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Introduction. In the conditions of anthropogenic pollution of water, environment-safe drugs and implementing of immunomodulatory drugs are becoming increasingly common. Schemes of their use in fisheries are being developed. The article presents and analyzes the potential use of biologically active additives (BAA), namely probiotics, prebiotics and yeasts, both domestically and internationally produced, in terms of their effect on the fish body. Materials and methods of research. Search for literature data on the use of biologically active substances in fish farming, namely probiotics, prebiotics and yeast. Research results. Considering the negative impact of prophylactic and therapeutic use of antibiotics in aquaculture, the use of dietary immunostimulants has been proposed as an alternative to antimicrobial drugs. In this sense, functional dietary supplements, including pre-, probiotics and yeasts, are receiving increasing attention as an environmental strategy to improve fish health. Probiotics are the objects of comprehensive scientific research and an important product on the world market. The use of probiotics as biocontrol agents in aquaculture is increasing. The benefits of such additives include increased nutritional value, inhibition of pathogens and enhanced immune response by increasing white blood cells and phagocytosis. They improve the quality of the growing environment, protect fish from biological hazards, and modulate physiological processes that ultimately contribute to the health and welfare of fish in aquaculture. Probiotics also enhance growth performance and feed utilization in aquatic animals by increasing the activity of digestive enzymes. The beneficial effects of prebiotics are due to by-products resulting from the fermentation of intestinal commensal bacteria. Among the many health benefits attributed to prebiotics is the modulation of the immune system. They directly enhance the innate immune response, including activation of phagocytosis, neutrophils, alternative complement system, and increased lysozyme activity. Another environmentally friendly product that has been proposed as a dietary supplement is yeasts. Research on yeast products in fish diets has focused on their role in nutritional and functional supplements that contribute to the immune responses and gut health of fish. Conclusions. Various studies of pro- and prebiotics in fish have shown the following results: effects on growth, gut microbiota, resistance to pathogenic bacteria and parameters of innate immunity such as alternative complement activity (ACH50), lysozyme activity, natural hemagglutination activity, respiratory burst, superoxide dismutase activity and phagocytic activity.All the above studies demonstrate that the addition of nutritional supplements to feed, such as immunostimulants, is an alternative method for the prevention and control of various diseases in aquaculture.
Introduction. In the conditions of anthropogenic pollution of water, environment-safe drugs and implementing of immunomodulatory drugs are becoming increasingly common. Schemes of their use in fisheries are being developed. The article presents and analyzes the potential use of biologically active additives (BAA), namely probiotics, prebiotics and yeasts, both domestically and internationally produced, in terms of their effect on the fish body. Materials and methods of research. Search for literature data on the use of biologically active substances in fish farming, namely probiotics, prebiotics and yeast. Research results. Considering the negative impact of prophylactic and therapeutic use of antibiotics in aquaculture, the use of dietary immunostimulants has been proposed as an alternative to antimicrobial drugs. In this sense, functional dietary supplements, including pre-, probiotics and yeasts, are receiving increasing attention as an environmental strategy to improve fish health. Probiotics are the objects of comprehensive scientific research and an important product on the world market. The use of probiotics as biocontrol agents in aquaculture is increasing. The benefits of such additives include increased nutritional value, inhibition of pathogens and enhanced immune response by increasing white blood cells and phagocytosis. They improve the quality of the growing environment, protect fish from biological hazards, and modulate physiological processes that ultimately contribute to the health and welfare of fish in aquaculture. Probiotics also enhance growth performance and feed utilization in aquatic animals by increasing the activity of digestive enzymes. The beneficial effects of prebiotics are due to by-products resulting from the fermentation of intestinal commensal bacteria. Among the many health benefits attributed to prebiotics is the modulation of the immune system. They directly enhance the innate immune response, including activation of phagocytosis, neutrophils, alternative complement system, and increased lysozyme activity. Another environmentally friendly product that has been proposed as a dietary supplement is yeasts. Research on yeast products in fish diets has focused on their role in nutritional and functional supplements that contribute to the immune responses and gut health of fish. Conclusions. Various studies of pro- and prebiotics in fish have shown the following results: effects on growth, gut microbiota, resistance to pathogenic bacteria and parameters of innate immunity such as alternative complement activity (ACH50), lysozyme activity, natural hemagglutination activity, respiratory burst, superoxide dismutase activity and phagocytic activity.All the above studies demonstrate that the addition of nutritional supplements to feed, such as immunostimulants, is an alternative method for the prevention and control of various diseases in aquaculture.
