Amtmann A, Ahmed I, Zahner-Rimmel P, Mletzko A, Jordan LK, Oberle M, Wedekind H, Christian J, Bergmann SM, Becker AM (2020) Virucidal effects of various agents-including protease-against koi herpesvirus and viral hemorrhagic septicemia virus. J Fish Dis 43(2):185–195
Article CAS PubMed Google Scholar
Davison AJ (1992) Channel catfish virus: a new type of herpesvirus. Virology 186:9–14
Article CAS PubMed Google Scholar
Dharan V, Aarattuthodi S (2021) Rivers’s postulates fulfilled for blue catfish alloherpesvirus. Front Environ Microbiol 7(3):80–84
Dharan V, Khoo L, Phelps NBD, Kumar G, Steadman J, Bosworth B, Aarattuthodi S (2021) An investigation into the pathogenesis of blue catfish alloherpesvirus in ictalurid catfish. J World Aquac Soc 53(2):384–400
Dixon PF, Smail DA, Algoët M, Hastings TS, Bayley A, Byrne H, Dodge M, Garden A, Joiner C, Roberts E, Verner-Jeffreys D, Thompson F (2012) Studies on the effect of temperature and pH on the inactivation of fish viral and bacterial pathogens. J Fish Dis 35(1):51–64
Article CAS PubMed Google Scholar
Elliott DG, Amend DF (1978) Efficacy of certain disinfectants against infectious pancreatic necrosis virus. J Fish Biol 12:277-286
Food and Agriculture Organization (FAO) (2024) Fishery and aquaculture statistics. Global production by production source 1950–2022. FishStatJ. Rome: FAO. Accessed 2024 July 15.
Fijan NN, Welborn TLJ, Naftel JP (1970) An acute viral disease of channel catfish. US Bureau of Sport Fisheries and Wildlife Technical Paper 43:11
Garcia MT, Ribosa I, Guindulain T, Sanchez-Leal J, Vives-Rego J (2001) Fate and effect of monoalkyl quaternary ammonium surfactants in the aquatic environment. Environ Pollut 111(1):169–175
Article CAS PubMed Google Scholar
Garlock TM, Asche F, Anderson JL et al (2024) Environmental, economic, and social sustainability in aquaculture: the aquaculture performance indicators. Nat Commun 15:5274
Article CAS PubMed PubMed Central Google Scholar
Gonçalves AA, Gagnon GA (2011) Ozone application in recirculating aquaculture system: an overview. Science & Engineering 33(5):345–367
Hanson L, Dishon A, Kotler M (2011) Herpesviruses that infect fish viruses 3(11):2160–2191
Hanson L, Doszpoly A, van Beurden SJ, de Oliveira Viadanna PH, Waltzek T (2016) Alloherpesviruses of fish. In F. S. B. Kibenge M. G. Godoy (Eds.), Aquaculture Vir (pp. 153–172). Cambridge, MA: Academic Press.
Hegde S, Kumar G, Engle CR, Hanson TR, Roy LA, van Senten J, Johnson JW, Avery JL, Aarattuthodi S, Dahl S, Dorman L, Peterman P (2022) Economic contribution of the U.S. catfish industry. Aquac Econ Manag 26(4):384–413
Hernndez A, Martro E, Matas L, Martın M, Ausina V (2000) Assessment of in-vitro efficacy of 1% Virkon® against bacteria, fungi, viruses and spores by means of AFNOR guidelines. J Hosp Infect 46:203–209
Kasai H, Muto Y, Yoshimizu M (2005) Virucidal effects of ultraviolet, heat treatment and disinfectants against koi herpesvirus (KHV). Fish Pathol 40(3):137–138
Kelly A, Stockton-Fiti, Moffitt C (2017) Safety and efficacy of Virkon® aquatic as a control tool for invasive molluscs in aquaculture. Aquaculture 480:71–76
Kibenge FS, Godoy MG, Fast M, Workenhe S, Kibenge MJ (2012) Countermeasures against viral diseases of farmed fish. Antivir Res 95(3):257–281
Article CAS PubMed Google Scholar
Kiryu I, Sakai T, Kurita J, Iida T (2007) Virucidal effect of disinfectants on spring viremia of carp virus. Fish Pathol 42:111–113
Kumar G, Engle C, Aarattuthodi S, van Senten J, Hegde S, Khoo L, Hanson L, Peterman M, Dorman L (2024) Economic impact of Edwardsiellosis on the U.S. catfish industry. Aquac Econ Manag 28(3):415–438
Kumar G, Engle C, van Senten J, Sun L, Hegde S, Richardson BM (2023) Resource productivity and costs of aquaculture practices: economic–sustainability perspectives from U.S. catfish farming. Aquaculture 574:739715
