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Ecological consequences of hunting in Atlantic forest patches, São Paulo, Brazil

Published online by Cambridge University Press:  24 April 2009

L. Cullen Jr
Affiliation:
IPÊ-Instituto de Pesquisas Ecologicas, Parque Estadual do Morro do Diabo, C.P. 91, Teodoro Sampaio, SP. 19280–000, Brazil. E-mail: [email protected]
C. Valladares-Padua
Affiliation:
IPÊ-Instituto de Pesquisas Ecologicas, Parque Estadual do Morro do Diabo, C.P. 91, Teodoro Sampaio, SP. 19280–000, Brazil. E-mail: [email protected]
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Abstract

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This paper evaluates the ecological consequences of hunting by comparing mammalian densities, biomass, relative energy consumption and community structure between sites with different levels of hunting pressure. Hunting is carried out mainly by colonists who farm on the edge of Atlantic forest fragments in the State of São Paulo, Brazil. Mammals were studied over a period of 18 months, along 2287 km of line transects. Transects were distributed among two protected sites, one slightly hunted site and two heavily hunted sites. Tapirs, the two peccary species, brocket deer, armadillos and agoutis are preferred by hunters in the region. Primates are not hunted in the region. Hunting has affected community structure, with ungulates dominating mammalian biomass at protected sites and primates dominating at hunted sites. This has caused an ecological inversion in the hunted areas of the Atlantic forests. In Amazonian regions of the Neotropics hunting is more evenly distributed among primates, large rodents, and ungulates and has resulted in an opposite inversion, with hunted sites having lower primate biomass. Atlantic forests are very susceptible to the possible ecological imbalances induced by hunting by humans, and this must be considered for management and conservation programmes.

