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饥饿与投喂对经铜驯化和未经铜驯化鲤鱼的铜毒性及铜吸收的影响。

The effect of starving and feeding on copper toxicity and uptake in Cu acclimated and non-acclimated carp.

作者信息

Hashemi Shodja, Blust Ronny, De Boeck Gudrun

机构信息

Laboratory for Ecophysiology, Biochemistry and Toxicology, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.

出版信息

Aquat Toxicol. 2008 Jan 31;86(2):142-7. doi: 10.1016/j.aquatox.2007.10.008. Epub 2007 Dec 11.

Abstract

Common carp (Cyprinus carpio) were fed two different food rations: 0.5% body weight (low ration, LR) and 5% body weight (high ration, HR) and were either acclimated to sublethal copper (1 microM) for 28 days in softened Antwerp city tap water or not acclimated. Fish were exposed for 10 days to high Cu levels using four different concentrations (3.5, 6, 10, and 15 microM) before and after the Cu acclimation. Fish tolerance against Cu exposure was evaluated, and gill, liver, and carcass Cu and sodium levels were measured in dead and surviving fish. HR fish were twice as sensitive as LR fish in both tests. The 96h median lethal concentration (LC50) values for the non-acclimated LR and HR fish were 8.46+/-2.79 and 4.34+/-0.82 microM, respectively. The fish became more resistant to low Cu concentrations after Cu acclimation and the LC50 values were slightly increased, reaching 9.20+/-1.56 microM and 5.01+/-1.93 in LR and HR fish accordingly. Cu concentrations in the gills, liver, and carcass were significantly elevated in response to the short-term Cu exposure, and were significantly higher in LR fish than in HR fish. High Cu levels caused a net loss of sodium resulting in a severe ion regulatory disturbance. The rate of sodium loss increased linearly with increasing exposure concentrations. Cu acclimation resulted in reduced sodium loss and increased the resistance and tolerance to Cu toxicity.

摘要

将普通鲤鱼(Cyprinus carpio)投喂两种不同的食物配给量:体重的0.5%(低配给量,LR)和体重的5%(高配给量,HR),并将其分别在软化的安特卫普市自来水中适应亚致死浓度的铜(1微摩尔)28天或不进行适应。在铜适应前后,将鱼暴露于四种不同浓度(3.5、6、10和15微摩尔)的高铜水平下10天。评估鱼对铜暴露的耐受性,并测量死亡和存活鱼的鳃、肝脏和鱼体中的铜和钠水平。在两项测试中,HR鱼的敏感性都是LR鱼的两倍。未适应的LR和HR鱼的96小时半数致死浓度(LC50)值分别为8.46±2.79和4.34±0.82微摩尔。铜适应后,鱼对低铜浓度的耐受性增强,LC50值略有增加,LR和HR鱼的LC50值分别达到9.20±1.56和5.01±1.93微摩尔。短期铜暴露后,鳃、肝脏和鱼体中的铜浓度显著升高,且LR鱼中的铜浓度显著高于HR鱼。高铜水平导致钠净流失,从而造成严重的离子调节紊乱。钠流失率随暴露浓度的增加呈线性增加。铜适应导致钠流失减少,并增加了对铜毒性的抗性和耐受性。

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