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TOXICITY, ACCUMULATION, AND RETENTION OF ZINC BY CARP UNDER NORMOXIC AND HYPOXIC CONDITIONS

机译:氧化和缺氧条件下鲤鱼对锌的毒性,积累和保留

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Zinc is an essential micronutrient that becomes toxic at elevated concentrations. Under hypoxic events, i.e., temporal depletion of oxygen, the toxicity of Zn increases for fish, apart from the direct effects of the reduced oxygen levels. This enhanced toxicity currently is explained by the increased ventilation rates under hypoxia, causing a higher water flow over the gills. However, the few experimental studies available on the uptake of heavy metals under hypoxia draw contradictory conclusions. The present study verifies the enhanced zinc toxicity under hypoxia and tests whether accumulation of zinc is increased in common carp, Cyprinus carpio (L.). Second, the effect of acclimatization to three oxygen levels (100, 50, and 25% saturation) on the zinc uptake and elimination was studied in a standard radiotracer uptake-and-elimination study for 63 d at 100 nmol/L Zn and 25°C. The sensitivity of carp for Zn was threefold higher under hypoxia than at normoxic conditions. The lethal concentration for 50% of the population after 96 h (96-h LC50) for normoxia and hypoxia (25%) were 149 (91–317) and 55 (30–100) μmol/L Zn, respectively. However, the kinetic data indicate that zinc uptake and elimination are not altered under hypoxia for common carp. Moreover, observed uptake rates are considerably lower than predicted from a ventilation-and-diffusion–regulated uptake mechanism. Setting these results in the framework of similar experiments of other investigators, we conclude that, in general, metal uptake in fish is not related to its ventilation rate within a normal physiological range.
机译:锌是必不可少的微量营养素,在浓度升高时会变得有毒。在缺氧事件中,即氧气暂时耗竭,除了降低氧气含量的直接影响外,锌对鱼类的毒性也会增加。目前,这种增强的毒性可以通过缺氧条件下通风速度的增加来解释,从而导致the上更高的水流量。然而,关于缺氧条件下重金属吸收的一些实验研究得出了矛盾的结论。本研究验证了缺氧条件下锌的毒性增强,并测试了鲤鱼鲤鱼中锌的积累是否增加。其次,在标准的放射性示踪剂吸收和消除研究中,在100 nmol / L Zn和25°C下进行了63 d的研究,研究了适应三种氧水平(100、50和25%饱和度)的驯化对锌吸收和消除的影响。 C。低氧条件下鲤鱼对锌的敏感性比常氧条件下高三倍。在正常氧和低氧条件下96小时(96-h LC50)后,50%人口的致死浓度分别为149(91-317)和55(30-100)μmol/ L锌。然而,动力学数据表明,缺氧条件下鲤鱼的锌吸收和消除没有改变。此外,观察到的摄取率比通气和扩散调节的摄取机制预测的要低得多。将这些结果设置在其他研究者的类似实验框架内,我们得出的结论是,一般而言,鱼类中的金属吸收与其在正常生理范围内的通气率无关。

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