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首页> 外文期刊>Environmental Toxicology and Chemistry >EFFECTS OF CHRONIC DIETARY AND WATERBORNE CADMIUM EXPOSURES ON THE CONTAMINATION LEVEL AND REPRODUCTION OF DAPHNIA MAGNA
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EFFECTS OF CHRONIC DIETARY AND WATERBORNE CADMIUM EXPOSURES ON THE CONTAMINATION LEVEL AND REPRODUCTION OF DAPHNIA MAGNA

机译:慢性饮食和水镉暴露对大PH的污染程度和繁殖的影响

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Regulatory assessments of metal toxicity on freshwater organisms assume that toxic effects are caused by dissolved metals. In aquatic systems, organisms are exposed to both dissolved and particulate-bound metals. In this study, the chronic toxicity of dietary cadmium (Cd) on the reproduction and Cd body burden of Daphnia magna was investigated. Daphnids (<24 h) were successively exposed to dissolved Cd (8 h) and then to uncontaminated or contaminated algae (16 h) for 21 d. The results show a higher Cd burden in daphnids because of the addition of contaminated food and reveal that Cd uptake by D. magna from water and food was additive for the lowest Cd concentrations tested. Similar Cd distributions (cytosolic and insoluble fractions) were observed in the two groups of organisms, showing similar potential toxicity of Cd accumulated from the two exposure routes. Dietary Cd induces deleterious effects on D. magna reproduction. On the basis of Cd body burden of daphnids, the results support the claim that waterborne and dietary Cd exposures were additive in causing toxicity for Cd concentrations lower than 25 μg/L. At the highest Cd concentrations, the importance of dietary Cd on the daphnid contamination level decreases and confounding factors such as feeding rate reduction seem to appear, which induce an effect on neonate reproduction. In this study, we illustrate the need to take the dietary pathway into account in regulatory assessments and to establish effective concentrations with particulate-bound metals.
机译:金属对淡水生物毒性的监管评估假定毒性作用是由溶解的金属引起的。在水生系统中,生物既暴露于溶解的金属,也暴露于与颗粒结合的金属。在这项研究中,研究了膳食镉(Cd)对大型蚤(Daphnia magna)的繁殖和镉体负担的慢性毒性。将水蚤(<24小时)连续暴露于溶解的Cd(8小时),然后暴露于未污染或污染的藻类(16小时)21天。结果表明,由于添加了受污染的食物,水蚤中的Cd负担更高,并且揭示了D. magna从水和食物中摄取的Cd是最低测试Cd浓度的添加剂。在两组生物体中观察到相似的镉分布(胞质和不溶级分),表明从两种暴露途径积累的镉的潜在毒性相似。膳食镉对D. magna的繁殖产生有害影响。根据da虫的镉身体负担,该结果支持这样的说法,即水和饮食中的镉暴露是导致镉浓度低于25μg/ L时引起毒性的累加因素。在最高的Cd浓度下,日粮Cd对达芙妮污染水平的重要性降低,并且似乎出现了诸如摄食率降低之类的混杂因素,从而对新生儿的繁殖产生影响。在这项研究中,我们说明了需要在监管评估中考虑饮食途径并确定与微粒结合的金属的有效浓度。

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