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生物体内金属转移的空间分析:土壤污染和景观的影响。

Spatially explicit analysis of metal transfer to biota: influence of soil contamination and landscape.

机构信息

Department of Chrono-Environment, UMR UFC/CNRS 6249 USC INRA, University of Franche-Comté, Besançon, France.

出版信息

PLoS One. 2011;6(5):e20682. doi: 10.1371/journal.pone.0020682. Epub 2011 May 31.

Abstract

Concepts and developments for a new field in ecotoxicology, referred to as "landscape ecotoxicology," were proposed in the 1990s; however, to date, few studies have been developed in this emergent field. In fact, there is a strong interest in developing this area, both for renewing the concepts and tools used in ecotoxicology as well as for responding to practical issues, such as risk assessment. The aim of this study was to investigate the spatial heterogeneity of metal bioaccumulation in animals in order to identify the role of spatially explicit factors, such as landscape as well as total and extractable metal concentrations in soils. Over a smelter-impacted area, we studied the accumulation of trace metals (TMs: Cd, Pb and Zn) in invertebrates (the grove snail Cepaea sp and the glass snail Oxychilus draparnaudi) and vertebrates (the bank vole Myodes glareolus and the greater white-toothed shrew Crocidura russula). Total and CaCl(2)-extractable concentrations of TMs were measured in soils from woody patches where the animals were captured. TM concentrations in animals exhibited a high spatial heterogeneity. They increased with soil pollution and were better explained by total rather than CaCl(2)-extractable TM concentrations, except in Cepaea sp. TM levels in animals and their variations along the pollution gradient were modulated by the landscape, and this influence was species and metal specific. Median soil metal concentrations (predicted by universal kriging) were calculated in buffers of increasing size and were related to bioaccumulation. The spatial scale at which TM concentrations in animals and soils showed the strongest correlations varied between metals, species and landscapes. The potential underlying mechanisms of landscape influence (community functioning, behaviour, etc.) are discussed. Present results highlight the need for the further development of landscape ecotoxicology and multi-scale approaches, which would enhance our understanding of pollutant transfer and effects in ecosystems.

摘要

概念和发展的一个新领域的生态毒理学,被称为“景观生态毒理学”,在 20 世纪 90 年代提出;然而,到目前为止,在这个新兴领域还没有开展多少研究。事实上,人们非常有兴趣发展这一领域,既要更新生态毒理学中使用的概念和工具,也要应对风险评估等实际问题。本研究旨在调查动物体内金属生物累积的空间异质性,以确定景观以及土壤中总金属和可提取金属浓度等空间显式因素的作用。在一个冶炼厂影响的地区,我们研究了痕量金属(TM:Cd、Pb 和 Zn)在无脊椎动物(林蜗牛 Cepaea sp 和玻璃蜗牛 Oxychilus draparnaudi)和脊椎动物(田鼠 Myodes glareolus 和白鼬 Crocidura russula)中的累积。在捕获动物的木丛斑块中测量了土壤中的总金属和 CaCl2可提取浓度。动物体内的 TM 浓度表现出高度的空间异质性。它们随土壤污染而增加,与 CaCl2可提取 TM 浓度相比,总金属浓度更好地解释了它们的变化,除 Cepaea sp 外。动物体内的 TM 水平及其沿污染梯度的变化受到景观的调节,这种影响是物种和金属特异性的。在缓冲区中计算出随着大小增加的金属中位数土壤金属浓度(通过通用克立格预测),并与生物累积相关。动物和土壤中 TM 浓度表现出最强相关性的空间尺度因金属、物种和景观而异。讨论了景观影响(群落功能、行为等)的潜在潜在机制。目前的结果强调了需要进一步发展景观生态毒理学和多尺度方法,这将提高我们对污染物转移和生态系统影响的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e3b/3105103/ed42192cbe10/pone.0020682.g001.jpg

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