Biodiversity and Aquatic Ecosystems UR/11ES72 Research Unit, Department of Life Sciences Research, Sfax Faculty of Sciences, University of Sfax, Street of Soukra Km 3.5, PO Box 3000, BP 1171, Sfax, Tunisia.
Environ Sci Pollut Res Int. 2017 Aug;24(24):19662-19670. doi: 10.1007/s11356-017-9536-x. Epub 2017 Jul 6.
The increased metal loading from anthropogenic sources has affected aquatic ecosystems and has cascaded through food webs worldwide. Therefore, the evaluation of ecological impacts of anthropogenic metal has become increasingly important. In this paper, we monitored the concentration of six trace metals (Cd, Cu, Fe, Ni, Pb, and Zn) in the three copepod groups (cyclopoida, calanoida, and harpacticoida) and in seawater samples collected from the south coast of Sfax (Tunisia). Results showed that the concentration of Fe and Zn for all copepod groups was higher than that for other metals and that of Cd was the lowest in all groups. The mean increase in bioconcentration factor of metals in copepods ranged from 0.05 to 18.93 and followed the sequence Zn (18.93) > Fe (14.34) > Pb (6.41) > Cd (1.53) > Cu (0.10) > Ni (0.05). The copepods in the south coast of Sfax were found to have a great capacity to accumulate trace metals and act as contamination indicators. Comparative studies with those from the Luza zone indicate considerable bioaccumulation of trace metals (Pb and Ni) in all copepod groups namely in cyclopoida.
人为来源的金属负荷增加已经影响了水生生态系统,并在全球范围内通过食物网产生了级联效应。因此,评估人为金属对生态的影响变得越来越重要。本文监测了来自突尼斯斯法克斯南部海岸的海水样本和三种桡足类(哲水蚤目、真剑水蚤目和桡足亚目)中六种痕量金属(Cd、Cu、Fe、Ni、Pb 和 Zn)的浓度。结果表明,所有桡足类群体的 Fe 和 Zn 浓度均高于其他金属,而所有群体的 Cd 浓度均最低。金属在桡足类生物浓缩因子的平均增长率在 0.05 到 18.93 之间,其顺序为 Zn(18.93)>Fe(14.34)>Pb(6.41)>Cd(1.53)>Cu(0.10)>Ni(0.05)。研究发现,斯法克斯南部海岸的桡足类具有很强的积累痕量金属的能力,可作为污染指标。与卢扎区的比较研究表明,所有桡足类群体(特别是哲水蚤目)中都存在痕量金属(Pb 和 Ni)的大量生物积累。