INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Berger L, Speare R: Chytridiomycosis: a new disease of wild and captive amphibians. ANZCCART Newsletter 1998, 11:1-3.Search in Google Scholar

2. Longcore JE, Pessier AP, Nichols DK: Batrachochytrium dendrobatidis gen. et sp. nov., a chytrid pathogenic to amphibians. Mycologia 1999, 91:219-227.10.1080/00275514.1999.12061011Search in Google Scholar

3. Berger L, Roberts AA, Voyles J, Longcore JE, Kris A. Murray KA, Skerratt LF: History and recent progress on chytridiomycosis in amphibians. Fungal Ecol 2016, 19:89-99.10.1016/j.funeco.2015.09.007Search in Google Scholar

4. Bataille A, Fong JJ, Cha M, Wogan GO, Baek HJ, Lee H, Min MS, Waldman B: Genetic evidence for a high diversity and wide distribution of endemic strains of the pathogenic chytrid fungus Batrachochytrium dendrobatidis in wild Asian amphibians. Mol Ecol 2013, 22:4196-4209.10.1111/mec.12385Search in Google Scholar

5. Skerratt L, Berger L, Speare R, Cashins S, McDonald KR, Phillott AD, Hines HB, Kenyon N: Spread of chytridiomycosis has caused the rapid global decline and extinctionof frogs. EcoHealth 2007, 4:125-134.10.1007/s10393-007-0093-5Search in Google Scholar

6. Bai C, Garner TWJ, Li Y: First evidence of Batrachochytrium dendrobatidis in China: discovery of Chytridiomycosis in introduced American bullfrogs and native amphibians in the Yunnan province, China. Ecohealth 2010, 7:127-134.10.1007/s10393-010-0307-0Search in Google Scholar

7. Berger L, Speare R, Kent A: Diagnosis of chytridiomycosis in amphibians by histologic examination. Zoos’ Print J 2000, 15:184-190.10.11609/JoTT.ZPJ.15.1.184-90Search in Google Scholar

8. Bosch J, Martınez-Solano I, Garcıa-Parıs M: Evidence of a chytrid fungus infection involved in the decline of the common midwife toad (Alytes obstetricans) in protected areas of central Spain. Biol Conserv 2001, 97:331-337.10.1016/S0006-3207(00)00132-4Search in Google Scholar

9. Garner TWJ, Walker S, Bosch J, Hyatt AD, Cunningham AA, Fisher MC: Chytrid fungus in Europe. Emerg Infect Dis 2005, 11:1639-1641.10.3201/eid1110.050109336673916355506Search in Google Scholar

10. Hopkins S, Channing A: Chytrid fungus in northern and western Cape frog populations, South Africa. Herpetol Rev 2003, 34:334-336.Search in Google Scholar

11. Kusrini MD, Skerratt LF, Garland S, Berger L, Endarwin W: Chytridiomycosis in frogs of Mount GedePangrango, Indonesia. Dis Aquat Organ 2008, 82:187-194.10.3354/dao0198119244970Search in Google Scholar

12. Raverty S, Reynolds T: Cutaneous chytridiomycosis in dwarf aquatic frogs (Hymenochirus boettgeri) originating from southeast Asia and in a western toad (Bufo boreas) from northeastern British Columbia. Can Vet J 2001, 42:385-386.Search in Google Scholar

13. Yang HJ, Baek HJ, Speare R, Webb R, Park SK, Kim TH, Lasater KC, Shin SP, Son SH, Park JH, Min MS, Kim YJ, Na K, Lee H, Park SC: First detection of the amphibian chytrid fungus Batrachochytrium dendrobatidis in free-ranging populations of amphibians on mainland Asia: survey in South Korea. Dis Aquat Organ 2009, 86:9-13.10.3354/dao0209819899344Search in Google Scholar

14. Une Y, Kadekaru S, Tamukai K, Goka K, Kuroki T: First report of spontaneous chytridiomycosis in frogs in Asia. Dis Aquat Organ 2008, 82:157-160.10.3354/dao0200619149379Search in Google Scholar

15. Fisher MC, Garner TWJ, Walker SF. Global emergence of Batrachochytrium dendrobatidis and amphibian chytridiomycosis in space, time and host. Annu Rev Microbiol 2009, 63:291-310.10.1146/annurev.micro.091208.07343519575560Search in Google Scholar

16. Olson DH, Aanensen DM, Ronnenberg KL, Powell CI, Walker SF, Bielby J, Garner TW, Weaver G, Fisher MC: Mapping the global emergence of Batrachochytrium dendrobatidis, the amphibian chytrid fungus. PLoS ONE 2013, 8:e56802.10.1371/journal.pone.0056802358408623463502Search in Google Scholar

