首页> 外文期刊>Journal of great lakes research >Metallothionein-like Protein and Tissue Metal Concentrations in Invertebrates (Oligochaetes and Chironomids) Collected from Reference and Metal Contaminated Field Sediments
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Metallothionein-like Protein and Tissue Metal Concentrations in Invertebrates (Oligochaetes and Chironomids) Collected from Reference and Metal Contaminated Field Sediments

机译:从参考和被金属污染的田间沉积物中收集的无脊椎动物(类脂动物和尺虫)中类金属硫蛋白类蛋白和组织金属浓度

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摘要

The relationships between metallothionein-like protein (MTLP) and tissue metal (Ni, Cd, Cu, Zn, Pb) concentrations were examined in Oligochaetes and Chironomid larvae collected from reference and metal contaminated sediments. Tissue metal concentrations, for example, Cd reaching 0.3 μmol/g in oligochaetes and Cu, reaching 0.8 μmol/g in chironomids collected from Great Lakes reference sites (Environment Canada) indicated the presence of bioavailable metal at some sites. The concentration of MTLP ranged from 3.3 (± 1.0) to 11.5 (± 4.5) nmol MTLP/g in oligochaetes, and 2.7 (± 1.0) to 8.0 (± 2.7) nmol MTLP/g in chironomids. Individually, tissue metal concentrations were relatively poor (r~2 = 0.002-0.52) predictors of MTLP, but when multiple metals were used the relationship became stronger (oligochaetes r~2 = 0.84, p < 0.001; chironomids r~2 = 0.61, p < 0.001), suggesting that MTLP was induced by multiple metals. Tissue metal and MTLP concentrations in invertebrates from the metal contaminated slips of Collingwood Harbour were not elevated above reference levels, indicating that only a fraction of the metal in the sediment is bioavailable. Chironomids collected from lakes contaminated by atmospheric fallout of smelting emissions (Rouyn-Noranda, QC) had elevated tissue metal concentrations but MTLP concentration did not consistently reflect elevated tissue metal. Overall, MTLP concentrations in invertebrates collected from metal-contaminated sites were not significantly higher than concentrations in reference site-collected invertebrates. The data presented here suggest that, at some sites, MTLP concentration in field-collected organisms would be a useful surrogate for tissue metal but, because of a lack of detailed taxonomy (organisms were designated as chironomids or oligochaetes) and the relatively small sample sizes of this study, no definitive conclusion regarding the suitability of MTLP concentration as a field-based biomarker of metal exposure can be made without further study.
机译:从参考和金属污染的沉积物中收集的Oligochaetes和Chironomid幼虫检查了金属硫蛋白样蛋白(MTLP)与组织金属(Ni,Cd,Cu,Zn,Pb)浓度之间的关系。从大湖地区参考点(加拿大环境部)收集的组织金属中的金属浓度,例如Cd在寡脂类动物中达到0.3μmol/ g,铜,在Chironomids中达到0.8μmol/ g,表明某些位置存在生物利用金属。寡壳类动物中MTLP的浓度范围为3.3(±1.0)至11.5(±4.5)nmol MTLP / g,而手足类动物中MTLP的浓度范围为2.7(±1.0)至8.0(±2.7)nmol MTLP / g。个别而言,组织金属浓度是MTLP的相对较差的预测因子(r〜2 = 0.002-0.52),但是当使用多种金属时,该关系变得更强(寡壳类动物r〜2 = 0.84,p <0.001;手性类动物r〜2 = 0.61, p <0.001),表明MTLP由多种金属诱导。来自科林伍德港的金属污染片中的无脊椎动物中的组织金属和MTLP浓度未升高至参考水平以上,表明沉积物中只有一小部分金属可生物利用。从湖泊中收集的,被大气中的熔炼排放物污染污染的类虫(组织结构,Rouyn-Noranda,QC)的组织金属浓度升高,但MTLP浓度并不能始终反映组织金属的升高。总体而言,从金属污染位点收集的无脊椎动物中的MTLP浓度没有明显高于参考位点收集的无脊椎动物中的MTLP浓度。此处提供的数据表明,在某些地点,田间采集的生物体中MTLP浓度可能是组织金属的有用替代物,但是由于缺乏详细的分类法(将生物体指定为嵌合体或寡壳生物)且样品量相对较小,因此这项研究的结果,未经进一步研究就无法得出关于MTLP浓度是否适合作为基于现场的金属暴露生物标志物的明确结论。

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