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Balcázar, J. L., De Blas, I., Ruiz-Zarzuela, I., Vendrell, D., Gironés, O., Muzquiz, J. L. (2007). Enhancement of the immune response and protection induced by probiotic lactic acid bacteria against furunculosis in rainbow trout (Oncorhynchus mykiss). FEMS Immunology & Medical Microbiology, 51(1), 185-193.10.1111/j.1574-695X.2007.00294.x17645738 Search in Google Scholar

Bregnballe, J. (2015). A guide to recirculation aquaculture an introduction to the environmentally friendly and highly productive closed fish farming system. In: Food and Agriculture Organisation the United Nations (FAO) and Eurofish, 43. Search in Google Scholar

Brzozowski, M., Rekiel, A., Więcek, J., Gajewska, J. (2013). Evaluation of a prophylactic program based upon effective microorganisms in fattening of pigs. Medycyna Weterynaryjna 69, 248-251 (in Polish). Search in Google Scholar

Cieśla, M. (2016). Research report, access http://pir.sggw.pl/karp.html Search in Google Scholar

Golec, A. F. C., Pérez, P. G., Lokare, C. (2007). Effective microorganisms: myth or reality? Revista Peruana de Biología, 14(2), 315-319. Search in Google Scholar

Das, S., Sahoo, P. K. (2014). Markers for selection of disease resistance in fish: a review. Aquaculture International, 22(6), 1793-1812.10.1007/s10499-014-9783-5 Search in Google Scholar

Das, S., Sahoo, P. K. (2018). Ceruloplasmin, a moonlighting protein in fish. Fish & Shellfish Immunology, 82, 460-468.10.1016/j.fsi.2018.08.04330144565 Search in Google Scholar

Ellis, A. E. (1999). Immunity to bacteria in fish. Fish & Shell-fish Immunology, 9(4), 291-308.10.1006/fsim.1998.0192 Search in Google Scholar

Kazuń, K., Siwicki, A. K. (2001). Propiscin–a safe new anaesthetic for fish. Archives of Polish Fisheries, 9, 183-190. Search in Google Scholar

Kowalska, A., Zakęś, Z., Siwicki, A. K., Jankowska, B., Jarmołowicz, S., Demska-Zakęś, K. (2012). Impact of diets with different proportions of linseed and sunflower oils on the growth, liver histology, immunological and chemical blood parameters, and proximate composition of pikeperch Sander lucioperca (L.). Fish Physiology and Biochemistry, 38(2), 375-388.10.1007/s10695-011-9514-z330913721656178 Search in Google Scholar

Kozłowski, M., Szczepkowski, M., Wunderlich, K., Szczepkowska, B., Piotrowska, I. (2014). Polyculture of juvenile pikeperch (Sander lucioperca (L.)) and sterlet (Acipenser ruthenus L.) in a recirculating system.. Archives of Polish Fisheries, 22(4), 237-242.10.2478/aopf-2014-0024 Search in Google Scholar

Magnadottir, B. (2010). Immunological control of fish diseases. Marine Biotechnology, 12(4), 361-379.10.1007/s10126-010-9279-x20352271 Search in Google Scholar

Mishra, S. S., Das, R., Das, B. K., Choudhary, P., Rathod, R., Giri, B. S., ... Swain, P. (2017). Status of Aqua-medicines, drugs and chemicals use in India: A Survey Re-port. Journal Aquactic Fisheries, 1(004). Search in Google Scholar

Mustafa Al. Bakri, M.A., Hadi Ma Radzi, A., Akmal Mohamad, N.S., Zainul, S.K., Diyana, N.Y. (2011). Production of effective microorganism using halal-based sources: A review. African Journal of Biotechnology, 10, 18649-18652. Search in Google Scholar

Newaj-Fyzul, A., Austin, B. (2015). Probiotics, immuno-stimulants, plant products and oral vaccines, and their role as feed supplements in the control of bacterial fish diseases. Journal of Fish Diseases, 38(11), 937-955.10.1111/jfd.1231325287254 Search in Google Scholar

