del Medio Ambiente, Santaféde Bogotá, Colombia

    Google Scholar 

  • Iriarte JA,Feisinger P andJaksic FM (1997) Trends in wildlife use and trade in Chile. Biological Conservation 81: 9-20

    Google Scholar 

  • IUCN (1994) IUCN Red List Categories. IUCN Species Survival Commission, Gland, Switzerland

    Google Scholar 

  • Jaksic FM (1998) Vertebrate invaders and their ecological impacts in Chile. Biodiversity and Conservation 7: 1427-1445

    Google Scholar 

  • Jiménez Pérez I (1996)Limitaciones de la reintroducción y cría en cautiverio como herramientas de conservación. Vida Silvestre Neotropical 5: 89-100

    Google Scholar 

  • Kareiva Pe (1996) Developing a predictive ecology for non-indigenous species and ecological invasions. Ecology 77: 1651-1697

    Google Scholar 

  • Kaufman L (1992) Catastrophic change in species-rish freshwater ecosystems. BioScience 42: 846-858

    Google Scholar 

  • La Marca E andReinthaler HP (1991) Population changes in Atelopus species of the cordillera de Mérida, Venezuela. Herpetological Review 22: 125-128

    Google Scholar 

  • Lampo M andDe Leo GA (1998) The invasion ecology of the toad Bufo marinus: from South America to Australia. Ecological Applications 8: 388-396

    Google Scholar 

  • Lessa EP andFariña RA (1996) Reassessment of extinction patterns among the Late Pleistocene mammals of South America. Palaeontology 39: 651-662

    Google Scholar 

  • Lips KR (1999) Mass mortality and population declines of anurans at an upland site in western Panama. Conservation Biology 13: 117-125

    Google Scholar 

  • Lonsdale WM (1999) Global patterns of plant invasions and the concept of invasibility. Ecology 80: 1522-1536

    Google Scholar 

  • López-Rojas H andBonilla-Rivero AL (2000) Anthropogenically induced fish diversity reduction in lake Valencia basin, Venezuela. Biodiversity and Conservation 9: 757-765

    Google Scholar 

  • Machado ABM,da Fonseca GAB,Machado RB,Aguiar LMS andLins LV (eds) (1998) Livro vermelho das espécies ameaçadas de extinção da fauna de Minas Gerais. Fundação Biodiversitas, Belo Horizonte, Brazil

    Google Scholar 

  • Mack RN,Simberloff D,Lonsdale WM,Evans H,Clout M andBazzaz FA (2000) Biotic invasions: causes, epidemiology, global consequences, and control. Ecological Applications 10: 689-710

    Google Scholar 

  • Mares MA (1985) Mammal faunas of xeric habitats and the Great American Interchange. In: Stehli FG andWebb SD (eds) The Great American Biotic Exchange, pp 489-520. Plenum Press, New York/London

    Google Scholar 

  • Mares MA andOjeda RA (1984) Faunal commercialization and conservation in South America. Bioscience 34: 580-584

    Google Scholar 

  • Marshall LG (1988) Land mammals and the Great American Interchange. American Scientist 76: 380-388

    Google Scholar 

  • Marshall LG,Webb SD,Sepkoski JJ Jr andRaup DM (1982) Mammalian evolution and the Great American Interchange. Science 215: 1351-1357

    Google Scholar 

  • May RM (1998) The scientific investment of nations. Science 281: 49-51

    Google Scholar 

  • McKinney ML (1999) High rates of extinction and threat in poorly studied taxa. Conservation Biology 13: 1273-1281

    Google Scholar 

  • McKinney ML andLockwood JL (1999) Biotic homogenization: a few winners replacing many loosers in the next mass extinction. Trends in Ecology and Evolution 14: 450-453

    Google Scholar 

  • Molur S andWalker S (1998) Conservation assessment of the herpetofauna of India-an overview. Hamadryad 23: 169-178

    Google Scholar 

  • Moulton MP andPimm SL (1986) Species introductions to Hawaii. In: Mooney HA andDrake JA (eds) Ecology of Biological Invasions of North America and Hawaii, pp 231-249. Springer-Verlag, New York

    Google Scholar 

  • Nilsson G (1983) The Endangered Species Handbook. Animal Welfare Institute, Washington, DC

