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Neotropical Biodiversity(1)
Proceedings of the National Academy of Sciences of the United States of America(1)
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Development and worldwide use of non-lethal, and minimal population-level impact, protocols for the isolation of amphibian chytrid fungi
ArticleAbstract: Parasitic chytrid fungi have emerged as a significant threat to amphibian species worldwide, necessiPalabras claves:Autores:Aanensen D.M., Alvarado-Rybak M., Andrew Alexander Cunningham, Bataille A., Bates K.A., Berger L., Böll S., Bosch J., Brookes L.M., Clare F.C., Courtois E.A., Crottini A., Doherty-Bone T.M., Farrer R.A., Fisher M.C., Garner T.W.J., Gebresenbet F., Ghosh P.N., Gower D.J., Höglund J., James T.Y., Jenkinson T.S., Kosch T.A., Lambertini C., Laurila A., Lin C.F., Longcore J.E., Loyau A., Martel A., Meurling S., Miaud C., Minting P., Ndriantsoa S., O'Hanlon S.J., Pasmans F., Rabemananjara F.C.E., Rakotonanahary T., Ribeiro L.P., Rosa G.M., Schmeller D.S., Schmidt B.R., Shelton J.M.G., Skerratt L.F., Smith F., Soto-Azat C., Tessa G., Toledo L.F., Valenzuela-Sánchez A., Verster R., Voros J., Waldman B., Webb R.J., Weldon C., Wierzbicki C., Wombwell E.L., Zamudio K.R.Fuentes:scopusCryptic species diversity reveals biogeographic support for the ‘mountain passes are higher in the tropics’ hypothesis
ArticleAbstract: The ‘mountain passes are higher in the tropics’ (MPHT) hypothesis posits that reduced climate variabPalabras claves:Andes, cryptic species, Elevational range, Ephemeroptera, Rocky mountains, Species richnessAutores:Andrea C. Encalada, Casner K.L., Flecker A.S., Funk W.C., Gannon D.G., Ghalambor C.K., Gill B.A., Juan Manuel Guayasamin, Kondratieff B.C., Poff N.L.R., Simmons M.P., Thomas S.A., Zamudio K.R.Fuentes:googlescopusAmphibian fungal panzootic causes catastrophic and ongoing loss of biodiversity
ArticleAbstract: Anthropogenic trade and development have broken down dispersal barriers, facilitating the spread ofPalabras claves:Autores:Acevedo A.A., Berger L., Beukema W., Burrowes P.A., Canessa S., Carvalho T., Catenazzi A., Fisher M.C., Flechas S.V., Foster C.N., Frías-Álvarez P., Garner T.W.J., Gratwicke B., Hirschfeld M., Juan Manuel Guayasamin, Kolby J.E., Kosch T.A., Lindenmayer D.B., Lips K.R., Longo A.V., Maneyro R., Marca E.L., Martel A., McDonald C.A., Mendelson J.R., Palacios-Rodriguez P., Parra-Olea G., Pasmans F., Richards-Zawacki C.L., Riva I.D.L., Rödel M.O., Rovito S.M., Scheele B.C., Skerratt L.F., Soto-Azat C., Toledo L.F., Voyles J., Weldon C., Whitfield S.M., Wilkinson M.W., Zamudio K.R.Fuentes:googlescopusFreshwater vertebrate and invertebrate diversity patterns in an Andean-Amazon basin: implications for conservation efforts
ArticleAbstract: The Napo Basin in Ecuador is an important drainage of the Amazon Basin, the most biodiverse ecosystePalabras claves:aquatic invertebrate families, ECUADOR, freshwater tropical ecosystems, Napo Basin, vertebrate speciesAutores:Andrea C. Encalada, Casner K.L., Eduardo Toral-Contreras, Flecker A.S., Funk W.C., Ghalambor C.K., Gill B.A., Iván Jácome-Negrete, Janeth Lessmann, José Schreckinger, Juan Manuel Guayasamin, Kondratieff B.C., Poff L.R.N., Thomas S.A., Zamudio K.R.Fuentes:scopusNarrow thermal tolerance and low dispersal drive higher speciation in tropical mountains