The relevance of the study is conditioned by the trend in the development of organic aquaculture with the production of environmentally safe products. The purpose of the study was to determine and compare the effectiveness of the introduction of feed factors of different origins in feeding and rearing rainbow trout in the early stages of ontogenesis. The study was based on theoretical (analysis, synthesis, comparison, modelling), experimental, and laboratory methods adopted in fisheries, physicochemical studies. The results show an increase in the resistance and overall viability of the body of young trout, an improvement in the morpho-functional parameters of the blood, and activation of metabolic processes in the experimental groups 1 and 2. However, higher parameters were obtained in experimental group 2 in relation to other study groups. The average body weight of fish exceeded the parameters in experimental group 1 (by 11.7%, p < 0.01) and experimental group 2 (by 19.5%, p < 0.001) of the control group. The total number of red blood cells in experimental group 1 exceeded the values in the control group by 10.6% (p < 0.01) and in experimental group 2 by 15.3% (p < 0.001). In experimental group 1, the total protein content exceeded the value by 14.8%, in experimental group 2 – by 22.2% (p < 0.01) compared to the control group. The creatinine content in the blood of fish in experimental group 1 exceeded the values (by 9.7%) and in experimental group 2 (by 17.6%, p < 0.05) of the control group. The biochemical composition of the muscle part of trout was higher and better in terms of nutritional characteristics in experimental group 1 and 2 compared to the control group. The proposed method of feeding by two methods (experimental groups 1 and 2) promotes activation of fish growth rates in two experimental groups. The practical significance of the study is to help improve qualitative and quantitative parameters, in particular, the biochemical composition of the muscle part in experimental groups 1 and 2 compared to control values against the background of increased growth rates
Purpose. To assess the effect of supplementing the feeds with the probiotic “Subalin” on the productive parameters of bester on the first year of cultivation using waste water from an energy installation (power plant) under conditions of elevated water temperature. Methodology. The study was conducted in 2023 in the conditions of an industrial-type farm “Biosila” created on the basis of warm waste water of a thermal power plant. Growing of age-0+ bester was carried out for 65 days in plastic tanks. They were fed with compound feeds manufactured by a well-known European manufacturer with a crude protein content of 54% and crude fat content of 15%. In addition to the main diet of the fish, a probiotic based on Bacillus subtilis “Subalin” was introduced at the rate (% of the weight of the feed): 0.02 (variant 1); 0.03 (variant 2); 0.04 (variant 3); 0.05 (variant 4). In the control variant of the experiments, the fish received the same compound feed without the probiotic. The stocking density of fish with an initial average weight of 22.8 g in all variants of experiments and control was 100 individuals in each tank (about 56 ind./m2). Determination of productive parameters and study of physico-chemical factors of the environment were carried out according to generally accepted methods. Findings. During the cultivation period of bester, water temperature fluctuated between 23.8–32.5°C. For 39 days, water temperature exceeded 30°C, which is uncharacteristic for sturgeon aquaculture. The content of dissolved oxygen varied from 4.0 to 5.7 mg O2/dm3. Other hydrochemical parameters met the requirements for growing sturgeons. As a result of intensive breeding, bester juveniles in various experimental variants reached an average weight of 166.8 to 195.4 g. In the control, it was 145.4 g, which was 12.8–25.6% less than in the experimental groups of fish. In all variants of the experiments and control, fish survival rate was 100%. The fish productivity of tanks was in the range of 6838.9–9588.9 g/m2. The highest productive parameters of bester were obtained in the variant where their main feed was supplemented with “Subalin” at the amount of 0.04% of the weight of the compound feed. Originality. The results of the use of probiotic “Subalin” as a supplement of the main feed of bester juveniles in the conditions of an industrial-type farm with the use of heated waste water from a power plant were studied. Practical value. The results are of interest for the development of sturgeon aquaculture technologies in the conditions of industrial-type farms, primarily with the use of secondary energy resources in thermal power generation. Keywords: sturgeon, bester of the first year of cultivation, industrial fish farming, feed, probiotic “Subalin”, productivity parameters.
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