DISTRIBUCIÓN POTENCIAL DE Podocnemis lewyana (REPTILIA:PODOCNEMIDIDAE) Y SU POSIBLE FLUCTUACIÓN BAJO ESCENARIOS DE CAMBIO CLIMÁTICO GLOBAL
Potential Distribution of Podocnemis lewyana (Reptilia: Podocnemididae) and Its Possible Fluctuation Under Different Global Climate Change Scenarios
DOI:
https://doi.org/10.15446/abc.v19n3.40909Palabras clave:
Maxent, modelación de nicho, variables ambientales. (es)environmental variables, Maxent, niche modeling, Podocnemididae. (en)
Referencias
Alzate DA. Estructura poblacional de la tortuga de río Podocnemis lewyana (Testudines, Podocnemididae) en el Magdalena medio, Colombia. Trabajo de Grado, Universidad de Antioquia, Medellín, Colombia. 2003. 61 p.
Anderson RP, Peterson AT, Gómez-Laverde M. Using niche-based GIS modeling to test geographic predictions of competitive exclusion and competitive release in South American pocket mice. Oikos. 2002;98(1):3-16
Araújo MB, Thuiller W, Pearson RG. Climate warming and the decline of amphibians and reptiles in Europe. J Biogeogr. 2006;33(10):1712-1728.
Barve N, Barve V, Jiménez-Valverde A, Lira-Noriega A, Maher SP, Peterson AT, et al. The crucial role of the accessible area in ecological niche modeling and species distribution modeling. Ecol Modell. 2011;222(11):1810-1819.
Beaumont LJ, Hughes L. Potential changes in the distributions of latitudinally restricted Australian butterfly species in response to climate change. Glob Chang Biol. 2002;8(10):954-971.
Beaumont LJ, Pitman A, Perkins S, Zimmermann NE, Yoccoz NG, Thuiller W. Impacts of climate change on the world´s most exceptional ecoregions. Proc Natl Acad Sci USA. 2011;108(6):2306-2311.
Bell G, Collins S. Adaptation, extinction and global change. Evol Appl. 2008;1(1):3-16.
Boone RB, Krohn WB. Partitioning sources of variation in vertebrate species richness. J Biogeogr. 2000;27(2):457-470.
Bour R. Global diversity of turtles (Chelonii; Reptilia) in freshwater. In: Lévêque C, Segers H, Martens K, editors. Freshwater animal diversity assessment (Vol. 198). Springer. Dordrecht, Netherlands; 2008. p. 593-598.
Brown JH, Stevens GC, Kaufman DM. The geographic range: size, shape, boundaries, and internal structure. Annu Rev Ecol Syst. 1996;27:597-623.
Buhlmann KA, Akre TSB, Iverson JB, Karapatakis D, Mittermeier RA, et al. A global analysis of tortoises and freshwater turtle distributions with identification of priority conservation areas. Chelonian Conserv Biol. 2009;8(2):116-149.
Busby JR. BIOCLIM: a bioclimate analysis and prediction system. In: Margules CR, Austin MP, editors. Nature Conservation: Cost Effective Biological Surveys and Data Analysis. CSIRO. Austin, Australia;1991. p.64-68.
Bystriakova N, Ansell SW, Russell SJ, Grundmann M, Vogel JC, Schneider H. Present, past and future of the European rock fern Asplenium fontanum: combining distribution modelling and population genetics to study the effect of climate change on geographic range and genetic diversity. Ann Bot. 2014;113(3): 453-465.
Cadena EA. Historia evolutiva y paleobiogeográfica de las tortugas de Colombia. In: Páez VP, Morales-Betancourt MA, Lasso CA, Castaño-Mora OV, Bock BC, editors. V. Biología y conservación de las tortugas continentales de Colombia. Serie Editorial Recursos Hidrobiológicos y Pesqueros Continentales de Colombia. Instituto de Investigación y Recursos Biológicos Alexander von Humboldt (IAvH). Bogotá D.C., Colombia; 2012. p.71-80.
