References
- Ali SE, Thoen E, Evensen O, Wiik-Nielsen J, Gamil AA, Skaar I. Mitochondrial dysfunction is involved in the toxic activity of boric acid against Saprolegnia. PLoS One 2014;9:e110343. https://doi.org/10.1371/journal.pone.0110343
- Madrid A, Godoy P, Gonzalez S, Zaror L, Moller A, Werner E, Cuellar M, Villena J, Montenegro I. Chemical characterization and anti-oomycete activity of Laureliopsis philippianna essential oils against Saprolegnia parasitica and S. australis. Molecules 2015;20:8033-47. https://doi.org/10.3390/molecules20058033
- Jiang RH, de Bruijn I, Haas BJ, Belmonte R, Löbach L, Christie J, van den Ackerveken G, Bottin A, Bulone V, Díaz- Moreno SM, et al. Distinctive expansion of potential virulence genes in the genome of the oomycete fish pathogen Saprolegnia parasitica. PLoS Genet 2013;9:e1003272. https://doi.org/10.1371/journal.pgen.1003272
- Neish GA, Hughes GC. Fungal disease of fishes. In: Snieszko SF, Axelrod HR, editors. Fungal diseases of fishes: book 6. Neptune City (NJ): TFH Publication; 1980. p. 1-159.
- Zaki MS, Fawzi OM, El-Jackey J. Pathological and biochemical studies in Tilapia nilotica infected with Saprolegnia parasitica and treated with potassium permanganate. Am Eurasian J Agric Environ Sci 2008;3:677-80.
- Willoughby LG, Pickering AD. Viable Saprolegniaceae spores on the epidermis of the salmonid fish Salmo trutta and Salvelinus alpinus. Trans Br Mycol Soc 1977;68:91-5. https://doi.org/10.1016/S0007-1536(77)80157-5
- Torto-Alalibo T, Tian M, Gajendran K, Waugh ME, van West P, Kamoun S. Expressed sequence tags from the oomycete fish pathogen Saprolegnia parasitica reveal putative virulence factors. BMC Microbiol 2005;5:46. https://doi.org/10.1186/1471-2180-5-46
- Ali SE, Thoen E, Evensen O, Skaar I. Boric acid inhibits germination and colonization of Saprolegnia spores in vitro and in vivo. PLoS One 2014;9:e91878. https://doi.org/10.1371/journal.pone.0091878
- Pirbalouti AG, Taheri M, Raisee M, Bahrami HR, Abdizadeh R. In vitro antifungal activity of plant extracts on Saprolegnia parasitica from cutaneous lesions of rainbow trout (Oncorhynchus mykiss) eggs. J Food Agric Environ 2009;7:94-6.
- Heikkinen J, Tiirola M, Mustonen SM, Eskelinen P, Navia- Paldanius D, von Wright A. Suppression of Saprolegnia infections in rainbow trout (Oncorhynchus mykiss) eggs using protective bacteria and ultraviolet irradiation of the hatchery water. Aquac Res 2016;47:925-39. https://doi.org/10.1111/are.12551
- Gieseker CM, Serfling SG, Reimschuessel R. Formalin treatment to reduce mortality associated with Saprolegnia parasitica in rainbow trout, Oncorhynchus mykiss. Aquaculture 2006;253:120-9. https://doi.org/10.1016/j.aquaculture.2005.07.039
-
Warrilow AG, Hull CM, Rolley NJ, Parker JE, Nes WD, Smith SN, Kelly DE, Kelly SL. Clotrimazole as a potent agent for treating the oomycete fish pathogen Saprolegnia parasitica through inhibition of sterol
$14{\alpha}$ -demethylase (CYP51). Appl Environ Microbiol 2014;80:6154-66. https://doi.org/10.1128/AEM.01195-14 - Osfor MH, Zaki MS, Saleh AZ. Impact of low diatery CHO diets on some nutritional and clinicopathogical parameters of Tilapia nilotica infected with Saprolegnia parasitica and exposed to copper nitrite. Bull Nat Res Cent Egypt 1998; 23:128-92.
- Zaki MS, Osfor MH, Bayumi FS, Gheit FA. Impact of low dietry carbohydrate diets on some nutritional and clinicopathological parameters of Tilapia nilotica infected with Saprolegnia parasitica and exposed to copper sulphate. Bull Nat Res Cent Egypt 2003;28:245-57.
