Luís Ana Teresa, Bonet Berta, Corcoll Natàlia, Almeida Salomé F P, da Silva Eduardo Ferreira, Figueira Etelvina, Guasch Helena
Geotechnologies and Geoengineering Research Center, GeoBioTec - Geobiosciences, Department of Biology, University of Aveiro, Campus de Santiago, 3810-193, Aveiro, Portugal,
Ecotoxicology. 2014 Sep;23(7):1270-82. doi: 10.1007/s10646-014-1270-2. Epub 2014 Jul 11.
An indoor channel system was colonised with fluvial biofilms to study the chronic effects of high Fe and SO4(2-) concentrations and acidic pH, the water chemistry in the surrounding streams of Aljustrel mining area (Alentejo, Portugal), and their contribution to community (in)tolerance to metal toxicity by short-term experiments with Cu and Zn. Biofilms were subjected to four different treatments during 8 weeks: high Fe and SO4(2-) concentrations (1 mg Fe l(-1)+ 700 mg SO4(2-) l(-1)) and acidic pH, high Fe and SO4(2-) at alkaline pH; lower Fe and SO4(2-) at acidic pH: and lower Fe and SO4(2-) concentrations at alkaline pH as negative control. During chronic exposure, acidic pH affected growth negatively, based on low values of algal biomass and the autotrophic index, high values of the antioxidant enzyme activities and low diversity diatom communities, dominated by acidophilic species (Pinnularia aljustrelica) in acidic treatments, being the effects more marked with high Fe and SO4(2-). Co-tolerance to metals (Cu and Zn) was also shown in biofilms from the acidic treatments, contrasting with the higher sensitivity observed in the alkaline treatments. We can conclude that the Aljustrel mining area acidic environment limits algal growth and exerts a strong selection pressure on the community composition which is in turn, more tolerant to metal exposure.
利用河流生物膜对室内渠道系统进行定殖,以研究高铁和硫酸根离子浓度以及酸性pH值的长期影响、阿尔茹特雷尔矿区(葡萄牙阿连特茹)周边溪流的水化学性质,以及通过铜和锌的短期实验研究它们对群落金属毒性耐受性的影响。在8周内,生物膜接受了四种不同处理:高铁和硫酸根离子浓度(1毫克铁/升 + 700毫克硫酸根离子/升)及酸性pH值、碱性pH值条件下的高铁和硫酸根离子;酸性pH值条件下较低的铁和硫酸根离子;以及碱性pH值条件下较低的铁和硫酸根离子浓度作为阴性对照。在长期暴露期间,基于藻类生物量和自养指数的低值、抗氧化酶活性的高值以及低多样性硅藻群落,酸性pH值对生长产生负面影响,在酸性处理中以嗜酸物种(阿尔茹特雷尔羽纹藻)为主导,高铁和硫酸根离子存在时影响更为显著。酸性处理的生物膜对金属(铜和锌)也表现出共耐受性,这与碱性处理中观察到的较高敏感性形成对比。我们可以得出结论,阿尔茹特雷尔矿区的酸性环境限制了藻类生长,并对群落组成施加了强大的选择压力,进而使其对金属暴露具有更高的耐受性。