カエルツボカビ症 (Japanese Wikipedia)

Analysis of information sources in references of the Wikipedia article "カエルツボカビ症" in Japanese language version.

refsWebsite
Global rank Japanese rank
2nd place
6th place
low place
691st place
2,490th place
194th place
5,957th place
low place
4,627th place
311th place
896th place
2,100th place
low place
low place
1,415th place
95th place
low place
low place
8,932nd place
652nd place
low place
2,064th place

affrc.go.jp

agriknowledge.affrc.go.jp

doi.org

  • Wijayawardene, N. N., Pawłowska, J., Letcher, P. M., Kirk, P. M., Humber, R. A., Schüßler, A., ... & Hyde, K. D. (2018). “Notes for genera: basal clades of Fungi (including Aphelidiomycota, Basidiobolomycota, Blastocladiomycota, Calcarisporiellomycota, Caulochytriomycota, Chytridiomycota, Entomophthoromycota, Glomeromycota, Kickxellomycota, Monoblepharomycota, Mortierellomycota, Mucoromycota, Neocallimastigomycota, Olpidiomycota, Rozellomycota and Zoopagomycota)”. Fungal Diversity 92 (1): 43-129. doi:10.1007/s13225-018-0409-5. 
  • Longcore, J. E., Pessier, A. P. & Nichols, D. K. (1999). “Batrachochytrium dendrobatidis gen. et sp. nov., a chytrid pathogenic to amphibians”. Mycologia 91 (2): 219-227. doi:10.1080/00275514.1999.12061011. 
  • Van Rooij, P., Martel, A., Haesebrouck, F. & Pasmans, F. (2015). “Amphibian chytridiomycosis: a review with focus on fungus-host interactions”. Veterinary Research 46 (1): 1-22. doi:10.1186/s13567-015-0266-0. 
  • Martel, A., Spitzen-van der Sluijs, A., Blooi, M., Bert, W., Ducatelle, R., Fisher, M. C., ... & Pasmans, F. (2013). “Batrachochytrium salamandrivorans sp. nov. causes lethal chytridiomycosis in amphibians”. Proceedings of the National Academy of Sciences 110 (38): 15325-15329. doi:10.1073/pnas.130735611. 
  • Berger, L., Speare, R., Hines, H. B., Marantelli, G., Hyatt, A. D., McDonald, K. R., ... & Tyler, M. J. (2004). “Effect of season and temperature on mortality in amphibians due to chytridiomycosis”. Australian Veterinary Journal 82 (7): 434-439. doi:10.1111/j.1751-0813.2004.tb11137.x. 
  • Woodhams, D. C., Alford, R. A., & Marantelli, G. (2003). “Emerging disease of amphibians cured by elevated body temperature”. Diseases of Aquatic Organisms 55 (1): 65-67. doi:10.3354/dao055065. 
  • Johnson, M. L. & Speare, R. (2003). “Survival of Batrachochytrium dendrobatidis in water: quarantine and disease control implications”. Emerging Infectious Diseases 9 (8): 922-925. doi:10.3201/eid0908.030145. 
  • Retallick, R. W. R., McCallum, H., & Speare, R. (2004). “Endemic infection of the amphibian chytrid fungus in a frog community post-decline”. PLoS Biology 2 (11): e351. doi:10.1371/journal.pbio.0020351. 
  • Voyles, J., Young, S., Berger, L., Campbell, C., Voyles, W. F., Dinudom, A., Cook, D., Webb, R., Alford, R. A., Skerratt, L. F. & Speare, R. (2009). “Pathogenesis of chytridiomycosis, a cause of catastrophic amphibian declines”. Science 326 (5952): 582-585. doi:10.1126/science.1176765. 
  • Rendle, M. E., Tapley, B., Perkins, M., Bittencourt-Silva, G., Gower, D. J., & Wilkinson, M. (2015). “Itraconazole treatment of Batrachochytrium dendrobatidis (Bd) infection in captive caecilians (Amphibia: Gymnophiona) and the first case of Bd in a wild neotropical caecilian”. Journal of Zoo and Aquarium Research 3 (4): 137-140. doi:10.19227/jzar.v3i4.112. 
  • Woodhams, D. C., Geiger, C. C., Reinert, L. K., Rollins-Smith, L. A., Lam, B., Harris, R. N., ... & Voyles, J. (2012). “Treatment of amphibians infected with chytrid fungus: learning from failed trials with itraconazole, antimicrobial peptides, bacteria, and heat therapy”. Diseases of Aquatic Organisms 98 (1): 11-25. doi:10.3354/dao02429. 
  • Lam, B. A., Walke, J. B., Vredenburg, V. T. & Harris, R. N. (2010). “Proportion of individuals with anti-Batrachochytrium dendrobatidis skin bacteria is associated with population persistence in the frog Rana muscosa”. Biological Conservation 143 (2): 529-531. doi:10.1016/j.biocon.2009.11.015. 