    Google Scholar 

  • Ogutu-Ohwayo R (1993) The effects of predation by Nile perch, Lates niloticus L., on the fish of lake Nabugabo, with suggestions for conservation of endangered endemic cichlids. Conservation Biology 7: 701-711

    Google Scholar 

  • Ojasti J (1993)Utilización de la fauna silvestre en América Latina. Situación y perspectivas para un manejo sostenible. FAO, Rome

    Google Scholar 

  • Parsons J (1972) Spread of African pasture grasses to the American tropics. Journal of Range Management 25: 12-17

    Google Scholar 

  • Pimentel D,Lach L,Zuniga R andMorrison D (2000) Environmental and economic costs of nonindigenous species in the United States. BioScience 50: 53-65

    Google Scholar 

  • Pimm SL (1998) Extinction. In: Sutherland WJ (ed) Conservation Science and Action, pp 20-38. Blackwell Science, Oxford, UK

    Google Scholar 

  • Pulido V (1991) El Libro Rojo de La Fauna Silvestre del Peru. Instituto Nacional de Investigación Agraria y Agroindustrial, Lima, Peru

    Google Scholar 

  • Pysek P (1995) Recent trends in studies on plant invasions (1974-1993). In: Pysek P,Prach K,Rejmánek M andWade M (eds) Plant Invasions-General Aspects and Special Problems, pp 223-236. SPB Academic Publishing, Amsterdam

    Google Scholar 

  • Rahel FJ (2000) Homogenization of fish faunas across the United States. Science 288: 854-856

    Google Scholar 

  • Rejmánek M (1996) Species richness and resistance to invasions. In: Orians GH,Dirzo R andCushman JH (eds) Biodiversity and Ecosystem Processes in Tropical Forests, pp 153-172. Springer-Verlag, Berlin

    Google Scholar 

  • Ricciardi A andRasmussen JB (1999) Extinction rates of North American freshwater fauna. Conservation Biology 13: 1220-1222

    Google Scholar 

  • Riedel D (1965) Some remarks on the fecundity of Tilapia (T. mossambica Peters) and its introduction into middle Central America (Nicaragua) together with a first contribution towards the limnology of Nicaragua. Hydrobiologia 25: 357-388

    Google Scholar 

  • Robinson JG andRedford KH (eds) (1991) Neotropical Wildlife Use and Conservation. University of Chicago Press, Chicago

    Google Scholar 

  • Rodríguez JP andRojas-Suárez F (1998a) Fauna amenazada de Venezuela: causas pasadas, presiones actuales y perspectivas futuras. Vida Silvestre Neotropical 7: 90-98

    Google Scholar 

  • Rodríguez JP andRojas-Suárez F (1998b) Libro rojo de la fauna Venezolana, segunda edición. PROVITA, Fundación Polar, Caracas

    Google Scholar 

  • Rueda JV (1998b) Aspectos generales sobre la situación actual de las poblaciones adventicias de rana toro (Rana castbeiana) en el valle del Cauca. In: Chaves ME andArango N (eds) Informe nacional sobre el estado de la biodiversidad 1997-Colombia. Tomo II. Causas de pérdida de biodiversidad, pp 101-103. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt, PNUMA, Ministerio del Medio Ambiente, Santafé de Bogotá, Colombia

    Google Scholar 

  • São Paulo (1998) Fauna ameaçada no estado de São Paulo. Secretaria de Estado do Meio Ambiente, São Paulo, Brazil

    Google Scholar 

  • Señaris JC andLasso C (1993)Ecología alimentaria y reproductiva de la mojarra de río Caquetaia kraussii (Steindachner 1878) (Pisces; Cichlidae) en los llanos inindables de Venezuela. Publicaciones de la Asociación de Amigos de Doñana 2: 1-58

    Google Scholar 

  • Stehli FG andWebb SD (eds) (1985) The Great American Biotic Exchange. Plenum Press, New York/London

    Google Scholar 

  • UNEP (1995) Global Biodiversity Assessment. United Nations Environment Programme, Cambridge University Press, Cambridge, UK