- Pottinger TG, Day JG. A Saprolegnia parasitica challenge system for rainbow trout: assessment of Pyceze as an antifungal agent for both fish and ova. Dis Aquat Organ 1999; 36:129-41. https://doi.org/10.3354/dao036129
- Barnes ME, Ewing DE, Cordes RJ, Young GL. Observations on hydrogen peroxide control of Saprolegnia spp. during rainbow trout egg incubation. Prog Fish Cult 1998;60:67-70. https://doi.org/10.1577/1548-8640(1998)060<0067:OOHPCO>2.0.CO;2
- Forneris G, Bellardi S, Palmegiano GB, Saroglia M, Sicuro B, Gasco L, Zoccarato I. The use of ozone in trout hatchery to reduce saprolegniasis incidence. Aquaculture 2003;221:157-66. https://doi.org/10.1016/S0044-8486(02)00518-5
- El-Shaer NS, Badr JM, Aboul-Ela MA, Gohar YM. Determination of lawsone in henna powders by high performance thin layer chromatography. J Sep Sci 2007;30: 3311-5. https://doi.org/10.1002/jssc.200700223
- Lopez Lopez LI, Nery Flores SD, Silva Belmares SY, Saenz Galindo A. Naphthoquinones: biological properties and synthesis of lawsone and derivatives: a structured review. Vitae 2014;21:248-58.
- Pressley ME, Phelan PE 3rd, Witten PE, Mellon MT, Kim CH. Pathogenesis and inflammatory response to Edwardsiella tarda infection in the zebrafish. Dev Comp Immunol 2005; 29:501-13. https://doi.org/10.1016/j.dci.2004.10.007
- Novoa B, Romero A, Mulero V, Rodriguez I, Fernandez I, Figueras A. Zebrafish (Danio rerio) as a model for the study of vaccination against viral haemorrhagic septicemia virus (VHSV). Vaccine 2006;24:5806-16. https://doi.org/10.1016/j.vaccine.2006.05.015
- Chao CC, Hsu PC, Jen CF, Chen IH, Wang CH, Chan HC, Tsai PW, Tung KC, Wang CH, Lan CY, et al. Zebrafish as a model host for Candida albicans infection. Infect Immun 2010;78:2512-21. https://doi.org/10.1128/IAI.01293-09
- Kulatunga DC, Dananjaya SH, Park BK, Kim CH, Lee J, De Zoysa M. First report of Fusarium oxysporum species complex infection in zebrafish culturing system. J Fish Dis 2017;40:485-94. https://doi.org/10.1111/jfd.12529
- Hatai K, Hoshiai G. Mass mortality in cultured coho salmon (Oncorhynchus kisutch) due to Saprolegnia parasitica coker. J Wildl Dis 1992;28:532-6. https://doi.org/10.7589/0090-3558-28.4.532
- Diéguez-Uribeondo J, Cerenius L, Söderhäll K. Physiological characterization of Saprolegnia parasitica isolates from brown trout. Aquaculture 1996;140:247-57. https://doi.org/10.1016/0044-8486(95)01176-5
- Noor El Deen AI, Mona SZ, Razin AM, Shalaby SI. Field study on the use of Artemisia cina (Sheih Baladi) and humates (Humapol-Fis) in the control of saprolegniosis in fingerlings of Nile tilapias and Mugal cephalus in lower freshwater fish farms. Life Sci J 2010;7:125-8.
- Sime AD, Abbott LL, Abbott SP. A mounting medium for use in indoor air quality spore-trap analyses. Mycologia 2002;94: 1087-8. https://doi.org/10.1080/15572536.2003.11833165
- White TJ, Bruns T, Lee S, Taylor J. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: Innis MA, Gelfand DH, Sninsky JJ, White TJ, editors. PCR protocols: a guide to methods applications. San Diego (CA): Academic Press; 1990. p. 315-22.
- Kligman AM, Mescon H. The periodic acid-Schiff stain for the demonstration of fungi in animal tissue. J Bacteriol 1950;60:415-21.
- Godahewa GI, Wickramaarachchi WD, Whang I, Bathige SD, Lim BS, Choi CY, de Zoysa M, Noh JK, Lee J. Two carboxypeptidase counterparts from rock bream (Oplegnathus fasciatus): molecular characterization, genomic arrangement and immune responses upon pathogenic stresses. Vet Immunol Immunopathol 2014;162:180-91. https://doi.org/10.1016/j.vetimm.2014.10.005
-
Livak KJ, Schmittgen TD. Analysis of relative gene expression data using real-time quantitative PCR and the
$2^{-{\Delta}{\Delta}CT}$ method. Methods 2001;25:402-8. https://doi.org/10.1006/meth.2001.1262 - Willoughby LG. Fungi and fish diseases. Stirling: Pisces Press; 1994.
- Bruno DW, Poppe TT. A color atlas of salmonid diseases. London: Academic Press; 1996.
- Pickering AD, Willoughby LG. Saprolegnia infections of salmonid fish. In: Roberts RJ, editor. Microbial diseases of fish. London: Academic Press; 1982. p. 271-97.
- Bruno DW, Wood BP. Saprolegnia and other Oomycetes. In: Woo PT, Bruno DW, editors. Fish diseases and disorders. Vol. 3. Viral, bacterial and fungal infections. Wallingford: CABI Publishing; 1999. p. 559-659.
- Hatai K, Hoshiai G. Pathogenicity of Saprolegnia parasitica Coker. In: Mueller GJ, editor. Salmon Saprolegniasis. Portland (OR): U.S. Department of Energy, Bonneville Power Administration; 1994. p. 87-98.
