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综合评价港口沉积物质量的方法:从化学特征分析到多物种生物测定。

An integrated approach to evaluate port sediment quality: From chemical characterization to multispecies bioassays.

机构信息

Dipartimento Scienze della Vita e dell'Ambiente, Università Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy; Istituto Nazionale Biostrutture e Biosistemi - Consorzio Interuniversitario, Viale delle Medaglie d'Oro 305, 00136 Roma, Italy.

Dipartimento Scienze della Vita e dell'Ambiente, Università Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy.

出版信息

Sci Total Environ. 2020 Dec 1;746:141204. doi: 10.1016/j.scitotenv.2020.141204. Epub 2020 Jul 24.

Abstract

Management of dredged sediments results in an environmental and social cost. Based on their level of contamination, they can be intended for beach nourishment or for alternative uses. Sediment quality is established considering their specific chemical contamination level and setting up bioassays to evaluate their toxic effects on living organisms. The integration of these different Line of Evidence (LOE) generates toxicity indexes, the Hazard Chemical Quotient (HQc), and the Hazard Ecotoxicological Quotient (HQe), which are further elaborated using the SediQualSoft software, finally providing evidence on the levels of sediment contamination. In this study, four different dredged sediments were analysed. Except for one, which was sampled in a reference area, the others were assigned to the same class of toxicity, despite they presented different levels of chemical and ecotoxicological toxicity. As a novelty, this study introduces transcriptomics as a new LOE, to provide a new tool to better categorize sediment toxicity. C. gigas embryos were exposed to sediment elutriates, sampled at 5 and 18 h post-fertilization (hpf), and the expression of a set of genes involved in immune and stress response (hsp70, gpx, sod, dehf1, galectin, lysozyme, tg) was analysed by Real-time PCR. Molecular results suggested that the 18 hpf stage represents a sensitive window of exposure during development and can be suggested as a critical time point for ecotoxicity studies. Finally, by multivariate statistical analysis, integrating the well-established LOEs with molecular data, it was demonstrated that transcriptomics could be a useful and novel LOE with the ability to provide greater accuracy in the assessment of sediment toxicity.

摘要

疏浚沉积物的管理会带来环境和社会成本。根据其污染程度,它们可以用于海滩养护或替代用途。沉积物质量是根据其特定的化学污染水平来确定的,并设置生物测定来评估它们对生物的毒性影响。这些不同证据线(LOE)的综合产生毒性指数,即危害化学商(HQc)和危害生态毒理学商(HQe),然后使用 SediQualSoft 软件进一步详细说明,最终提供沉积物污染水平的证据。在这项研究中,分析了四种不同的疏浚沉积物。除了一个在参照区采样的沉积物外,其余沉积物的毒性都属于同一类别,尽管它们表现出不同程度的化学和生态毒性。作为一项创新,本研究引入了转录组学作为一种新的 LOE,为更好地分类沉积物毒性提供了一种新工具。用沉积物洗脱液暴露于在受精后 5 和 18 小时(hpf)时采集的 C. gigas 胚胎,并通过实时 PCR 分析一组参与免疫和应激反应的基因(hsp70、gpx、sod、dehf1、半乳凝集素、溶菌酶、tg)的表达。分子结果表明,18 hpf 阶段代表了发育过程中暴露的敏感窗口,可以作为生态毒性研究的关键时间点。最后,通过多元统计分析,将成熟的 LOE 与分子数据相结合,证明转录组学可以作为一种有用的新 LOE,具有提高沉积物毒性评估准确性的能力。

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