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Amphibians and Reptiles at the Ometepe and La Suerte Field Sites: Toward an Overview of the Evolution, Diversity, and Natural History of Central America’s Herpetofauna

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Central American Biodiversity

Abstract

Amphibians and reptiles are quite fascinating creatures. An attempt to portray their full diversity in the New World tropics is similar in scope to describing all the tropical fish of the Great Barrier Reef; sure, they exist elsewhere, but their presence here is quite remarkable. On display for virtually everyone to see, these animals flourish in an endless variety of niche habitats. Central America, therefore, is a rather ideal setting to explore an interest in herpetology, the study of amphibians and reptiles (known collectively as herpetofauna or “herps”). For a better understanding of these unique creatures, this chapter discusses their evolutionary past (mostly in the tropics) and then shifts focus to those species most likely to be encountered at the Ometepe and La Suerte field stations. It provides in detail their diversity and natural history throughout Central America. Finally, due to its relevance, this chapter serves as an introduction to the vast conservation issues pertaining to amphibians and reptiles (as featured specifically in subsequent chapters).

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References

  • AmphibiaWeb (2013) AmphibiaWeb. From AmphibiaWeb. http://amphibiaweb.org/. Accessed May 2013

  • Angier N (2006, December 12) All but ageless, turtles face their biggest threat: humans. From The New York Times. http://www.nytimes.com/2006/12/12/science/12turt.html?_r=0. Accessed 8 March 2013

  • Australian Broadcasting Corporation (2008) Cane toad lickers may get cure for overdose soon. From ABC news. http://www.abc.net.au/news/2008-07-11/cane-toad-lickers-may-get-cure-for-overdose-soon/437790. Accessed 5 March 2013

  • Baillie J, Hilton-Taylor C, Stuart S (2004) 2004 IUCN red list of threatened species: a global assessment. IUCN, Cambridge

    Google Scholar 

  • Berner R (1999) Atmospheric oxygen over Phanerozoic time. Proc Nat Acad Sci U S A 96:10955–10957

    Article  CAS  Google Scholar 

  • Britton A (2012) Current distribution of Crocodylus acutus. From Crocodilians: natural history and conservation. http://www.crocodilian.com/cnhc/cst_cacu_dh_map.htm. Accessed 4 March 2013

  • Buchwitz M, Foth C, Kogan I, Voigt S (2012) On the use of osteoderm features in a phylogenetic approach on the internal relationships of the Chroniosuchia (Tetrapoda: Reptiliomorpha). Paleontology 55:623–640

    Article  Google Scholar 

  • Carroll R (1991) The origin of reptiles. In: Schultze H, Trueb L (eds) Origins of the higher tetrapods: controversy and consensus. Cornell University Press, Ithica, pp 337–338

    Google Scholar 

  • Cisneros J (2005) New Pleistocene vertebrate fauna from El Salvador. Rev Bras de Paleontol 8:239–255

    Article  Google Scholar 

  • Clack J (2002) Gaining ground: the origin and early evolution of tetrapods. Indiana University Press, Bloomington

    Google Scholar 

  • Clack J (2005) Getting a leg up on land. Sci Am 293:100–107

    Article  PubMed  Google Scholar 

  • Daeschler E, Shubin N, Jenkins, F J (2006) A Devonian tetrapod-like fish and the evolution of the tetrapod body plan. Nature 440:757–763

    Article  CAS  PubMed  Google Scholar 

  • Dickins J (1993) Climate of the late Devonian to Triassic. Paleogeogr Paleoclimatol Paleoecol 100:89–94

    Article  Google Scholar 

  • DiMichele W, Falcon-Lang H, Nelson W (2007) Ecological gradients within a Pennsylvanian mire forest. Geology 35:415–418

    Article  Google Scholar 

  • Donnelly M (1994) Amphibian diversity and natural history. In: McDade LA, Bawa KS, Hespenheide HA, Hartshorn GS (eds) La Selva: ecology and natural history of a neotropical rainforest. The University of Chicago Press, Chicago, pp 199–209

    Google Scholar 

  • Duellman W (1999) Patterns of distribution of amphibians. The Johns Hopkins University Press, Baltimore

    Google Scholar 

  • Encyclopedia Brittanica Inc (2013) Amphibian (animal). From Brittanica online encyclopedia. http://www.britannica.com/EBchecked/topic/21445/amphibian. Accessed 8 Feb 2013

  • Hardy D (1994) Bothrops asper (Viperidae) snakebite and field researchers in Middle America. Biotropica 26:198–207

    Google Scholar 

  • Harper D (2013) Basilisk. From online etymology dictionary. http://dictionary.reference.com/browse/basilisk. Accessed 14 March 2013

  • Head J, Rincon A, Suarez C, Montes C, Jaramillo C (2012) Fossil evidence for earliest Neogene American faunal interchange. J Vertebr Paleontol 32:1328–1334

    Article  Google Scholar 

  • Jablonski D, Roy K, Valentine J (2006) Out of the tropics: evolutionary dynamics of the latitudinal diversity gradient. Science 314:102–106

    Article  CAS  PubMed  Google Scholar 

  • Laurin M (1996) A reevaluation of Ariekanerpeton, a lower Permian seymouriamorph (Vertebrata: Seymouriamorpha) from Tadzhikistan. J Vert Paleontol 16:653–665

    Article  Google Scholar 

  • Lebedev O, Coates M (1995) The postcranial skeleton of the Devonian tetrapod Tulerpeton curtum. Zool J Linnean Soc 114:307–348

    Article  Google Scholar 

  • MacArthur R, Wilson E (1967) The theory of island biogeography. Princeton University Press, Princeton

    Google Scholar 

  • Marshall J, Astin T, Clack J (1999) East Greenland tetrapods are devonian in age. Geology 27:637–640