    Google Scholar 

  • Vanzolini PE andHeyer WR (1985) The American herpetofauna and the interchange. In: Stehli FG andWebb SD (eds) The Great American Biotic Exchange, pp 475-487. Plenum Press, New York/London

    Google Scholar 

  • Vermeij GJ (1991) When biotas meet: understanding biotic exchange. Science 253: 1099-1104

    Google Scholar 

  • Villa B,Franco DW andFranco DC (1994) Population structure and reproductive characteristics of the Norway rat (Rattus norvegicus) in some markets of Mexico city. Vida Silvestre Neotropical 3: 112-114

    Google Scholar 

  • Villwock W (1986) Speciation and adaptive radiation in Andean Orestias fishes. In: Vuilleumier F andMonasterio M (eds) High Altitude Tropical Biogeography, pp 387-403. Oxford University Press, Oxford, UK

    Google Scholar 

  • Villwock W (1994)Consecuencias de la introducción de peces exóticos sobre las especies nativas del lago Titicaca. Ecología en Bolivia 23: 49-56

    Google Scholar 

  • Vitousek PM (1988) Diversity and biological invasions of oceanic island. In: Wilson EO (ed) Biodiversity, pp 181-189. National Academy Press, Washington, DC

    Google Scholar 

  • Vitousek PM,D'Antonio CM,Loope LL,Rejmánek M andWestbrooks R (1997) Introduced species: a significant component of human-caused global change. New Zealand Journal of Ecology 21: 1-16

    Google Scholar 

  • Vuilleumier F (1985) Fossil and recent avifaunas and the interamerican interchange. In: Stehli FG andWebb SD (eds) The Great American Biotic Exchange, pp 387-424. Plenum Press, New York/London

    Google Scholar 

  • Vuilleumier F (1986) Origins of the tropical avifaunas of the high Andes. In: Vuilleumier F andMonasterio M (eds) High Altitude Tropical Biogeography, pp 586-622. Oxford University Press, Oxford, UK

    Google Scholar 

  • WCMC (1994) Biodiversity Data Sourcebook. World Conservation Press, Cambridge, UK

    Google Scholar 

  • Webb DS (1985) Late Cenozoic mammal dispersals between the Americas. In: Stehli FG andWebb SD (eds) The Great American Biotic Exchange, pp 357-386. Plenum Press, New York/London

    Google Scholar 

  • Welcomme RL (1990) Status of fiheries in South American rivers. Interciencia 15: 337-245

    Google Scholar 

  • Wilcove DS andBean MJ (eds) (1994) The Big Kill. Environmental Defense Fund, Washington, DC

    Google Scholar 

  • Wilcove DS,McMillan M andWinston KC (1993) What exactly is an endangered species? An analysis of the US endangered species list: 1985-1991. Conservation Biology 7: 87-93

    Google Scholar 

  • Wilcove DS,Fujita R andGoldburg B (1994) Enlightened fisheries management: solving problems instead of creating them. In: Wilcove DS and Wilcove, J BM (eds) The Big Kill, pp 247-266. Environmental Defense Fund, Washington, DC

    Google Scholar 

  • Wilcove DS,Rothstein D,Dubow J,Phillips A andLosos E (1998) Quantifying threats to imperiled species in the United States. BioScience 48: 607-615

    Google Scholar 

  • Williamson M (1999) Invasions. Ecography 22: 5-12

    Google Scholar 

  • Wilson EO (1992) The Diversity of Life. W. W. Norton & Company, New York/London

    Google Scholar 

  • Witte F,Goldschmidt T,Wanink J,van Oijen M,Goudswaard K,Witte-Maas E andBouton N (1992) The destruction of an endemic species flock: quantitative data on the decline of the haplochromine cichlids of lake Victoria. Environmental Biology of Fishes 34: 1-28

    Google Scholar 

  • Wurtsbaugh WA andTapia RA (1988) Mass mortality of fishes in Lake Titicaca (Peru-Bolivia) associated with the protozoan parasite Ichthyophthirius multifiliis. Transactions of the American Fisheries Society 117: 213-217

    Google Scholar 

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Paul Rodríguez, J. Exotic species introductions into South America: an underestimated threat?. Biodiversity and Conservation 10, 1983–1996 (2001). https://doi.org/10.1023/A:1013151722557

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