不同生物量和水量比下运输双色鳗和双色玻璃鳗的渗透响应和水矿物状态

F. H. Taqwa, E. Supriyono, T. Budiardi, M. Setiawati, B. Utomo, R. Affandi
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引用次数: 1

摘要

本研究旨在确定具有生物量和水体积比的封闭运输系统,该系统能够显著支持玻璃鳗鱼的渗透调节能力。玻璃鳗是在Pelabuhan Ratu的Cimandiri河(平均长度52.40±0.84 mm,重量0.10±0.01 g)进行捕捞活动获得的,并在盐度6 mg L-1和温度20°C下逐渐驯化24小时。研究设计是完全随机的。应用的处理是玻璃鳗鱼封闭运输系统,玻璃鳗鱼生物量(kg)与水量(L)的比例不同,即1:11;1:12;1:13;在24小时的陆路运输中为1:14,并持续了3天的恢复期。参照上述驯化方法使用水,塑料袋中纯氧的水比例为1:3。测量的参数包括存活率、渗透梯度、身体水矿物质以及运输包装和回收介质中的水质。在恢复期之前,存活率都在较高范围内(P<0.05),但运输方法在渗透反应和水矿物质状态(钠、氯、钾和水含量)方面造成了显著差异(P<0.05)。因此,运输方法将影响下一阶段培养的生产性能。玻璃鳗鱼生物量的比例:1:13的水量能够支持玻璃鳗鱼在运输过程中保持稳态的渗透调节能力,直到3天的恢复期。运输袋中的水的物理和化学价值没有急剧下降,因此可以在24小时内降低死亡率。
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The Osmotic Response and Hydromineral Status of Transported Anguilla bicolor bicolor Glass Eels with Various Ratios of Biomass and Water Volume
This research was conducted to determine the closed transportation system with biomass and water volume ratio that can support the osmoregulation ability of glass eel significantly. Glass eel was obtained from catching activities in the Cimandiri River, Pelabuhan Ratu (mean length 52.40+0.84 mm and weight 0.10+0.01 g) and acclimatized for 24 hours at salinity 6 mg L-1 and temperature 20°C gradually.The research design was a completely randomized design. The applied treatment was glass eel closed transportation system with various ratio of glass eel biomass (kg): water volume (L), i.e. 1:11; 1:12; 1:13; and 1:14 during 24 hours of land transportation and continued with a 3-day recovery period.The water was used refer to the above acclimatization method, with ratio the water part of pure oxygen in a plastic bag was 1:3. The measured parameters include survival rate, osmotic gradient, body hydromineral, and water quality in transport packaging and recovery medium. Survival rates were generated in the high range until recovery period (P<0.05), but the transportation method caused differences significantly (P<0.05) in osmotic response and hydromineral status (sodium, chloride, potassium, and water content), so that it will affect production performance in the next stage of culture. Ratio of glass eel biomass: water volume of 1:13 has been able to support the ability of osmoregulation glass eel to maintain homeostatic condition during the transportation until 3 days of recovery period. There was no drastic decline in physical and chemical value of water in the transport bag so it could reduce the mortality rate for 24 hours.
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