Carpenter G, Gillison AN, Winter J. DOMAIN: A flexible modelling procedure for mapping potential distributions of plants and animals. Biodivers Conserv. 1993;2(6):667-680.
Chave J, Muller-Landau HC, Levin SA. Comparing Classical Community Models: Theoretical Consequences for Patterns of Diversity. Am Nat. 2002;159(1):1-23.
Chesson P. Mechanisms of maintenance of species diversity. Annu Rev Ecol Syst. 2000;31:343-366.
Correa-H JC, Cano-Castaño AM, Páez VP, Restrepo A. Reproductive ecology of the Magdalena River turtle (Podocnemis lewyana) in the Mompos Depression, Colombia. Chelonian Conserv Bi. 2010; 9(1):70-78.
Corsini JA, Smith TR, Leite MB. Turtle decline in the early oligocene of Western Nebraska. J Herpetol. 2011;45(2):238–243.
Elith J, Graham CH, Anderson RP, Dudík M, Ferrier S, Guisan A, et al. Novel methods improve prediction of species' distributions from occurrence data. Ecography. 2006;29(2):129-151.
Elith J, Phillips SJ, Hastie T, Dudík M, Chee YE, Yates CJ. A statistical explanation of MaxEnt for ecologists. Divers distrib. 2011;17(1):43-57.
Escalante T, Sánchez-Cordero V, Morrone JJ, Linaje M. Areas of endemism of Mexican terrestrial mammals: A case study using species' ecological niche modeling, Parsimony Analysis of Endemicity and Goloboff fit. Interciencia. 2007;32(3):151-154.
Fernámdez-Chacón A, Bertolero A, Amengual A, Tavecchia G, Homar V, Oro D. Spatial heterogeneity in the effects of climate change on the population dynamics of a Mediterranean tortoise. Glob Chang Biol. 2011;17(10):3075-3088.
Fielding AH, Bell JF. A review of methods for the assessment of prediction errors in conservation presence/absence models. Environ Conserv. 1997;24(1):38-49.
Franklin J. Mapping species distributions: spatial inference and prediction. Cambridge University Press, Cambridge; 2009. 319 p.
Fuentes MMPB, Hamann M, Limpus CJ. Past, current and future thermal profiles of green turtle nesting grounds: Implications from climate change. J Exp Mar Bio Ecol. 2010;383(1):56-64.
Gallego N. Anotaciones sobre la historia natural de la tortuga de río Podocnemis lewyana (Testudinata: Podocnemididae) en el río Sinú, Córdoba, Colombia. Tesis de grado, Universidad Militar Nueva Granada, Bogotá, Colombia; 2004. 83 p.
Gallego-García N, Castaño-Mora OV. Ecology and status of the Magdalena River turtle, Podocnemis lewyana, a Colombian endemic. Chelonian Conserv Biol. 2008;7(1):37-44.
Gallo H, Díaz-Sarmiento J. Variabilidad genética del bagre rayado Pseudoplatystoma fasciatum, (Pises: Pimelodidae) en el río Magdalena (Colombia). Rev. Acad Colomb Cienc. 2003:27(105):599-605.
Galvis G, Mesa LM, Lasso CA. Biogeografía continental colombiana: un enfoque desde la hidrografía. In: Páez VP, Morales-Betancourt MA, Lasso CA, Castaño-Mora OV, Bock BC, editors. V. Biología y conservación de las tortugas continentales de Colombia. Serie Editorial Recursos Hidrobiológicos y Pesqueros Continentales de Colombia. Instituto de Investigación y Recursos Biológicos Alexander von Humboldt (IAvH). Bogotá D.C.; 2012. p. 81-90.
Gibbon JW, David ES, Travis JR, Kurt AB, Tracey DT, Brian SM, et al. The global decline of reptiles, déjà vu amphibians. BioScience. 2000;50(8):653–666.