    Article  Google Scholar 

  • Martin K (1999) Ready and waiting: delayed hatching and extended incubation of anamniotic vertebrate terrestrial eggs. Am Zool 39:279–288

    Google Scholar 

  • Moon B, Mehta R (2007) Constriction strength in snakes. In: Henderson R, Powell R (eds) Biology of the boas and pythons. Eagle Mountain Publishing, LC, Eagle Mountain, pp. 207–212

    Google Scholar 

  • Parrish J (1993) Climate of the supercontinent Pangaea. J Geol 101:215–233

    Article  Google Scholar 

  • Paton R, Smithson T, Clack J (1999) An amniote-like skeleton from the early carboniferous of Scotland. Nature 398:508–513

    Article  CAS  Google Scholar 

  • Pearson H (1924) Solenodonsaurus, Broili, a Seymouriamorph reptile. J Nat Hist 14:338–343

    Article  Google Scholar 

  • Putterill J, Soley J (2003) General morphology of the oral cavity of the Nile crocodile, Crocodylus niloticus (Laurenti, 1768). Onderstepoort J Vet Res 70:281–297

    Article  CAS  PubMed  Google Scholar 

  • Reisz R, Laurin M (2001) The reptile Macroleter: first vertebrate evidence for correlation of upper Permian continental strata of North America and Russia. Geol Soc of Am 113:1229–1233

    Article  Google Scholar 

  • Rincon A, Bloch J, Suarez C, MacFadden B, Jaramillo C (2012) New floridatragulines (Mammalia, Camelidae) from the early Miocene Las Cascadas Formation, Panama. J Vert Paleontol 32:456–475

    Article  Google Scholar 

  • Rizzo N, Gardner K, Walls D, Keiper-Hrynko N, Ganzke T, Hallahan D (2006) Characterization of the structure and composition of gecko adhesive setae. J Royal Soc Interface 3:441–451

    Article  CAS  Google Scholar 

  • Sahney S, Benton M, Falcon-Lang H (2010) Rainforest collapse triggered Carboniferous tetrapod diversification in Euramerica. Geology 38:1079–1082

    Article  Google Scholar 

  • Sasa M, Wasko DK, Lamar WW (2009) Natural history of the terciopelo Bothrops asper (Serpentes: Viperidae) in Costa Rica. Toxicon 54:904–922

    Article  CAS  PubMed  Google Scholar 

  • Savage J (2002) The amphibians and reptiles of Costa Rica: a herpetofauna between two continents, between two seas. The University of Chicago Press, Chicago

    Google Scholar 

  • Scheckler S (1986) Geology, floristics, and paleoecology of late Devonian coal swamps from Appalachian Laurentia (USA). Ann de la Soc Geol de Belgique 109:209–222

    Google Scholar 

  • Sea Turtle Conservancy (2011) Saving sea turtles since 1959. Accessed 2013, from Sea turtle conservancy. http://www.conserveturtles.org/

  • Seidel M (1979) The osteoderms of the American alligator and their functional significance. Herpetologica 35:375–380

    Google Scholar 

  • Shubin N (2008) Your inner fish. Pantheon Books, New York

    Google Scholar 

  • Smithson T, Rolfe W (1990) Westlothiana gen. nov.: naming the earliest known reptile. Scottish J Geol 26:137–138

    Article  Google Scholar 

  • Solórzano A (2004) Snakes of Costa Rica: distribution, taxonomy, and natural history. Funded by NORAD. Instituto Nacional de Biodiversidad (INBIO), Santo Domingo Heredia Costa Rica

    Google Scholar 

  • Spotila J (2004) Sea turtles: a complete guide to their biology, behavior, and conservation. The Johns Hopkins University Press, Baltimore

    Google Scholar 

  • Sunyer J et al (2008) Two new species of salamanders (genus Bolitoglossa) from southern Nicaragua (Amphibia, Caudata, Plethodontidae). Senckenberg Biol 88:319–328

    Google Scholar 

  • The Reptile Database (2013) The reptile database. Accessed 2013, from The reptile database. http://www.reptile-database.org/

  • Tico Times (2007) Crocodile kills boy in river. From tico times. http://www.ticotimes.net/dailyarchive/2007_05/0507072.htm. Accessed 31 March 2013

  • Vitt L, Caldwell J (2009) Herpetology: an introductory biology of amphibians and reptiles. Academic Press, Burlington

    Google Scholar 

  • Warren A (1985) Two long-snouted temnospondyls (Amphibia, Labyrinthodontia) from the Triassic of Queensland. Alcheringa 9:293–295

    Article  Google Scholar 

  • Webb S (1999) The Great American faunal interchange. In: Coates A (ed) Central America: a natural and cultural history. Yale University Press, New Haven, pp 97–122

    Google Scholar 

  • Webb D, Perrigo SC (1984) Late Cenozoic vertebrates from Honduras and El Salvador. J Vert Paleontol 4:237–254

    Article  Google Scholar 

  • World Wildlife Fund (2013) Terrestrial ecoregions. From WWF: endangered species conservation. http://worldwildlife.org/biome_categories/terrestrial-ecoregions. Accessed 7 Feb 2013

  • Young B, Stuart S, Chanson J, Cox N, Boucher T (2004) Disappearing jewels: the status of new world amphibians. NatureServe, Arlington

    Google Scholar 

Download references

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Correspondence to Mark Spangler .

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Spangler, M. (2015). Amphibians and Reptiles at the Ometepe and La Suerte Field Sites: Toward an Overview of the Evolution, Diversity, and Natural History of Central America’s Herpetofauna. In: Huettmann, F. (eds) Central American Biodiversity. Springer, New York, NY. https://doi.org/10.1007/978-1-4939-2208-6_12

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