ArticleAbstract: Species richness is greatest in the tropics, and much of this diversity is concentrated in mountainsPalabras claves:climate variability, Cryptic diversity, elevation gradient, speciation, THERMAL TOLERANCEAutores:Andrea C. Encalada, Barthelet A., Casner K.L., Chris Funk W., Flecker A.S., Ghalambor C.K., Gill B.A., Gray M.M., Juan Manuel Guayasamin, Kondratieff B.C., Messer P.W., Poff N.L.R., Polato N.R., Shah A.A., Simmons M.P., Thomas S.A., Zamudio K.R.Fuentes:googlescopusRecent Asian origin of chytrid fungi causing global amphibian declines
ArticleAbstract: Globalized infectious diseases are causing species declines worldwide, but their source often remainPalabras claves:Autores:Aanensen D.M., Alvarado-Rybak M., Andrew Alexander Cunningham, Balloux F., Bataille A., Bates K.A., Berger L., Böll S., Bosch J., Brankovics B., Brookes L.M., Clare F.C., Courtois E.A., Doherty-Bone T.M., Farrer R.A., Fisher M.C., Fumagalli M., Garner T.W.J., Ghosh P.N., Gower D.J., Hintz W.E., Höglund J., James T.Y., Jenkinson T.S., Kosch T.A., Laurila A., Lin C.F., Loyau A., Martel A., Martin M.D., Meurling S., Miaud C., Minting P., Murray K.A., O’Hanlon S.J., Pasmans F., Rieux A., Rosa G.M., Schmeller D.S., Schmidt B.R., Shelton J.M.G., Skerratt L.F., Smith F., Soto-Azat C., Spagnoletti M., Tessa G., Thomas M., Toledo L.F., Valenzuela-Sánchez A., Verster R., Voros J., Waldman B., Wales N., Webb R.J., Weldon C., Wierzbicki C., Wombwell E.L., Zamudio K.R.Fuentes:scopusRecent introduction of a chytrid fungus endangers Western Palearctic salamanders
ArticleAbstract: Emerging infectious diseases are reducing biodiversity on a global scale. Recently, the emergence ofPalabras claves:Autores:Adriaensen C., Andrew Alexander Cunningham, Beukema W., Blooi M., Bosch J., Bossuyt F., Ducatelle R., Farrer R.A., Fisher M.C., Garner T.W.J., Goka K., Kolby J.E., Lips K.R., Lötters S., Martel A., Muletz C., Nguyen T.T., Nishikawa K., Pasmans F., Salvidio S., Schmidt B.R., Spitzen-Van der Sluijs A., Tobler U., Van Bocxlaer I., Van Rooij P., Wombwell E.L., Zamudio K.R.Fuentes:scopusResponse to Comment on “Amphibian fungal panzootic causes catastrophic and ongoing loss of biodiversity”
OtherAbstract:Palabras claves:Autores:Acevedo A.A., Berger L., Beukema W., Burrowes P.A., Canessa S., Carvalho T., Catenazzi A., Fisher M.C., Flechas S.V., Foster C.N., Frías-Álvarez P., Garner T.W.J., Gratwicke B., Hirschfeld M., Juan Manuel Guayasamin, Kolby J.E., Kosch T.A., Lindenmayer D.B., Lips K.R., Longo A.V., Maneyro R., Marca E.L., Martel A., McDonald C.A., Mendelson J.R., Palacios-Rodriguez P., Parra-Olea G., Pasmans F., Richards-Zawacki C.L., Riva I.D.L., Rödel M.O., Rovito S.M., Scheele B.C., Skerratt L.F., Soto-Azat C., Toledo L.F., Voyles J., Weldon C., Whitfield S.M., Wilkinson M.W., Zamudio K.R.Fuentes:scopus