González-Z A, Montenegro OL, Castaño-Mora OV. Caracterización del hábitat de la tortuga de río Podocnemis lewyana, en el río Prado, aguas abajo del embalse de Hidroprado, Tolima, Colombia. Caldasia. 2011;33(2):471-493.
Graham CH, Hijmans RJ. A comparison of methods for mapping species ranges and species richness. Glob Ecol Biogeogr. 2006;15(6):578-587.
Guisan A, Zimmermann NE. Predictive habitat distribution models in ecology. Ecol Modell. 2000;135(2):147-186.
Hawkins BA, Field R, Cornell HV, Currie DJ, Guégan JF, Kaufman DM, et al. Energy, water, and broad-scale geographic patterns of species richness. Ecology. 2003;84(12):3105-3117.
Hijmans RJ, Cameron SE, Parra JL, Jones PG, Jarvis A. WorldClim. Available at: www.worldclim.org.
Hosseini S, Kappas M, Zare Chahouki M, Gerold G, Erasmi S, Rafiei Emam A. Modelling potential habitats for Artemisia sieberi and Artemisia aucheri in Poshtkouh area, central Iran using the maximum entropy model and geostatistics. Ecol Inform. 2013;(18): 61-68.
Huey RB, Deutsch CA, Tewksbury JJ, Vitt LJ, Hertz PE, Pérez HJA, et al. Why tropical forest lizards are vulnerable to climate warming. Proc R Soc Lond B Biol Sci. 2009;276:1939-1948.
Hulin V, Delmas V, Girondot M, Godfrey M, Guillon JM. Temperature-dependent sex determination and global change: are some species at greater risk? Oecologia. 2009;160(3):493-506.
Hurtado SN. Algunos aspectos bioecológicos de Podocnemis lewyana (Dumeril, 1984) (Testudinata: Pleurodira: Pelomedusidae 1830). Biol 1. Centro de Investigaciones Biológicas Pesqueras del Río Magdalena. Caldas, Colombia; 1973. 34 p.
Ihlow F, Dambach J, Engler JO, Flecks M, Hartmann T, Nekum S, et al. On the brink of extinction? How climate change may affect global chelonian species richness and distribution. Glob Chang Biol. 2012;18(5):1520-1530.
Janzen FJ. Climate change and temperature-dependent sex determination in reptiles. Proc Natl Acad Sci. 1994;91(16):7487-7490.
Jones MC, SR Dye, Pinnegar JK, Warren R, Cheung WW. Modelling commercial fish distributions: Prediction and assessment using different approaches. Ecol Model. 2012;225:133-145.
Kallimanis AS. Temperature dependent sex determination and climate change. Oikos. 2010;119(1):197-200.
Kearney M, Porter WP. Mapping the fundamental niche: physiology, climate, and the distribution of a nocturnal lizard. Ecology. 2004;85(11):3119-3131.
Kearney M, Porter WP. Mechanistic niche modelling: combining physiological and spatial data to predict species' ranges. Ecol Lett. 2009;12:334-350.
Liu C, Berry PM, Dawson TP, Pearson RG. Selecting thresholds of occurrence in the prediction of species distributions. Ecography. 2005;28(3):385-393.
Luoto M, Kuussaari M, Toivonen T. Modelling butterfly distribution based on remote sensing data. J Biogeogr. 2002;29(8):1027-1037.
Mcdowell W, Benson A, Byers J. Climate controls the distribution of a widespread invasive species: implications for future range expansion. Freshwater Biol. 2014;59 (4):847-857
Merow C, Smith MJ, Silander JA. A practical guide to MaxEnt for modeling species' distributions: what it does, and why inputs and settings matter. Ecography. 2013;36(10): 1058-1069.
