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潜在有毒元素(铜、铁、锰、锌和镍)对环境相关浓度下刺胞动物水螅衰减的毒性。

The toxicity of potentially toxic elements (Cu, Fe, Mn, Zn and Ni) to the cnidarian Hydra attenuata at environmentally relevant concentrations.

机构信息

School of Health and Life Sciences, University of the West of Scotland, Paisley PA1 2BE, Scotland, United Kingdom.

School of Health and Life Sciences, University of the West of Scotland, Paisley PA1 2BE, Scotland, United Kingdom.

出版信息

Sci Total Environ. 2019 May 15;665:848-854. doi: 10.1016/j.scitotenv.2019.02.193. Epub 2019 Feb 14.

DOI:10.1016/j.scitotenv.2019.02.193
PMID:30790757
Abstract

The domestic, agricultural, industrial, technological and medical applications of potentially toxic elements (PTEs) have led to global pollution in all environments. In this study, the cnidarian Hydra attenuata was exposed individually and to a mixture of 5 metals (copper, iron, manganese, zinc and nickel) at environmentally relevant concentrations (1×) within the Clyde estuary, Scotland and incremental concentrations ranging from 0.0001× to 1000×. Toxicity was investigated using morphology, attachment, hydranth number and feeding behaviour as endpoints. When exposed individually, Cu, Mn and Fe significantly reduced Hydra morphology, feeding and attachment at environmentally relevant concentrations. Hydra mortality was measured, having an LC50 of 0.045× (for the environmentally relevant mixture of metals) and Cu 0.5 mg/l, Fe 3 mg/l, Mn 2 mg/l, Zn 0.1 mg/l, Ni 0.5 mg/l for each element exposed individually. The PTE mixture incurred a significant decrease (p ≤ 0.05) in morphology at 0.0001×, with 100% mortality at 0.1× (containing a concentration of Cu 0.05 mg/l, Fe 0.3 mg/l, Mn 0.2 mg/l, Zn 0.01 mg/l, Ni 0.05 mg/l) and a toxicity threshold (TT) of 0.000005×. Both copper and iron when exposed individually to the concentration of their respective metals found in the environment resulted in 100% mortality for all Hydra exposed. These results indicate that the PTE mixture (including the individual concentrations of copper, iron, manganese and nickel) could potentially prove significantly toxic to the aquatic environment.

摘要

潜在有毒元素(PTEs)的国内、农业、工业、技术和医学应用导致了所有环境中的全球污染。在这项研究中,水螅衰减被单独暴露于环境相关浓度(1×)下的 5 种金属(铜、铁、锰、锌和镍)混合物中,以及从 0.0001×到 1000×的递增浓度中。使用形态、附着、水螅数量和摄食行为作为终点来研究毒性。当单独暴露时,Cu、Mn 和 Fe 显著降低了水螅的形态、摄食和附着能力,在环境相关的金属混合物中,LC50 为 0.045×(环境相关的金属混合物),Cu 为 0.5 mg/L,Fe 为 3 mg/L,Mn 为 2 mg/L,Zn 为 0.1 mg/L,Ni 为 0.5 mg/L。PTE 混合物在 0.0001×时形态显著下降(p≤0.05),在 0.1×时 100%死亡(含有 Cu 0.05 mg/L、Fe 0.3 mg/L、Mn 0.2 mg/L、Zn 0.01 mg/L 和 Ni 0.05 mg/L),毒性阈值(TT)为 0.000005×。当单独暴露于环境中各自金属浓度时,铜和铁都会导致所有暴露的水螅 100%死亡。这些结果表明,PTE 混合物(包括铜、铁、锰和镍的单独浓度)可能对水生环境具有潜在的显著毒性。

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