17. Goka K, Yokoyama J, Une Y, Kuroki T, Suzuki K, Nakahara M, Kobayashi A, Inaba S, Mizutani T, Hyatt AD: Amphibian chytridiomycosis in Japan: distribution, haplotypes, and possible route of entry into Japan. Mol Ecol 2009, 18:4757-4774.10.1111/j.1365-294X.2009.04384.x19840263Search in Google Scholar

18. Weldon C, du Preez LH, Hyatt AD, Muller R, Spears R: Origin of the amphibian chytrid fungus. Emerg Infect Dis 2004, 10:2100-2105.10.3201/eid1012.030804332339615663845Search in Google Scholar

19. Mazzoni R, Cunningham AA, Daszak P, Apolo A, Perdomo E, Speranza G: Emerging pathogen of wild amphibians in frogs (Rana catesbeiana) farmed for international trade. Emerg Infect Dis 2003, 9:995-998.10.3201/eid0908.030030302060112967500Search in Google Scholar

20. Schloegel LM, Picco AM, Kilpatrick AM, Davies AJ, Hyatt AD, Daszak P: Magnitude of the US trade in amphibians and presence of Batrachochytrium dendrobatidis and ranavirus infection in imported North American bullfrogs (Rana catesbeiana). Biol Conserv 2009, 142:1420-1426.10.1016/j.biocon.2009.02.007Search in Google Scholar

21. Fisher MC, Bosch J, Yin Z, Stead DA, Walker J, Selway L, Brown AJP, Walker LA, Gow NAR, Stajich JE, Garner TWJ: Proteomic and phenotypic profi ling of the amphibian pathogen Batrachochytrium dendrobatidis shows that genotype is linked to virulence. Mol Ecol 2009, 18:415-429.10.1111/j.1365-294X.2008.04041.x19161465Search in Google Scholar

22. Becker CG, Greenspan SE, Tracy KE, Dash JA, Lambertini C, Jenkinson TS, Leite DS, Toledo LF, Longcore JE, James TY, Zamudio KR: Variation in phenotype and virulence among enzootic and panzootic amphibian chytrid lineages. Fungal Ecol 2017, 26:45-50.10.1016/j.funeco.2016.11.007Search in Google Scholar

23. Gervasi SS, Stephens PR, Hua J, Searle CL, Xie GY, Urbina J, Olson DH, Bancroft BA, Weis V, Hammond JI, Relyea RA, Blaustein AR: Linking ecology and epidemiology to understand predictors of multi-host responses to an emerging pathogen, the amphibian chytrid fungus. PLoS ONE 2017, 12:e0167882.10.1371/journal.pone.0167882524098528095428Search in Google Scholar

24. Farrer RA, Weinert LA, Bielby J, Garner TWJ, Balloux F, Francis C, Bosch J, Cunninghma AA, Weldon C, du Preez LH, Anderson L, Kosakovsky PSL, Shahar-Golan R, Henk DA, Fisher MC: Multiple emergences of genetically diverse amphibian infecting chytrids include a globalized hypervirulent recombinant lineage. P Natl Acad Sci USA 2011, 108:18732-18736.10.1073/pnas.1111915108321912522065772Search in Google Scholar

25. Lips K: A tale of two lineages: unexpected, long‐term persistence of the amphibian‐killing fungus in Brazil. Mol Ecol 2014, 23:747-749.10.1111/mec.1265124471404Search in Google Scholar

26. Schloegel LM, Toledo LF, Longcore JE, Greenspan SE, Vieira CA, Lee M, Zhao S, Wangen C, Ferreira C, Hipolito M: Novel, panzootic and hybrid genotypes of amphibian chytridiomycosis associated with the bullfrog trade. Mol Ecol 2012, 21:5162-5177.10.1111/j.1365-294X.2012.05710.x22857789Search in Google Scholar

27. Bletz MC, Rosa GM, Andreone F, Courtois EA, Schmeller DS, Rabibisoa NH, Rabemananjara FC, Raharivololoniaina L, Vences M, Weldon C, Edmonds D, Raxworthy CJ, Harris RN, Fisher MC, Crottini A: Widespread presence of the pathogenic fungus Batrachochytrium dendrobatidis in wild amphibian communities in Madagascar. Sci Rep 2015, 5:8633.10.1038/srep08633434142225719857Search in Google Scholar

28. Rödder D, Kielgast J, Lötters S: Future potential distribution of the emerging amphibian chytrid fungus under anthropogenic climate change. Dis Aquat Organ 2010, 92:201-207.10.3354/dao0219721268982Search in Google Scholar

29. Ron SR: Predicting the distribution of the amphibian pathogen Batrachochytrium dendrobatidisin the new world. Biotropica 2005, 37:209-221.10.1111/j.1744-7429.2005.00028.xSearch in Google Scholar

30. Teixeira RD, Pereira Mello SCR, Lima dos Santos CAM: The world market for frog legs. FA O, Rome. Globefi sh version 2001, 68:1-44.Search in Google Scholar

