Faculty of Sciences, Institute of Aquatic Ecology, University of Girona (UdG), Campus Montilivi, 17071, Girona, Spain.
Ecotoxicology. 2010 Apr;19(4):770-80. doi: 10.1007/s10646-009-0454-7. Epub 2009 Dec 19.
The influence of eutrophication of fluvial ecosystems (caused by increased phosphorus concentrations) on periphyton Cu sensitivity is explored from a multi-scale perspective, going from the field to the laboratory. The study design included three tiers: a field study including the characterization of land use and the ecological state of the corresponding river sections in the Fluvià River watershed, an experimental investigation performed with natural periphyton from the previously studied stream sites in indoor channels, and finally a culture study in the laboratory. Results showed that differences in copper sensitivity of natural periphyton communities followed the gradient of nutrient concentration found in the field. Results from the culture experiments demonstrated that both, P-conditions during growth and P-content in the media are important factors modulating the toxicological response of algae to Cu. The observations from this study indicate that the ecological effects of metal pollution in rivers might be obscured by eutrophication.
从多尺度的角度出发,探讨了河流生态系统富营养化(由磷浓度增加引起)对底栖藻类铜敏感性的影响,范围从野外到实验室。该研究设计包括三个层次:野外研究包括对 Fluvià 河流域土地利用和相应河段生态状况的描述;在室内渠道中,利用先前研究的溪流现场的天然底栖藻类进行实验调查;最后在实验室中进行培养研究。结果表明,自然底栖藻类群落对铜的敏感性差异与野外发现的营养浓度梯度一致。培养实验的结果表明,生长过程中的磷条件和介质中的磷含量都是调节藻类对铜的毒理学反应的重要因素。本研究的观察结果表明,河流中金属污染的生态效应可能会被富营养化所掩盖。