Qi, Z., Zhang, X. H., Boon, N., Bossier, P. (2009). Probiotics in aquaculture of China—current state, problems and prospect. Aquaculture, 290(1-2), 15-21.10.1016/j.aquaculture.2009.02.012 Search in Google Scholar

Rapatsa, M. M., Moyo, N. A. G. (2013). Haematological, histological and growth characteristics of Oreochromis mossambicus exposed to Effective Microorganisms in organically manured aquadams. Asian Journal of Animal and Veterinary Advances, 8(7), 852-862.10.3923/ajava.2013.852.862 Search in Google Scholar

Sitarek, M., Napiórkowska-Krzebietke, A., Mazur, R., Czarnecki, B., Pyka, J.P., Stawecki, K., Olech, M., Sołtysiak, S., Kapusta, A. (2016). Application of effective Microorganisms technology as a lake restoration tool – a case study of Muchawka reservoirs. Journal of Elementology, 22, 529-543. Search in Google Scholar

Siwicki, A.K., Anderson, D.P. (1993). Nonspecific defense mechanisms assay in fish. In: disease diagnosis and prevention’s methods. FAO-Project GCP/INT/526/JPN, IFI Olsztyn, 105-112. Search in Google Scholar

Siwicki, A.K., Zakęś, Z., Trapkowska, S., Terech-Majewska, E., Czerniak, S., Głąbski, E., Kazuń, K. (2003). Nonspecific cellular and humoral defense mechanisms in pikeperch (Sander lucioperca) grown in a intensive system of culture. Archives of Polish Fisheries, 11, 207-212. Search in Google Scholar

Siwicki, A.K., Zakęś, Z., Fuller, J.C., Nissen, S., Trapkowska, S., Głabski, E., Kowalska, A., Kazuń, K., Terech-Majewska, E. (2006). Influence of β- hydroksy-βmethylbutyrate on nonspecific humoral defense mechanisms and protection against furunculosis in pikeperch (Sander lucioperc). Aquaculture Research, 37, 127-131.10.1111/j.1365-2109.2005.01407.x Search in Google Scholar

Siwicki, A.K., Zakęś, Z., Terech-Majewska, E., Kowalska, A., Małaczewska, J. (2009). Supplementing the feed of pikeperch Sander lucioperca (L). with MacroGard and its influence on nonspecific cellular and humoral defense mechanism, Aquaculture Research, 40, 405-411. Search in Google Scholar

Siwicki, A. K., Terech-Majewska, E., Grudniewska, J., Malaczewska, J., Kazun, K., Lepa, A. (2010). Influence of deltamethrin on nonspecific cellular and humoral defense mechanisms in rainbow trout (Oncorhynchus mykiss). Environmental Toxicology and Chemistry: An International Journal, 29(3), 489-491.10.1002/etc.7520821468 Search in Google Scholar

Siwicki, A.K., Kazuń, K., Głabski, E., Terech-Majewska, E. (2010b). Formation of non-specific humoral immunity in three lines of carp females reared in Poland. Komunikaty Rybackie, 3, 608. (in Polish). Search in Google Scholar

Sokół, R., Gesek, M., Raś-Noryńska, M., Michalczyk, M., Koziatek-Sadłowska, S. (2017). Influence of effective microorganisms on selected serum biochemical parameters in Japanese quails infected with Cryptosporidium parvum. Medycyna Weterynaryjna, 73, 556-560.10.21521/mw.5771 Search in Google Scholar

Tang, J. Y., Dai, Y. X., Li, Y. M., Qin, J. G., Wang, Y. (2016). Can application of commercial microbial products improve fish growth and water quality in freshwater polyculture? North American Journal of Aqua-culture, 78(2), 154-160.10.1080/15222055.2015.1116474 Search in Google Scholar

