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港口中的金属污染会影响蜗牛的生活史特征和金属硫蛋白水平。

Metal contamination in harbours impacts life-history traits and metallothionein levels in snails.

作者信息

Bighiu Maria Alexandra, Gorokhova Elena, Carney Almroth Bethanie, Eriksson Wiklund Ann-Kristin

机构信息

Department of Environmental Science and Analytical Chemistry, Stockholm University, Stockholm, Sweden.

Department of Biological and Environmental Sciences, University of Gothenburg, Gothenburg, Sweden.

出版信息

PLoS One. 2017 Jul 3;12(7):e0180157. doi: 10.1371/journal.pone.0180157. eCollection 2017.

Abstract

Harbours with limited water exchange are hotspots of contaminant accumulation. Antifouling paints (AF) contribute to this accumulation by leaching biocides that may affect non-target species. In several leisure boat harbours and reference areas in the Baltic Sea, chronic exposure effects were evaluated using caging experiments with the snail Theodoxus fluviatilis. We analysed variations in ecologically relevant endpoints (mortality, growth and reproduction) in concert with variation in metallothionein-like proteins (MTLP) levels. The latter is a biomarker of exposure to metals, such as copper (Cu) and zinc (Zn), which are used in AF paints as active ingredient and stabilizer, respectively. In addition, environmental samples (water, sediment) were analysed for metal (Cu and Zn) and nutrient (total phosphorous and nitrogen) concentrations. All life-history endpoints were negatively affected by the exposure, with higher mortality, reduced growth and lower fecundity in the harbours compared to the reference sites. Metal concentrations were the key explanatory variables for all observed adverse effects, suggesting that metal-driven toxicity, which is likely to stem from AF paints, is a source of anthropogenic stress for biota in the harbours.

摘要

水交换有限的港口是污染物积累的热点地区。防污漆通过释放可能影响非目标物种的杀生物剂,加剧了这种积累。在波罗的海的几个休闲船港口和参考区域,利用将蜗牛Theodoxus fluviatilis置于笼中的实验评估了慢性暴露影响。我们分析了与生态相关的终点指标(死亡率、生长和繁殖)的变化,并结合类金属硫蛋白(MTLP)水平的变化进行分析。后者是接触金属(如铜(Cu)和锌(Zn))的生物标志物,它们在防污漆中分别用作活性成分和稳定剂。此外,还分析了环境样本(水、沉积物)中的金属(铜和锌)和营养物质(总磷和总氮)浓度。所有生命史终点指标都受到暴露的负面影响,与参考地点相比,港口的死亡率更高、生长减缓且繁殖力更低。金属浓度是所有观察到的不利影响的关键解释变量,这表明可能源于防污漆的金属驱动毒性是港口生物群落人为压力的一个来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6531/5495383/3edbf2ee4f8d/pone.0180157.g001.jpg

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