31. Pirarat N, Sommanustweechai A, Sailasuta A, Kamolnorranart S, Une Y, Siriaroonrat B: Immunohistochemical identifi cation of chytridiomycosis in poison dart frogs (Dendrobates tinctorius) in Thailand [abstract]. Proceeding of the 4th Asian Society of Veterinary Pathologists Conference, Bangkok, Thailand 2009, 436.Search in Google Scholar

32. Puschendorf R, Bolanos F: Detection of Batrachochytrium dendrobatidisin Eleutherodactylus fi tzingeri: effects of skin sample location and histologic skin. J Wildlife Dis 2006, 42:301-306.10.7589/0090-3558-42.2.30116870852Search in Google Scholar

33. Annis SL, Dastoor FP, Ziel H, Daszak P, Longcore JE: A DNA-based assay identifi es Batrachochytrium dendrobatidis in amphibians. J Wildlife Dis 2004, 40:420-428.10.7589/0090-3558-40.3.42015465708Search in Google Scholar

34. Tamura K, Stecher G, Peterson D, Filipski A, Kumar S: MEGA6: Molecular Evolutionary Genetics Analysis Version 6.0. Mol Biol Evol 2013, 30:2725-2729.10.1093/molbev/mst197384031224132122Search in Google Scholar

35. Kilpatrick AM, Briggs CJ, Daszak P: The ecology and impact of chytridiomycosis: an emerging disease of amphibians. Trends Ecol Evol 2009, 25:109-118.10.1016/j.tree.2009.07.01119836101Search in Google Scholar

36. Swei A, Rowley JJ, Rödder D, Diesmos ML, Diesmos AC, Briggs CJ, Brown R, Cao TT, Cheng TL, Chong RA, Han B, Hero JM, Hoang HD, Kusrini MD, Le DT, McGuire JA, Meegaskumbura M, Min MS, Mulcahy DG, Neang T, Phimmachak S, Rao DQ, Reeder NM, Schoville SD, Sivongxay N, Srei N, Stöck M, Stuart BL, Torres LS, Tran DT, Tunstall TS, Vieites D, Vredenburg VT: Is chytridiomycosis an emerging infectious disease in Asia?. PLoS One 2011, 6:e23179.10.1371/journal.pone.0023179315671721887238Search in Google Scholar

37. Savage AE, Grismer LL, Anuar S, Onn CK, Grismer JL, Quah E, Muin MA, Ahmad N, Lenker M, Zamudio KR: First record of Batrachochytrium dendrobatidis infecting four frog families from Peninsular Malaysia. EcoHealth 2011, 8:121-128.10.1007/s10393-011-0685-y21541819Search in Google Scholar

38. Gaertner JP, Mendoza JA, Neang T, Forstner MJR, Hahn D: Detection of Batrachochytrium dendrobatidis in frogs from different locations in Cambodia. Herpetol Rev 2011, 42:546-549.Search in Google Scholar

39. Mendoza JA, Gaertner JP, Holden J, Forstner MJR, Hahn D: Detection of Batrachochytrium dendrobatidis on amphibians in Pursat Province, Cambodia. Herpetol Rev 2011, 42:542-545.Search in Google Scholar

40. Park ST, Collingwood AM, St-Hilaire S, Sheridan PP: Inhibition of Batrachochytrium dendrobatidis caused by bacteria isolated from the skin of boreal toads, Anaxyrus (Bufo) boreas boreas, from Grand Teton National Park, Wyoming, USA. Microbiol Insights 2014, 7:1-8.10.4137/MBI.S13639401922524826077Search in Google Scholar

41. Vörös J, Satasook C, Bates P, Wangkulangkul S: First record of the amphibian chytrid fungus, Batrachochytrium dendrobatidis in Thailand. Herpetology Notes 2012, 5:519-521.Search in Google Scholar

42. McLeod DS, Sheridan JA, Jiraungkoorskul W, Khonsue W: A survey for chytrid fungus in Thai amphibians. Raffl es B Zool 2008, 56:199-204.Search in Google Scholar

43. Boyle DG, Boyle DB, Olsen V, Morgan JA, Hyatt AD: Rapid quantitative detection of chytridiomycosis (Batrachochytrium dendrobatidis) in amphibian samples using real-time Taqman PCR assay. Dis Aquat Organ 2004, 60:141-148.10.3354/dao06014115460858Search in Google Scholar

44. Kriger KM, Hines HB, Hyatt AD, Boyle DG, Hero JM: Techniques for detecting chytridiomycosis in wild frogs: comparing histology with real-time Taqman PCR. Dis Aquat Organ 2006, 71:141-148.10.3354/dao07114116956061Search in Google Scholar

eISSN:
1820-7448
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Medicine, Veterinary Medicine