Features of the cultivation of the eastern subtropic freshwater shrimp Macrobranchium nipponense (De HAAN 1849) of the lower Dnister in the conditions of circulatory water use systems

Yu. Astafurov
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Abstract

The data on the peculiarities of M. nipponense shrimp cultivation of the Dnister population in circulatory water use systems for growing crustaceans are presented. One of the most important areas of crustacean farming is the development of principles and the creation of artificial ecosystems for the successful cultivation of aquaculture facilities, which are a valuable source of protein food. Shrimp M. nipponense is a group of aquatic organisms, its production technology in artificial conditions is currently being developed. For the conditions of Ukraine, we can identify four possible areas of shrimp M. nipponense: 1) in the natural conditions of the Dnister river basin; 2) in the ponds of the southern regions of Ukraine in natural climatic conditions (summer period); 3) in the ponds, cages and pools on the warm waters of energy facilities in the summer; 4) in installations with circulatory water use — all year round. At the same time, the four listed options are related to the use of circulatory water use systems for keeping producers in winter, spawning, incubation and rearing of young. Therefore, the study of fishery and biological features, the development of basic biotechnical principles and the creation of technology for reproduction of shrimp M. nipponense in artificial conditions using circulating plants is relevant. For research on M. nipponense we used fishery and biological methods: hydrochemical, biotechnical. Three circulation systems with aquariums with a volume of 0.3–05 m3 with an independent system of thermoregulation, mechanical and biological water purification were used directly for the experiments. Growing shrimp M. nipponense in circulatory water use systems includes two main stages: 1) obtaining planting material; 2) commercial cultivation. Optimization of abiotic factors of shrimp habitat in closed systems allows to reduce by 4–5 times the time of their cultivation, maturation of producers and the formation of uterine herds, which allows year-round to obtain viable young and large planting material to launch M. nipponense in artificial and natural reservoirs.
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在循环水利用系统条件下养殖东部亚热带淡水对虾日本大鳃虾(De HAAN 1849)的特点
介绍了甲壳类动物养殖循环水利用系统中日本沼虾种群养殖特点的资料。甲壳类动物养殖最重要的领域之一是制定原则和创建人工生态系统,以成功培育水产养殖设施,这是蛋白质食物的宝贵来源。日本对虾是一类水生生物,其人工条件下的生产技术目前正在开发中。对于乌克兰的条件,我们可以确定四个可能的日本沼虾区:1)在德涅斯特河流域的自然条件下;2)在自然气候条件下(夏季)在乌克兰南部地区的池塘;3)夏季在池塘、网箱、水池上的暖水能源设施;4)使用循环水的设施-全年使用。同时,列出的四种选择涉及使用循环水使用系统来保持生产者过冬、产卵、孵化和饲养幼鱼。因此,研究日本沼虾的渔业和生物学特征,发展基本的生物技术原理,并创造利用循环植物在人工条件下繁殖日本沼虾的技术是相关的。对日本沼虾的研究采用了渔业和生物方法:水化学、生物技术。实验直接使用了三个循环系统,其中水族箱的体积为0.3-05 m3,具有独立的温度调节系统,机械和生物水净化系统。在循环水系统中养殖日本沼虾包括两个主要阶段:1)获取种植材料;2)商业化种植。优化封闭系统对虾生境的非生物因素,使其养殖、生产者成熟和子宫群形成的时间缩短4-5倍,全年获得可活的幼虾和大型种植材料,在人工和自然水库中投放日本沼虾。
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