Miller RI, Stuart SN, Howell KN. A methodology for analyzing rare species distribution patterns utilizing GIS technology: The rare birds of Tanzania. J Landscape Ecol. 1989;2(3):173-189.
Mitchell NJ, Janzen FJ. Temperature-dependent sex determination and contemporary climate change. Sex Dev. 2010;4(1-2):129-140.
Moritz C, Agudo R. The Future of Species Under Climate Change: Resilience or Decline?. Science. 2013;341:504-508.
Morjan CL. How rapidly can maternal behavior affecting primary sex ratio evolve in a reptile with environmental sex determination? Am Nat. 2003;162(2):205-219.
Nelson NJ, Thompson MB, Pledger S, Keall SN, Daugherty CH. Do TSD, sex ratios, and nest characteristics influence the vulnerability of tuatara to global warming?. Int Congr Ser. 2004;1275:250-257.
Neuwald JL, Valenzuela N. The lesser known challenge of climate change: termal variance and sex-reversal in vertebrates with temperature-dependent sex determination. PLoS One. 2011;6(3):e18117.
Nix HA. A biogeographic analysis of Australian elapid snakes. Aust Flora Fauna Series. 1986;8:4-15.
Páez VP, Correa-Hurtado JC, Cano AM. A comparison of maternal and temperature effects on sex, size and growth of hatchlings of the Magdalena River turtle (Podocnemis lewyana) incubated under field and laboratory conditions. Copeia. 2009;4:698-704.
Páez VP, Restrepo A, Vargas-Ramírez M, Bock BC, Gallego-García N. Podocnemis lewyana. In: Páez VP, Morales-Betancourt MA, Lasso CA, Castaño-Mora OV, Bock BC, editors. V. Biología y conservación de las tortugas continentales de Colombia. Serie Editorial Recursos Hidrobiológicos y Pesqueros Continentales de Colombia. Instituto de Investigación y Recursos Biológicos Alexander von Humboldt (IAvH). Bogotá DC, Colombia; 2012.
Pauler I, Trebbau P. Erstnachweis von Podocnemis lewyana Duméril, 1852 (Testudines) in Venezuela. Salamandra. 1995;31:181-186.
Pearson RG, Dawson TP. Predicting the impacts of climate change on the distribution of species: are bioclimate envelope models useful? Glob Ecol Biogeogr. 2003;12(5):361-371.
Pearson RG, Dawson TP. Predicting the impacts of climate change on the distribution of species: are bioclimate envelope models useful?. Global Ecol Biogeogr. 2003;12: 361-371.
Peterson AT, Vieglais DA. Predicting species invasions using ecological niche modeling: new approaches from bioinformatics attack a pressing problem. BioScience. 2001;51(5):363-371.
Peterson AT. Uses and requirements of ecological niche models and related distributional models. Biodiversity Informatics. 2006;3:59-72.
Phillips SJ, Anderson RP, Schapire RE. Maximum entropy modeling of species geographic distributions. Ecol Modell. 2006;190(3):231-259.
Raxworthy CJ, Martínez-Meyer E, Horning N, Nussbaum RA, Schneider GE, Ortega-Huerta MA, et al. Predicting distributions of known and unknown reptile species in Madagascar. Nature. 2003;426(6968):837-841.
Refsnider JM, Bodensteiner BL, Reneker JL, Janzen FJ. Nest depth may not compensate for sex ratio skews caused by climate change in turtles. Anim Conserv. 2013;16(5):481-490.
Restrepo A, Páez VP, López C, Bock BC. Distribution and status of Podocnemis lewyana in the Magdalena River drainage of Colombia. Chelonian Conserv Biol. 2008;7(1):45-51.
Restrepo A, Bock BC, Páez VP. Genetic variability in the Magdalena river turtle, Podocnemis lewyana (Duméril, 1852), in the Mompos depression, Colombia. Actu Biol. 2008;30(89):151-159.