- Sarowar MN, van den Berg AH, McLaggan D, Young MR, van West P. Saprolegnia strains isolated from river insects and amphipods are broad spectrum pathogens. Fungal Biol 2013; 117:752-63. https://doi.org/10.1016/j.funbio.2013.09.002
- Sullivan C, Kim CH. Zebrafish as a model for infectious disease and immune function. Fish Shellfish Immunol 2008; 25:341-50. https://doi.org/10.1016/j.fsi.2008.05.005
- Ke XL, Wang JG, Gu ZM, Li M, Gong XN. Morphological and molecular phylogenetic analysis of two Saprolegnia sp. (Oomycetes) isolated from silver crucian carp and zebra fish. Mycol Res 2009;113:637-44. https://doi.org/10.1016/j.mycres.2009.01.008
- Ke X, Wang J, Gu Z, Li M, Gong X. Saprolegnia brachydanis, a new oomycete isolated from zebra fish. Mycopathologia 2009;167:107-13. https://doi.org/10.1007/s11046-008-9150-z
- van West P. Saprolegnia parasitica, an oomycete pathogen with a fishy appetite: new challenges for an old problem. Mycologist 2006;20:99-104. https://doi.org/10.1016/j.mycol.2006.06.004
- Kitancharoen N, Hatai K. Experimental infection of Saprolegnia spp. in rainbow trout eggs. Fish Pathol 1996;31:49-50. https://doi.org/10.3147/jsfp.31.49
- Zhang Q, Cheng J, Xin Q. Effects of tetracycline on developmental toxicity and molecular responses in zebrafish (Danio rerio) embryos. Ecotoxicology 2015;24:707-19. https://doi.org/10.1007/s10646-015-1417-9
- Álvarez F, Villena A, Zapata A, Razquin B. Histopathology of the thymus in Saprolegnia-infected wild brown trout, Salmo trutta L. Vet Immunol Immunopathol 1995;47:163-72. https://doi.org/10.1016/0165-2427(94)05384-5
- Plato A, Hardison SE, Brown GD. Pattern recognition receptors in antifungal immunity. Semin Immunopathol 2015;37:97-106. https://doi.org/10.1007/s00281-014-0462-4
- de Bruijn I, Belmonte R, Anderson VL, Saraiva M, Wang T, van West P, Secombes CJ. Immune gene expression in trout cell lines infected with the fish pathogenic oomycete Saprolegnia parasitica. Dev Comp Immunol 2012;38:44-54. https://doi.org/10.1016/j.dci.2012.03.018
- Belmonte R, Wang T, Duncan GJ, Skaar I, Mélida H, Bulone V, van West P, Secombes CJ. Role of pathogen-derived cell wall carbohydrates and prostaglandin E2 in immune response and suppression of fish immunity by the oomycete Saprolegnia parasitica. Infect Immun 2014;82:4518-29. https://doi.org/10.1128/IAI.02196-14
- Sun Q, Hu K, Yang XL. The efficacy of copper sulfate in controlling infection of Saprolegnia parasitica. J World Aquac Soc 2014;45:220-5. https://doi.org/10.1111/jwas.12113
- Rahmoun N, Boucherit-Otmani Z, Boucherit K, Benabdallah M, Choukchou-Braham N. Antifungal activity of the Algerian Lawsonia inermis (henna). Pharm Biol 2013;51:131-5. https://doi.org/10.3109/13880209.2012.715166
- Rahmoun NM, Boucherit-Atmani Z, Benabdallah M, Boucherit K, Villemin D, Choukchou-Braham N. Antimicrobial activities of the henna extract and some synthetic naphthoquinones derivatives. Am J Med Biol Res 2013;1:16-22. https://doi.org/10.12691/ajmbr-1-1-3
- Minor KL, Anderson VL, Davis KS, van den Berg AH, Christie JS, Lobach L, Faruk AR, Wawra S, Secombes CJ, van West P. A putative serine protease, SpSsp1, from Saprolegnia parasitica is recognised by sera of rainbow trout, Oncorhynchus mykiss. Fungal Biol 2014;118:630-9. https://doi.org/10.1016/j.funbio.2014.04.008
- Wawra S, Bain J, Durward E, de Bruijn I, Minor KL, Matena A, Löbach L, Whisson SC, Bayer P, Porter AJ, et al. Hosttargeting protein 1 (SpHtp1) from the oomycete Saprolegnia parasitica translocates specifically into fish cells in a tyrosine- O-sulphate-dependent manner. Proc Natl Acad Sci U S A 2012;109:2096-101. https://doi.org/10.1073/pnas.1113775109
- Hu K, Ma RR, Cheng JM, Ye X, Sun Q, Yuan HL, Liang N, Fang WH, Li HR, Yang XL. Analysis of Saprolegnia parasitica transcriptome following treatment with copper sulfate. PLoS One 2016;11:e0147445. https://doi.org/10.1371/journal.pone.0147445