Terech-Majewska, E. (2016). Improving disease prevention and treatment in controlled fish culture. Archives of Polish Fisheries, 24, 115-165.10.1515/aopf-2016-0013 Search in Google Scholar

Terech-Majewska, E., Grudniewska, J., Duchiewicz, K., Pajdak, J., Kaczorek, E., Schulz, P., Siwicki, A.K. (2016). Effects of the EM product Probiotyk on non-specific immunity and anti-infective resistance in rainbow trout. Komunikaty Rybackie, 151, 10-15 (in Polish). Search in Google Scholar

Terech-Majewska, E., Zakeś, Z., Kowalska, A., Siwicki, A.K., Szarek, J., Naumowicz, K. (2017). Influence of EM-probiotic on the morphology of the liver and gills in zander (Sander lucioperca). Proc. Joint European Congress of the ESVP and ECVP, The Bologna, 7-10.09.2016, Journal of Comparative Pathology, 1(156), 90.10.1016/j.jcpa.2016.11.115 Search in Google Scholar

Terech-Majewska, E., Kaczorek, E., Schulz, P., Zakeś, Z., Rożyński, M., Kowalska, A., Zembrzuska, M., Siwicki, A.K. (2018a). Influence of effective microorganisms on the non-specific cellular defense mechanisms of pikeperch. Medycyna Weterynaryjna, 74, 314-319.10.21521/mw.6033 Search in Google Scholar

Terech-Majewska E., Zakęś Z., Kowalska A., Siwicki A.K., Szarek J., Naumowicz K. (2018b). Influence of EM-probiotic on the morphology of the spleen in zander (Sander lucioperca). Proc. Joint European Congress of the ESVP and ECVP, The Lyon, 09. 2017, Journal of Comparative Pathology, 158, 146. Search in Google Scholar

Thiam, S., Fall, J., Loum, A., Sabne, M., Diouf, M. (2015). Use of effective microorganisms (EM) in tilapia diets: Effects of growth performance and carcass composition. International Journal of Current Microbiology and Applied Science 4, 536-549. Search in Google Scholar

Van Vliet, P. C. J., Bloem, J., De Goede, R. G. M. (2006). Microbial diversity, nitrogen loss and grass production after addition of Effective Micro-organisms®(EM) to slurry manure. Applied Soil Ecology, 32(2), 188-198.10.1016/j.apsoil.2005.07.001 Search in Google Scholar

Verschuere, L., Rombaut, G., Sorgeloos, P., Verstraete, W. (2000). Probiotic bacteria as biological control agents in aquaculture. Microbiology and Molecular Biology Reviews, 64(4), 655-671.10.1128/MMBR.64.4.655-671.20009900811104813 Search in Google Scholar

Wang, Y. B., Li, J. R., Lin, J. (2008). Probiotics in aquaculture: challenges and outlook. Aquaculture, 281(1-4), 1-4.10.1016/j.aquaculture.2008.06.002 Search in Google Scholar

Wang, W., Sun, J., Liu, C., Xue, Z. (2017). Application of immunostimulants in aquaculture: current knowledge and future perspectives. Aquaculture Research, 48(1), 1-23.10.1111/are.13161 Search in Google Scholar

Zakęś, Z. (2017). Rearing and Breeding Pikeperch, IFI Olsztyn, Poland, 212 p. (in Polish). Search in Google Scholar

Zorriehzahra, M. J., Delshad, S. T., Adel, M., Tiwari, R., Karthik, K., Dhama, K., Lazado, C. C. (2016). Probiotics as beneficial microbes in aquaculture: an update on their multiple modes of action: a review. Veterinary Quarterly, 36(4), 228-241.10.1080/01652176.2016.117213227075688 Search in Google Scholar

eISSN:
2545-059X
Lingua:
Inglese
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4 volte all'anno
Argomenti della rivista:
Life Sciences, Zoology, other