Restrepo A, Páez VP, López C, Bock BC. Distribution and status of Podocnemis lewyana in the Magdalena River drainage of Colombia. Chelonian Conserv Biol. 2008;7(1): 45-51.
Rivas GA, Molina CR, Ugueto GN, Barros TR, Barrio-Amoros CL, Kok PJ. Reptiles of Venezuela: an updated and commented checklist. Zootaxa. 2012;3211:1-64.
Rogelj J, Meinshausen M, Knutti R. Global warming under old and new scenarios using IPCC climate sensitivity range estimates. Nature Clim Change. 2012;2:248-253. DOI:10.1038/nclimate1385.
Rueda-Almonacid JV, Carr JL, Mittermejer RA, Rodríguez-Maecha JV, Mast RB, Vogt RC, et al. Las Tortugas y los Cocodrilianos de los países andinos del trópico. Serie de guías tropicales de campo N° 6. Conservación Internacional. Editorial Panamericana. Bogotá, Colombia; 2007. p. 412-423.
Schall JJ, Pianka ER. Geographical trends in numbers of species. Science. 1978;201(4357):679-686.
Schwanz LE, Janzen FJ. Climate change and Temperature-Dependent Sex Determination: Can individual plasticity in nesting phenology prevent extreme sex ratios?. Physiol Biochem Zool. 2008;81(6):826-834.
Seneviratne S, Nicholls N, Easterling D, Goodess C, Kanae S, Kossin J, et al. Changes in climate extremes and their impacts on the natural physical environment: An overview of the IPCC SREX report. In: Intergovernmental Panel on Climate Change Special Report on Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA; 2012.
Silber S, Geisler JH, Bolortsetseg M. Unexpected resilience of species with temperature-dependent sex determination at the Cretaceous-Palaeogene boundary. Biol Lett. 2011;7(2):295-298.
Sinervo B, Méndez-De-La-Cruz F, Miles DB, Heulin B, Bastiaans E, Villagrán-Santa Cruz M, et al. Erosion of lizard diversity by climate change and altered thermal niches. Science 2010;328(5980):894–899.
Soberon J, Peterson AT. Interpretation of models of fundamental ecological niches and species' distributional areas. Biodiv Informatics 2005;2:1-10.
Stephens PR, Wiens JJ. Bridging the gap between community ecology and historical biogeography: niche conservatism and community structure in emydid turtles. Mol Ecol. 2009;18(22):4664–4679.
Vargas-Ramírez M, Castaño-Mora OV, Fritz U. Molecular phylogeny and divergence times of the ancient South American and Malagasy river turtles (Testudines: Pleurodira: Podocnemididae). Org Divers Evol. 2008;8(5):388-398.
Vargas-Ramírez M, Chiari Y, Castaño-Mora OV, Menken SB. Low genetic variability in the endangered Colombian endemic freshwater turtle Podocnemis lewyana (Testudines, Podocnemididae). Contrib Zool. 2007;76(1):1-7.
Walker PA, Cocks KD. HABITAT: A procedure for modelling a disjoint environmental envelope for a plant or animal species. Global Ecol Biogeog Lett. 1991;1(4):108-18.
Warren DL, Glor RE, Turelli M. ENMTools: a toolbox for comparative studies of environmental niche models. Ecography. 2010;(33):607-611.
Weyant J, Azar C, Kainuma M, Kejun J, Nakicenovic N, Shukla P, et al. Report of 2.6 versus 2.9 Watts/m2 RCPP evaluation panel. Integrated Assessment Modeling Consortium. 2009.
Wright LI, Stokes KL, Fuller WJ, Godley BJ, Mcgowan A, Snape R, et al. Turtle mating patterns buffer against disruptive effects of climate change. Proc R Soc Lond B Biol Sci. 2012;279(1736):2122-2127.
Wyneken J, Godfrey MH, Bels V. Biology of Turtles. CRC press, Boca Raton, FL, USA; 2010, p. 279–300.
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