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首页> 外文期刊>The Science of the Total Environment >Effects of organism preparation in metallothionein and metal analysis in marine invertebrates for biomonitoring marine pollution
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Effects of organism preparation in metallothionein and metal analysis in marine invertebrates for biomonitoring marine pollution

机译:金属硫蛋白中生物体制备的作用和海洋无脊椎动物金属分析对海洋污染的生物监测

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摘要

Metallothionein (MT) is established as a potentially useful biomarker for monitoring aquatic pollution. This paper addresses widespread inconsistencies in storage conditions, tissue type selection and pre-treatment of samples before MT and metal analysis in biomarker studies. This variation hampers comparability and so the widespread implementation of this monitoring approach. Actively sampled Mytilus edulis in Southampton Water, UK were exposed to different storage temperatures, a variety of tissue types were analysed, and various pre-treatments of transportation on ice, transportation in seawater, depuration, and rapid dissection in the field were examined. Storage temperatures of - 20 ℃ were found to be adequate for periods of at least ten weeks, as MT was not reduced by protein degradation compared with samples kept at - 80 ℃. Whole tissue and digestive gland concentrations of MT and metals were significandy positively correlated and directly relatable. MT in the digestive gland appeared to be more responsive to metals than in whole tissue, where it may be diluted, masking MT responses. However, longer study periods may suffer the effects of mass changes to the digestive gland, which alters MT concentration, and it may therefore be advisable to measure whole tissue. Depuration and transportation in seawater reduced both MT and metal concentrations in the digestive gland, and few correlations between MT and metals were identified for these treatments. It is therefore recommended that: ⅰ) samples are transported to the laboratory on ice and dissected as soon as possible thereafter, ⅱ) depuration should not be used when examining MT response to metal exposure until further research clarifying its utility is reported, ⅲ) either whole tissue or the digestive gland can be used to measure MT, though whole tissue may be preferable on long-term studies, and ⅳ) organisms can be stored at - 20 ℃ before analysis for up to ten weeks. These practices can be applied to future biomonitoring studies and will improve the comparability and repeatability of using MT as a biomarker.
机译:金属硫蛋白(MT)被确立为监测水生污染的潜在有用的生物标记。本文解决了在生物标记研究中MT和金属分析之前的存储条件,组织类型选择和样品预处理方面普遍存在的矛盾。这种变化妨碍了可比性,因此该监视方法的广泛实施。在英国南安普敦水域中,积极采样的食用紫贻贝暴露于不同的储存温度下,分析了各种组织类型,并研究了在冰上运输,海水运输,净化和野外快速解剖的各种预处理方法。发现-20℃的储存温度至少可以维持十周,因为与保持在-80℃的样品相比,MT不会因蛋白质降解而降低。 MT和金属的整个组织和消化腺浓度显着正相关,并且可以直接关联。消化腺中的MT似乎比金属在整个组织中的反应性更好,在整个组织中它可能被稀释,从而掩盖了MT的反应。但是,较长的研究时间可能会影响消化腺的质量变化,从而改变MT浓度,因此建议对整个组织进行测量。海水中的净化和运输降低了消化腺中MT和金属的浓度,并且这些处理中MT与金属之间的相关性很少。因此,建议:ⅰ)将样品在冰上运送到实验室,然后尽快进行解剖;ⅱ)在检查MT对金属暴露的反应之前,不应使用纯净剂,除非进一步研究表明其用途,utility)整个组织或消化腺可用于测量MT,尽管长期研究可能更希望整个组织,并且ⅳ)生物可在分析前于-20℃下保存长达十周。这些实践可以应用于未来的生物监测研究,并将提高使用MT作为生物标记物的可比性和可重复性。

著录项

  • 来源
    《The Science of the Total Environment》 |2015年第15期|238-247|共10页
  • 作者单位

    Centre for Environmental Sciences, Faculty of Engineering and the Environment, University of Southampton, University Road, Highfield, Southampton, Hampshire SO17 1BJ, United Kingdom;

    Centre for Environmental Sciences, Faculty of Engineering and the Environment, University of Southampton, University Road, Highfield, Southampton, Hampshire SO17 1BJ, United Kingdom;

    Ocean and Earth Science, University of Southampton Waterfront Campus, National Oceanography Centre, European Way, Southampton, Hampshire SO14 3ZH, United Kingdom;

    Centre for Environmental Sciences, Faculty of Engineering and the Environment, University of Southampton, University Road, Highfield, Southampton, Hampshire SO17 1BJ, United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomonitoring; Pre-treatments; Metallothionein; Digestive gland; Marine invertebrates; Metal pollution;

    机译:生物监测;预处理;金属硫蛋白;消化腺;海洋无脊椎动物;金属污染;

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