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首页> 外文期刊>Aquatic Toxicology >Partitioning of accumulated trace metals in the talitrid amphipod crustacean Orchestia gammarellus: a cautionary tale on the use of metallothionein-like proteins as biomarkers
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Partitioning of accumulated trace metals in the talitrid amphipod crustacean Orchestia gammarellus: a cautionary tale on the use of metallothionein-like proteins as biomarkers

机译:滑石两栖类甲壳动物Orchestia gammarellus中积累的痕量金属的分配:关于使用类金属硫蛋白的蛋白质作为生物标记物的警示性故事

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摘要

The induction of metallothionein-like proteins (MTLP) as biomarkers of trace metal pollution has been investigated in the talitrid amphipod Orchestia gammarellus, an established biomonitor of trace metal availabilities in coastal areas. Sensitivity to metal exposure, MTLP and copper and zinc concentrations have been examined in amphipods from a metal-contaminated site (Dulas Bay, Wales) and two clean sites (Millport, Scotland and Bradwell, England). Groups of 10 amphipods from Dulas Bay and Millport were exposed separately to one of a concentration series (1, 3.16, 10, 31.6, 100 muM) of Cu or Zn for 17 days at 10 degreesC. Specimens from Bradwell were exposed under similar conditions but the experiment was extended to 25 days with intermediate samplings at 5, 10 and 17 days and additional groups were exposed to a mixture of Cu + Zn (7:10 molar ratio). In addition, specimens from Millport were exposed to 1 or 31.6 muM Cd for 17 days. Amphipods from Dulas Bay, which had been chronically exposed to metals in their natural environment had not acquired any tolerance to Cu and Zn since the lowest LC 50s were registered in these samples. Whatever the origin of the amphipods experimentally exposed to metals and whatever the dose of exposure, both Cu and Zn remained approximately equally distributed between cytosolic and insoluble fractions in the amphipods, suggesting that mechanisms of metal storage were identical over the whole range of conditions. Concentrations of MTLP were higher in O. gammarellus from Dulas Bay than in those from Millport analysed directly after collection, although laboratory exposures to dissolved Cd, Cu or Zn have failed to demonstrate differences in the induction of MTLP between amphipods from the clean or contaminated sites. A potential role for metallothionein-like proteins as biomarkers is thus unlikely although it remains plausible that turnover of these proteins does increase in response to increased metal challenges, enabling MTLP to play a role in metal detoxification.
机译:已经在滑石两栖纲Orchestia gammarellus中研究了金属硫蛋白样蛋白(MTLP)作为痕量金属污染的生物标志物的诱导作用,而该垂体两栖动物Orchestia gammarellus是沿海地区已建立的痕量金属利用率的生物监测器。在金属污染场所(威尔士杜拉斯湾)和两个清洁场所(苏格兰米尔波特和英格兰布拉德威尔)的两栖动物中,对金属暴露,MTLP以及铜和锌浓度的敏感性进行了检查。将来自Dulas湾和Millport的10个两栖类动物分别在10摄氏度下暴露于一种浓度系列(1、3.16、10、31.6、100μM)的Cu或Zn中,持续17天。将Bradwell的样品暴露于相似的条件下,但将实验延长至25天,分别在5、10和17天进行中间采样,并将其他组暴露于Cu + Zn的混合物(摩尔比为7:10)。此外,将Millport的样品暴露于1或31.6μMCd中达17天。杜拉斯湾的两栖动物在其自然环境中长期暴露于金属中,因此对铜和锌没有任何耐受性,因为这些样品中最低的LC 50值记录在案。无论实验中暴露于金属的两栖动物的起源如何,无论其暴露量如何,Cu和Zn都在两栖动物的胞质和不溶部分之间保持大致相等的分布,这表明在整个条件范围内,金属存储的机理是相同的。尽管实验室暴露于溶解的Cd,Cu或Zn未能证明来自清洁或污染场所的两栖动物在MTLP的诱导方面存在差异,但来自杜拉斯湾的O. gammarellus中MTLP的浓度要高于收集后直接分析的Millport中的O. gammarellus。 。因此,金属硫蛋白样蛋白作为生物标记物的潜在作用是不可能的,尽管仍然有理由相信这些蛋白的营业额确实会随着对金属挑战的增加而增加,从而使MTLP在金属解毒中发挥作用。

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