  • Chatfield, M. W. & Richards-Zawacki, C. L. (2011). “Elevated temperature as a treatment for Batrachochytrium dendrobatidis infection in captive frogs”. Diseases of Aquatic Organisms 94 (3): 235-238. doi:10.3354/dao02337. 
  • Stuart, S. N., Chanson, J. S., Cox, N. A., Young, B. E., Rodrigues, A. S., Fischman, D. L., & Waller, R. W. (2004). “Status and trends of amphibian declines and extinctions worldwide”. Science 306 (5702): 1783-1786. doi:10.1126/science.110353. 
  • Scheele, B. C., Pasmans, F., Skerratt, L. F., Berger, L., Martel, A. N., Beukema, W., ... & Canessa, S. (2019). “Amphibian fungal panzootic causes catastrophic and ongoing loss of biodiversity”. Science 363 (6434): 1459-1463. doi:10.1126/science.aav03. 
  • Berger, L., Roberts, A. A., Voyles, J., Longcore, J. E., Murray, K. A. & Skerratt, L. F. (2016). “History and recent progress on chytridiomycosis in amphibians”. Fungal Ecology 19: 89-99. doi:10.1016/j.funeco.2015.09.007. 
  • Schloegel, L. M., Hero, J. M., Berger, L., Speare, R., McDonald, K., & Daszak, P. (2006). “The decline of the sharp-snouted day frog (Taudactylus acutirostris): the first documented case of extinction by infection in a free-ranging wildlife species?”. EcoHealth 3: 35-40. doi:10.1007/s10393-005-0012-6. 
  • Lambert, M. R., Womack, M. C., Byrne, A. Q., Hernández-Gómez, O., Noss, C. F., Rothstein, A. P., ... & Rosenblum, E. B. (2020). “Comment on “Amphibian fungal panzootic causes catastrophic and ongoing loss of biodiversity””. Science 367 (6484): eaay1838. doi:10.1126/science.aay1838. 
  • Brucker, R. M., Harris, R. N., Schwantes, C. R., Gallaher, T. N., Flaherty, D. C., Lam, B. A. & Minbiole, K. P. (2008). “Amphibian chemical defense: antifungal metabolites of the microsymbiont Janthinobacterium lividum on the salamander Plethodon cinereus”. Journal of Chemical Ecology 34: 1422-1429. doi:10.1007/s10886-008-9555-7. 
  • Brucker, R. M., Baylor, C. M., Walters, R. L., Lauer, A., Harris, R. N. & Minbiole, K. P. (2008). “The identification of 2, 4-diacetylphloroglucinol as an antifungal metabolite produced by cutaneous bacteria of the salamander Plethodon cinereus”. Journal of Chemical Ecology 34: 39-43. doi:10.1007/s10886-007-9352-8. 
  • Newell, D. A., Goldingay, R. L. & Brooks, L. O. (2013). “Population recovery following decline in an endangered stream-breeding frog (Mixophyes fleayi) from subtropical Australia”. PLoS One 8 (3): e58559. doi:10.1371/journal.pone.0058559. 
  • Voyles, J., Woodhams, D. C., Saenz, V., Byrne, A. Q., Perez, R., Rios-Sotelo, G., ... & Richards-Zawacki, C. L. (2018). “Shifts in disease dynamics in a tropical amphibian assemblage are not due to pathogen attenuation”. Science 359 (6383): 1517-1519. doi:10.1126/science.aao4806. 
  • Davidson, C., Benard, M. F., Shaffer, H. B., Parker, J. M., O'Leary, C., Conlon, J. M., & Rollins-Smith, L. A. (2007). “Effects of chytrid and carbaryl exposure on survival, growth and skin peptide defenses in foothill yellow-legged frogs”. Environmental Science & Technology 41 (5): 1771-1776. doi:10.1021/es0611947. 
  • Rosa, I. D., Simoncelli, F., Fagotti, A. & Pascolini, R. (2007). “The proximate cause of frog declines?”. Nature 447 (7144): E4-E5. doi:10.1038/nature05941. 
  • McMahon TA, Brannelly LA, Chatfield MW, Johnson PT, Joseph MB, McKenzie VJ, Richards-Zawacki CL, Venesky MD, Rohr JR (2012). “Chytrid fungus Batrachochytrium dendrobatidis has nonamphibian hosts and releases chemicals that cause pathology in the absence of infection”. Proceedings of the National Academy of Sciences 110 (1): 210-215. doi:10.1073/pnas.1200592110. 

env.go.jp

kaerutanteidan.jp

mainichi-msn.co.jp

mycobank.org

nies.go.jp

nikkeibp.co.jp

natgeo.nikkeibp.co.jp

pref.kyoto.jp

scientificamerican.com

blogs.scientificamerican.com

wbsj.org