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Collection and transport of sentinel mussels in biomarker-based coastal pollution monitoring: Current flaws and reliable practices

机译:Sentinel Mussels在基于生物标记的沿海污染监测中的宿塞贻贝的集合与运输:目前的缺陷和可靠的做法

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摘要

Biomarkers use to be recorded in sentinel mussels for biological effects assessment in coastal pollution monitoring. There are recommended procedures (e.g., by ICES) for biomarker determination but not for sample collection and transport. However, where and when mussels are collected and how samples are processed can be a major source of variability in biomarker values. Thus, the present study aims at contributing to identify reliable practices for collection and transport of intertidal mussels in biomarker-based coastal pollution monitoring. Mussels, Mytilus galloprovincialis, were handpicked from the high (2.5-3.0 m) and low (0.5-1.0 m) tide-mark levels at autumn tides in Gorliz, a relatively clean locality of the Basque Coast (Bay of Biscay). Then, they were processed by different ways: (a) in situ dissected immediately after sampling; (b) transported to the laboratory either in air or in seawater; and (c) dissected at different time intervals after sampling. Oxidative stress, lysosomal and tissue-level biomarkers were investigated. Oxidative stress and lysosomal biomarkers were significantly affected by collection and transport to the laboratory, due to the combination of air exposure (hypoxia) and digestion process. Consequently, it is recommended that sentinel mussels should be collected the nearest possible to the 0 tide-mark level and processed in situ as soon as possible, and always within 1 h upon collection. If in situ processing is not possible, mussels should be transported in air and processed within the shortest time possible. Finally, details on sampling should be always provided to made possible the proper interpretation and comparison of results.
机译:生物标志物用于在沿海污染监测中录制在Sentinel贻贝中进行生物效应评估。有推荐的程序(例如,谢谢)用于生物标志物的确定,但不是用于样品收集和运输。然而,收集贻贝的地方和何时处理样本是如何处理生物标志物值的主要变异的主要原因。因此,本研究旨在有助于确定在基于生物标志物的沿海污染监测中识别跨境贻贝的可靠做法。贻贝,肉豆蔻血液incovincialis从Gorliz的秋天潮汐的高(2.5-3.0米)和低(0.5-1.0米)的潮汐标志水平中,是巴斯克海岸(Biscay湾)的相对清洁的地方。然后,通过不同的方式处理它们:(a)在抽样后立即分解; (b)在空中或海水中运送到实验室; (c)取样后以不同的时间间隔解剖。研究了氧化应激,溶酶体和组织级生物标志物。由于空气暴露(缺氧)和消化过程的组合,通过收集和运输,通过收集和运输,氧化应激和溶酶体生物标志物显着影响。因此,建议应将Sentinel贻贝收集到0潮汐标记水平并尽快处理,并在收集时始终在1小时内进行处理。如果无法处理是不可能的,则应在空中运输贻贝并在最短的时间内进行处理。最后,应始终提供有关抽样的详细信息,以使结果适当的解释和比较。

著录项

  • 来源
    《Ecological indicators》 |2019年第8期|722-734|共13页
  • 作者单位

    Univ Basque Country UPV EHU Dept Zool & Anim Cell Biol CBET Res Grp Leioa Basque Country Spain|Univ Basque Country Res Ctr Expt Marine Biol & Biotechnol Plentzia Marine Stn PiE UPV EHU Plentzia Basque Country Spain;

    Univ Porto Dept Populat Study Lab Ecotoxicol ECOTOX ICBAS Inst Biomed Sci Abel Salazar Rua Jorge Viterbo Ferreira 228 P-4050313 Porto Portugal|Univ Porto CIIMAR Interdisciplinary Ctr Marine & Environm Re ICBAS Rua Jorge Viterbo Ferreira 228 P-4050313 Porto Portugal;

    Univ Basque Country UPV EHU Dept Zool & Anim Cell Biol CBET Res Grp Leioa Basque Country Spain|Univ Basque Country Res Ctr Expt Marine Biol & Biotechnol Plentzia Marine Stn PiE UPV EHU Plentzia Basque Country Spain;

    Univ Basque Country UPV EHU Dept Zool & Anim Cell Biol CBET Res Grp Leioa Basque Country Spain|Univ Basque Country Res Ctr Expt Marine Biol & Biotechnol Plentzia Marine Stn PiE UPV EHU Plentzia Basque Country Spain;

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

    Biomarkers; Confounding factors; Histopathology; Lysosomes; Mussel-watch; Oxidative stress; Sample processing; Sampling;

    机译:生物标志物;混淆因素;组织病理学;溶酶体;贻贝手表;氧化应激;样品加工;取样;

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