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首页> 外文期刊>Neotropical Ichthyology >Survival, growth and metabolic parameters of silver catfish, Rhamdia quelen, juveniles exposed to different waterborne nitrite levels
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Survival, growth and metabolic parameters of silver catfish, Rhamdia quelen, juveniles exposed to different waterborne nitrite levels

机译:暴露于不同水基亚硝酸盐水平的银cat鱼,Rhamdia quelen,幼鱼的存活,生长和代谢参数

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High nitrite (NO2-) levels may develop in aquaculture systems due to high fish density, but studies of lethal concentration values and the effect of NO2- on metabolic parameters and growth are scarce. Consequently, in this study was verified the lethal concentration at 96 h (LC50-96h) for (NO2-) in juvenile silver catfish, Rhamdia quelen and the effect of four waterborne NO2- concentrations (0.06, 0.46, 1.19, and 1.52 mg.L-1) on growth, and hepatic and muscular lactate, glucose, glycogen and protein. Nitrite LC50-96h was 20.46 (confidence interval: 16.10-23.68) mg.L-1. In the growth experiment, exposure to NO2- did not affect weight, length or specific growth rate, but due to mortality (66.7% and 100% after 20 and 40 days, respectively), biomass of juveniles exposed to 1.52 mg.L-1 NO2- was significantly lower than the biomass of juveniles exposed to other treatments. Therefore, the safe level of nitrite for growth of silver catfish juveniles is below 1.19 mg.L-1 (2% of LC50-96h). Exposure of silver catfish to NO2- for 40 days reduced lactate levels in muscle, but lactate levels increased in liver tissue of fish maintained at 1.19 mg.L-1 NO2-. In addition, glucose levels in muscle and liver tissues were significantly lower in silver catfish exposed to the highest NO2- level. These results indicate that chronic NO2- exposure causes anaerobic substrate oxidation to meet energy demand.
机译:由于鱼类密度高,在水产养殖系统中可能会产生较高的亚硝酸盐(NO2-)水平,但对致死浓度值以及NO2-对代谢参数和生长的影响的研究很少。因此,在本研究中,验证了幼年cat鱼(Rhamdia quelen)中(NO2-)在96 h(LC50-96h)的致死浓度以及四种水性NO2-浓度(0.06、0.46、1.19和1.52 mg)的影响。 L-1)的生长,以及肝脏和肌肉的乳酸,葡萄糖,糖原和蛋白质。亚硝酸盐LC50-96h为20.46(置信区间:16.10-23.68)mg.L-1。在生长实验中,暴露于NO2不会影响体重,身长或比生长速率,但由于死亡率(分别在20天和40天后分别为66.7%和100%),幼鱼的生物量暴露于1.52 mg.L-1 NO2-明显低于接受其他处理的少年的生物量。因此,亚硝酸盐对银cat鱼幼鱼生长的安全水平低于1.19 mg.L-1(LC50-96h的2%)。银cat鱼暴露于NO2- 40天会降低肌肉中的乳酸水平,但鱼肝组织中的乳酸水平却保持在1.19 mg.L-1 NO2-的水平。此外,暴露于最高NO2-水平的silver鱼的肌肉和肝脏组织中的葡萄糖水平显着降低。这些结果表明,长期暴露于NO2中会导致厌氧性底物氧化以满足能量需求。

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