Type
Research Article
Copyright
Copyright © Fauna and Flora International 2001

References

Ab'Saber, A. N. (1977) Os domínios morfoclimáticos da América do Sul. Geomorfologia, 52, 123.Google Scholar
Alvard, M. (1998) Indigenous hunting in the Neotropics: conservation or optimal foraging? In Behavioral Ecology and Conservation Biology (ed. Caro, T. M.), pp. 474500. Oxford University Press, Oxford.CrossRefGoogle Scholar
Baitello, J. B., Pastore, J. A., Aguiar, O. T., Serio, F. C. & Silva, C. E. (1988) A vegetação do Parque Estadual do Morro do Diabo, municipio de Teodoro Sampaio, Estado de São Paulo. Acta Botânica Brasileira, 1, 221230.CrossRefGoogle Scholar
Bodmer, R. E. (1989) Frugivory in Amazonian artiodactyla: evidence for the evolution of the ruminant stomach, journal of Zoology, 219, 457467.Google Scholar
Bodmer, R. E. (1991) Strategies of seed dispersal and seed predation in Amazonian ungulates. Biotropica, 23, 255261.CrossRefGoogle Scholar
Bodmer, R. E., Eisenberg, J. F. & Redford, K. H. (1997) Hunting and the likelihood of extinction of Amazonian mammals. Conservation Biology, 11, 460466.Google Scholar
Buckland, S. T., Anderson, D. R., Burnham, K. P. & Laake, J. L. (1993) DISTANCE Sampling: Estimating Abundance of Biological Populations. Chapman & Hall, London.Google Scholar
Burnham, K. P., Anderson, D. R. & Laake, J. L. (1980) Estimation of density from line transect sampling of biological populations. Wildlife Monographs, 72, 202.Google Scholar
Cullen, L. Jr (1997) Hunting and biodiversity in Atlantic forest fragments, São Paulo, Brazil. MSc Thesis, University of Florida, Florida, USA.Google Scholar
Cullen, L. Jr, Bodmer, R. E. & Valladares-Padua, C. (2000) Effects of hunting in habitat fragments of the Atlantic forests, Brazil. Biological Conservation, 95, 4956.CrossRefGoogle Scholar
Eisenberg, J. F. (1980) The density and biomass of tropical mammals. In Conservation Biology, an Evolutionary-Ecological Perspective (eds Soule, M. E. and Wilcox, B. A.), pp. 3555. Sinauer Press, Sunderland.Google Scholar
Eisenberg, J. F., O'Connell, M. A. & August, P. V. (1979) Density, productivity, and distribution of mammals in two Venezuelan habitats. In Vertebrate Ecology in the Northern Neotropics (ed. Eisenberg, J. F.), pp. 187207. Smithsonian Institution Press, Washington, DC.Google Scholar
Eisenberg, J. F. & Thorington, R. W. (1973) A preliminary analysis of a Neotropical mammal fauna. Biotropica, 5, 150161.CrossRefGoogle Scholar
Emmons, L. H. (1984) Geographic variation in densities and diversities of non-flying mammals in Amazonia. Biotropica, 16, 210222.CrossRefGoogle Scholar
Fragoso, J. M. (1998) Home range and movement patterns of white-lipped peccary (Tayassu pecari) herds in the northern Brazilian Amazon. Biotropica, 30, 458469.CrossRefGoogle Scholar
Glanz, W. E. (1982) The terrestrial mammal fauna of Barro Colorado Island: censuses and long-term changes. In The Ecology of a Tropical Forest (eds Leigh, E. G., Rand, A. S. and Windsor, D. M.), pp. 455468. Smithsonian Institution Press, Washington, DC.Google Scholar
Hill, K. & Padwe, J. (2000) Sustainability of Aché hunting in the Mbaracayu Reserve, Paraguay. In Hunting for Sustainability in Tropical Forests (eds Robinson, J. G. and Bennett, E. L.), pp. 79105. Columbia University Press, New York.Google Scholar
Hueck, K. (1972) As florestas da América do Sul. Editora Polígono e Editora Universidade de Brasilia, São Paulo, Brasilia.Google Scholar
Janson, C. H. & Emmons, L. H. (1990) Ecological structure of the non-flying mammal community at Cocha Cachu Biological Station, Manu National Park, Peru. In Four Neotropical Rainforests (ed. Gentry, A. H.), pp. 314338. Yale University Press, New Haven, USA.Google Scholar
Laake, J. L., Buckland, S. T., Anderson, D. R. & Burnham, K. P. (1994) DISTANCE User's Guide. Colorado Cooperative Fish and Wildlife Service, Fort Colins, Colorado, USA.Google Scholar
Lawton, J. H. (1995) Population dynamic principles. In Extinction Rates (eds Lawton, J. H. and May, R. M.), pp. 147163. Oxford University Press, Oxford.Google Scholar
Lorenzi, H. (1992) Árvores Brasileiras: Manual de indentificaçāe cultivo de plantas arbóreas do Brasil. Editora Plantarium, Nova Odessa.Google Scholar
Olmos, F., Pardini, R., Boulhosa, R. L. P., Bürgi, R. & Morsello, C. (1999) Do tapirs steal food from palm seed predators or give them a lift? Biotropica, 31, 375379.CrossRefGoogle Scholar
Painter, R. L. E. (1998) Gardeners of the forest: plant–animal interactions in a neotropical forest ungulate community. PhD Dissertation, University of Liverpool, Liverpool, UK.Google Scholar
Peres, C. A. (1990) Effects of hunting on western Amazonian primate communities. Biological Conservation, 53, 4759.CrossRefGoogle Scholar
Peres, C. A. (2000) Evaluating the impact and sustainability of subsistence hunting at multiple Amazonian forest sites. In Hunting for Sustainability in Tropical Forests (eds Robinson, J. G. and Bennett, E. L.), pp. 3156. Columbia University Press, New York.Google Scholar
Peters, R. H. (1983) The Ecological Consequences of Body Size. Cambridge University Press, New York.Google Scholar
Robinson, J. G. & Redford, K. H. (1986) Body size, diet and population density of neotropical forest mammals. American Naturalist, 128, 665680.CrossRefGoogle Scholar
Sanchotene, M. C. C. (1985) Frutíferas nativas úteis a fauna na arborizaçāo urbana. Editora FEPLAM, Porto Alegre, Brasil.Google Scholar
Schaller, G. B. (1983) Mammals and their biomass on a Brazilian ranch. Arquivos de Zoologia, 3, 136.CrossRefGoogle Scholar
Setzer, J. (1949) Os solos do Estado de São Paulo, 1st edn.Conselho Nacional de Geografia, Rio de Janeiro.Google Scholar
Terborgh, J. W. (1988) The big things that run the world – a sequel to E. O. Wilson. Conservation Biology, 2, 402403.CrossRefGoogle Scholar
Valladares-Padua, C. (1987) Black lion tamarin (Leontopithecus chrysopygus): status and conservation. MSc Thesis. University of Florida, FL, USA.Google Scholar
Valladares-Padua, C. (1993) The ecology, behavior and conservation of the black lion tamarins (Leontopithecus chrysopygus, Mikan, 1823). PhD Dissertation, University of Florida, Florida, USA.Google Scholar
Valladares-Padua, C. & Cullen, L. Jr (1992) Unpublished Report to the Primate Project Coordination: Duraflora. Lencois Paulista, Spain.Google Scholar
Wilson, D. E., Cole, F. R., Nichols, J. D., Rudran, R. & Foster, M. S. (1996) Measuring and Monitoring Biological Diversity. Standard Methods for Mammals. Smithsonian Institution Press, Washington, DC.Google Scholar