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首页> 外文期刊>Ecotoxicology and Environmental Safety >Relationship between wild-caught organisms for bioassays and sampling areas: Widespread serpulid early-development comparison between two distinct populations after trace element exposure
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Relationship between wild-caught organisms for bioassays and sampling areas: Widespread serpulid early-development comparison between two distinct populations after trace element exposure

机译:野生捕获生物与抽样区之间的关系:痕量元素暴露后两种不同群体的广泛锯化早期发展比较

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摘要

Previous studies suggested the suitability of the brackish-water serpulid (Ficopomatus enigmaticus) to be used as model organism for both marine and brackish waters monitoring, by the performance of sperm toxicity and larval development assays. The present study focused on larval development after the exposure of two F. enigmaticus populations (Mediterranean and Atlantic, collected in Italy and Portugal, respectively) to different trace elements (copper, mercury, arsenic, cadmium, and lead) at different concentrations. Results of larval development assays were presented as the percentage of abnormal developed larvae. The effect, measured in terms of EC50 for all toxicants tested, showed that mercury was the most toxic metal for larvae of both populations. Specifically, the tested trace elements may be racked in the following order from the highest to the lowest toxicity: Mediterranean: mercury copper lead arsenic cadmium; Atlantic: mercury copper cadmium arsenic lead. Responses of both populations were similar for arsenic. Lead was the least toxic element for the Atlantic population, while cadmium showed the least toxicity for the Mediterranean population. These preliminary results demonstrate the sensitivity and suitability of the organisms to be used in ecotoxicological bioassays and monitoring protocols. Moreover, chemical analyses on soft tissues and calcareous tubes of collected test organisms and their sampling site water were performed, to identify and quantify the concentration of the tested trace elements in these 3 matrices. Populations exhibited less sensitivity to a certain element together with a relevantly higher concentration of the same element in soft tissues. This may indicate a certain resistance to particular contaminant toxic effects by organisms that tend to accumulate the same toxicant. This highlights the potential correlation between wild-caught test organisms' responses and a deep characterization of the sampling site to identify putative abnormalities or differences in model organism response during bioassay execution.
机译:以前的研究表明,通过精子毒性和幼虫发育测定的表现,咸水丝锥(FICOPOMATUS ENIGMATIGUS)用作海洋和咸水水域的模型生物体的适用性。本研究重点是在不同浓度的不同痕量元素(意大利和葡萄牙收集的地中海和大西洋,在意大利和葡萄牙收集)之后的幼虫发育。幼虫发育测定的结果呈现为异常发育幼虫的百分比。根据测试所有毒物的EC50来测量的效果显示,汞是两种群体的幼虫最有毒的金属。具体地,测试的微量元素可以按照最高毒性的最高序列以以下顺序进行串联:Mediterranean:汞>铜>铅>砷>镉;大西洋:汞>铜>镉>砷>铅。对砷的反应类似于砷。铅是大西洋人口的最低毒性因素,而镉对地中海人口略有毒性。这些初步结果证明了生物体用于生态毒理学生物测定和监测方案的敏感性和适用性。此外,进行了收集的测试生物的软组织和钙质管的化学分析及其采样位点水,以鉴定并定量在这些3基质中测试的痕量元素的浓度。群体与某个元素的敏感性较小,在软组织中具有较高浓度的相同元素的浓度。这可能表明通过生物体对特定污染物毒性作用的一定抗性,这倾向于积累相同的毒物。这突出了野生捕获的试验生物的反应与采样部位的深度表征的潜在相关性,以确定生物测定期间的模型生物反应的推定异常或差异。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2020年第12期|111094.1-111094.7|共7页
  • 作者单位

    Univ Aveiro Dept Biol P-3810193 Aveiro Portugal;

    Consorzio Ctr Interuniv Biol Marina & Ecol Applic Livorno Italy;

    Univ Aveiro Dept Biol P-3810193 Aveiro Portugal|Univ Aveiro CESAM P-3810193 Aveiro Portugal;

    Consorzio Ctr Interuniv Biol Marina & Ecol Applic Livorno Italy;

    Univ Aveiro Dept Biol P-3810193 Aveiro Portugal|Consorzio Ctr Interuniv Biol Marina & Ecol Applic Livorno Italy;

    Univ Aveiro Dept Biol P-3810193 Aveiro Portugal|Univ Aveiro CESAM P-3810193 Aveiro Portugal;

    CNR IBBR Via Madonna Del Piano 10 I-50019 Florence Italy;

    Consorzio Ctr Interuniv Biol Marina & Ecol Applic Livorno Italy|Univ Pisa Dipartimento Sci Vet Pisa Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ficopomatus enigmaticus; Trace elements; Larval development; Ecotoxicology; Biomonitoring;

    机译:ficopomatus enigmaticus;微量元素;幼虫发育;生态毒理学;生物监测;

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