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Chytrid fungus in Europe [2]
OtherAbstract:Palabras claves:Autores:Andrew Alexander Cunningham, Bosch J., Fisher M.C., Garner T.W.J., Hyatt A.D., Walker S.F.Fuentes:scopusClimate forcing of an emerging pathogenic fungus across a montane multi-host community
ArticleAbstract: Changes in the timings of seasonality as a result of anthropogenic climate change are predicted to oPalabras claves:Chytridiomycosis, Climate Change, epidemiology, Host × pathogen × environment interaction, mountain ecosystems, Multi-host communitiesAutores:Andrew Alexander Cunningham, Bielby J., Bosch J., Clare F.C., Daniel O.Z., Fisher M.C., Garner T.W.J., Halder J.B., Jombart T., Loyau A., Rowcliffe M., Schmeller D.S., Semenov M.A.Fuentes:scopusBatrachochytrium dendrobatidis Infection and Lethal Chytridiomycosis in Caecilian Amphibians (Gymnophiona)
ArticleAbstract: Batrachochytrium dendrobatidis (Bd) is commonly termed the 'amphibian chytrid fungus' but thus far hPalabras claves:ÁFRICA, Anura, Batrachia, Caudata, Chytrid, pet trade, SOUTH AMERICAAutores:Andrew Alexander Cunningham, Browne R.K., Daniel O.Z., Doherty-Bone T.M., Fisher M.C., Flach E., Garner T.W.J., Gower D.J., Kouete M.T., Loader S.P., Menegon M., Müller H., Orton F., Stephen I., Tapley B., Wilkinson M.W., Wynne F.Fuentes:scopusAmphibian chytrid fungus in Africa – realigning hypotheses and the research paradigm
ReviewAbstract: The amphibian chytrid fungus Batrachochytrium dendrobatidis (Bd), responsible for numerous amphibianPalabras claves:ÁFRICA, amphibian declines, Anura, Batrachochytrium, caecilian, Chytridiomycosis, Conservation, Emerging infectious diseaseAutores:Andrew Alexander Cunningham, Doherty-Bone T.M., Fisher M.C., Garner T.W.J., Ghosh P.N., Gower D.J., Verster R., Weldon C.Fuentes:scopusAmphibian 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:googlescopusDevelopment 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:scopusEffects of historic and projected climate change on the range and impacts of an emerging wildlife disease
ArticleAbstract: The global trend of increasing environmental temperatures is often predicted to result in more severPalabras claves:amphibian population decline, Climate Change, Common frog, Emerging infectious disease, host–pathogen interactions, Rana temporaria, ranavirus, TEMPERATURE, virulenceAutores:Andrew Alexander Cunningham, Balloux F., Garner T.W.J., Leung W.T.M., Nichols R.A., Owen C.J., Price S.J., Puschendorf R., Sergeant C.Fuentes:scopusFactors driving pathogenicity vs. prevalence of amphibian panzootic chytridiomycosis in Iberia
ArticleAbstract: Amphibian chytridiomycosis is a disease caused by the fungus Batrachochytrium dendrobatidis (Bd). WhPalabras claves:BATRACHOCHYTRIUM DENDROBATIDIS, Bayesian, Chytridiomycosis, Emerging infectious disease, epidemiology, Epizootic, PanzooticAutores:Andrew Alexander Cunningham, Arthur C.P., Bosch J., Fisher M.C., Garner T.W.J., Ginestet C., Gómez-Rubio V., Henk D.A., Ninyerola M., Schmeller D.S., Walker S.F.Fuentes:scopusEmergence of amphibian chytridiomycosis in Britain
ArticleAbstract:Palabras claves:Autores:Aguilar-Sanchez V., Andrew Alexander Cunningham, Banks B., Fisher M.C., Foster J., Garner T.W.J., Hyatt A.D., Perkins M.W., Sainsbury A.W., Walker S.F.Fuentes:scopusEnvironmental detection of Batrachochytrium dendrobatidis in a temperate climate
ArticleAbstract: The aetiological agent of amphibian chytridiomycosis Batrachochytrium dendrobatidis is a primary cauPalabras claves:BATRACHOCHYTRIUM DENDROBATIDIS, Chytridiomycosis, environmental surveillance, FiltrationAutores:Andrew Alexander Cunningham, Bosch J., Fisher M.C., Garner T.W.J., Hyatt A.D., Jenkins D., Salas M.B., Walker S.F.Fuentes:scopus