Trophic Transfer of Cd, Cu, Pb, Zn, P and Se in Dutch Storage Water Reservoirs

IF 3.7 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Archives of Environmental Contamination and Toxicology Pub Date : 2024-01-20 DOI:10.1007/s00244-023-01041-x
Yvon J. M. Verstijnen, Esther C. H. E. T. Lucassen, Arco J. Wagenvoort, Henk A. M. Ketelaars, Gerard van der Velde, Alfons J. P. Smolders
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Abstract

Heavy metals are naturally omnipresent in aquatic systems. Excess amounts of heavy metals can accumulate in organisms of pollution impacted systems and transfer across a food web. Analysing the food web structure and metal contents of the organisms can help unravel the pathways of biomagnification or biodilution and gain insight in trophic linkages. We measured heavy metals and other elements in mussel bank detritus and organisms of the Biesbosch reservoirs (the Netherlands) and linked those to stable isotopic signatures. The heavy metal contents (cadmium, copper, lead, and zinc) were often lowest in benthivorous, omnivorous and piscivorous species (mainly fish); whereas, phosphorus contents were lower in the autotrophs. Mussel bank detritus contained the highest amounts of heavy metals. The heavy metals were negatively correlated with δ15N values. For selenium no clear trend was observed. Furthermore, there was a negative correlation between fish length and some heavy metals. Based on all 20 analysed elemental contents, similarities between species became apparent, related to niche or habitat. This study confirms that elemental contents of species can differ between feeding guilds and/or species, which can be attributed to metabolic and physiological processes. The organisms in higher trophic levels have adaptations preventing metal accumulation, resulting in lower contents. Within the fish species biodilution occurs, as most metal contents were lowest in bigger fish. Overall, the metals did not seem to biomagnify, but biodilute in the food web. Metal analyses combined with isotopic signatures could thus provide insights in metal transfer and possible trophic linkages within a system.

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荷兰蓄水库中镉、铜、铅、锌、磷和硒的营养转移。
重金属在水生系统中自然无处不在。在受污染影响的系统中,过量的重金属会在生物体内积累,并在食物网中转移。分析食物网结构和生物体内的金属含量有助于揭示生物放大或生物稀释的途径,并深入了解营养联系。我们测量了比斯博什水库(荷兰)贻贝库残渣和生物体中的重金属和其他元素,并将其与稳定同位素特征联系起来。底栖动物、杂食动物和食鱼类(主要是鱼)的重金属(镉、铜、铅和锌)含量通常最低;而自养动物的磷含量较低。贻贝滩碎屑中的重金属含量最高。重金属与 δ15N 值呈负相关。在硒方面,没有观察到明显的趋势。此外,鱼体长度与某些重金属呈负相关。根据对所有 20 种元素含量的分析,物种之间的相似性显而易见,这与生态位或栖息地有关。这项研究证实,不同食性和/或物种之间的元素含量可能不同,这可能与新陈代谢和生理过程有关。营养级较高的生物具有防止金属积累的适应能力,因此元素含量较低。在鱼类物种中会出现生物稀释现象,因为大多数金属含量在较大的鱼类中最低。总体而言,金属似乎没有生物放大作用,而是在食物网中发生了生物稀释。因此,结合同位素特征进行金属分析,可以深入了解系统内的金属转移和可能的营养联系。
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来源期刊
CiteScore
7.00
自引率
2.50%
发文量
63
审稿时长
8-16 weeks
期刊介绍: Archives of Environmental Contamination and Toxicology provides a place for the publication of timely, detailed, and definitive scientific studies pertaining to the source, transport, fate and / or effects of contaminants in the environment. The journal will consider submissions dealing with new analytical and toxicological techniques that advance our understanding of the source, transport, fate and / or effects of contaminants in the environment. AECT will now consider mini-reviews (where length including references is less than 5,000 words), which highlight case studies, a geographic topic of interest, or a timely subject of debate. AECT will also consider Special Issues on subjects of broad interest. The journal strongly encourages authors to ensure that their submission places a strong emphasis on ecosystem processes; submissions limited to technical aspects of such areas as toxicity testing for single chemicals, wastewater effluent characterization, human occupation exposure, or agricultural phytotoxicity are unlikely to be considered.
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