Leung T, Bates A (2013) More rapid and severe disease outbreaks for aquaculture at the tropics: implications for food security. J Appl Ecol 50:215–222
Liu L, Hu Y, Lu J, Wang G (2019) An imidazole coumarin derivative enhances the antiviral response to spring viremia of carp virus infection in zebrafish. Virus Res 2(263):112–118
Liu L, Hu Y, Shen YF, Wang GX, Zhu B (2017) Evaluation on antiviral activity of coumarin derivatives against spring viraemia of carp virus in epithelioma papulosum cyprini cells. Antivir Res 144:173–185
Article CAS PubMed Google Scholar
Liu L, Song DW, Liu GL, Shan LP, Qiu TX, Chen J (2020) Hydroxycoumarin efficiently inhibits spring viraemia of carp virus infection in vitro and in vivo. Zool Res 41(4):395–409
Article CAS PubMed PubMed Central Google Scholar
Mainous M, Kuhn D, Smith S (2012) Efficacy of common aquaculture compounds for disinfection of Flavobacterium columnare and F. psychrophilum. J Appl Aquac 24:262–270
Mainous M, Smith S, Kuhn D (2010) Effect of common aquaculture chemicals against Edwardsiella ictaluri and E. tarda. J Aquat Anim Health 22:224–228
Marchetti V, Mancianti F, Cardini G, Luchetti E (2006) Evaluation of fungicidal efficacy of benzalkonium chloride and Virkon-S against Microsporum canis for environmental disinfection. Vet Res Comm 30:255–261
Mitchell A, Hobbs M, Brandt T (2007) The effect of chemical treatments on red-rim melania Melanoides tuberculata, an exotic aquatic snail that serves as a vector of trematodes to fish and other species in the USA. N Am J Fish Manag 27:1287–1293
Moffitt C, Barenberg A, Stockton K, Watten B (2015) Efficacy of two approaches for disinfecting surfaces and water infested with quagga mussel veligers. In Wong WH, Gerstenberger S (eds) Chapter 30. Biology and management of invasive quagga and zebra mussels in the Western United States. CRC Press, Boca Raton, FL, pp 467–477
Plumb JA (1978) Epizootiology of channel catfish virus disease. Mar Fish Rev 49(3):26–29
Rach JJ, Gaikowski MP, Ramsay RT (2000) Efficacy of hydrogen peroxide to control parasitic infestations on hatchery-reared fish. J Aquat Anim Health 12:267–273
Rahman H, Choi T (2018) The efficacy of Virkon-S for the control of saprolegniasis in common carp. Cyprinus Carpio l Peer J 23(6):e5706
Reed LJ, Muench H (1938) A simple method of estimating fifty percent endpoints. Am J Hyg 27:493–497
Roberts RJ (2001) Inactivation of viruses. In: Roberts RJ (ed) Fish pathology, 3rd edn. W.B Saunders, London, p 198
Russo R, Curtis EW, Yanong RPE (2007) Preliminary investigations of hydrogen peroxide treatment of selected ornamental fishes and efficacy against external bacteria and parasites in green swordtails. J Aquat Anim Health 19:121–127
Shen YF, Hu Y, Zhang Z, Liu L, Chen C, Tu X, Wang GX, Zhu B (2019a) Saikosaponin D efficiently inhibits SVCV infection in vitro and in vivo. Aquaculture 504:281–290
Shen YF, Hu Y, Zhu B, Wang GX (2019b) Antiviral activity of anisomycin against spring viraemia of carp virus in epithelioma papulosum cyprini cells and zebrafish. Virus Res 15(268):38–44
Silverstein PS, Bosworth BG, Gaunt PS (2008) Differential susceptibility of blue catfish, Ictalurus furcatus (Valenciennes), channel catfish, I. punctatus (Rafinesque), and blue x channel catfish hybrids to channel catfish virus. J Fish Dis 3:77–79
Smail DA, Grant R, Simpson D, Bain N, Hastings TS (2004) Disinfectants against cultured Infectious Salmon Anaemia (ISA) virus: the virucidal effect of three iodophors, chloramine T, chlorine dioxide and peracetic acid/hydrogen peroxide/acetic acid mixture. Aquaculture 240:29–38
Song D, Liu G, Xue M, Qiu T, Wang H, Shan L, Liu L, Chen J (2021) In vitro and in vivo evaluation of antiviral activity of a phenylpropanoid derivative against spring viraemia of carp virus. Virus Res 291:198221
Article CAS PubMed Google Scholar
Soto E, Yun SC, Surachetpong W (2019) Susceptibility of Tilapia Lake Virus to buffered povidone-iodine complex and chlorine. Aquaculture 512:734342
Comments (0)