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浮游动物中金属和金属硫蛋白水平与环境暴露的关系:时空变异性(希腊萨罗尼科斯湾)

Metal and metallothionein levels in zooplankton in relation to environmental exposure: spatial and temporal variability (Saronikos Gulf, Greece).

作者信息

Strogyloudi Evangelia, Paraskevopoulou Vasiliki, Campillo Juan Antonio, Zervoudaki Soultana, Bouga Vasiliki, Catsiki Vasiliki Angelique, Dassenakis Emmanuil, Krasakopoulou Evangelia

机构信息

Hellenic Centre for Marine Research, Institute of Oceanography, P.O. Box 712, Mavro Lithari, 19013, Anavissos, Greece.

Laboratory of Environmental Chemistry, Faculty of Chemistry, University of Athens, Panepistimioupoli Zografou, 15784, Athens, Greece.

出版信息

Environ Sci Pollut Res Int. 2021 Jun;28(22):28640-28657. doi: 10.1007/s11356-021-12591-9. Epub 2021 Feb 5.

Abstract

Metal and metallothionein (MT) in mixed zooplankton were investigated as means of monitoring metal availability regarding environmental exposure. Spatial and temporal variability of Cd, Cu, Ni, Zn, Fe, Mn and Pb in zooplankton and seawater were studied in Saronikos Gulf (Aegean Sea, Eastern Mediterranean), once every second month during an annual cycle (2011-2012). Particulate organic carbon and chlorophyll α were also measured in seawater samples. Median zooplankton metal concentrations were 0.65, 32.4, 7.1, 864, 1420, 40.2 and 26.8 μg g dw for Cd, Cu, Ni, Zn, Fe, Mn and Pb, respectively, and 109 μg g ww for MTs. Metal levels in zooplankton and MTs were higher at sites influenced by human-derived pressures. Additionally, metal concentrations in pelagic fish flesh from the Greek MED-POL data base were used for bioconcentration and biomagnification factors calculation. Bioconcentration from water to zooplankton was higher than metal transfer from either seston to zooplankton or zooplankton to fish.

摘要

对混合浮游动物中的金属和金属硫蛋白(MT)进行了研究,以此作为监测与环境暴露相关的金属可利用性的手段。在萨罗尼克湾(地中海东部爱琴海),于2011 - 2012年的年度周期内每隔两个月对浮游动物和海水中镉、铜、镍、锌、铁、锰和铅的时空变异性进行了研究。同时还对海水样本中的颗粒有机碳和叶绿素α进行了测量。浮游动物中镉、铜、镍、锌、铁、锰和铅的中位金属浓度分别为0.65、32.4、7.1、864、1420、40.2和26.8 μg g干重,金属硫蛋白为109 μg g湿重。在受人为压力影响的地点,浮游动物中的金属水平和金属硫蛋白含量更高。此外,利用希腊MED - POL数据库中远洋鱼肉的金属浓度来计算生物浓缩和生物放大系数。从水到浮游动物的生物浓缩高于从悬浮颗粒到浮游动物或从浮游动物到鱼类的金属转移。

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