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采用多生物标志物方法评估废水处理厂废水的毒性效应和海洋(菲律宾蛤仔)和淡水(河蚬)双壳贝类物种的激活防御机制。

A multibiomarker approach to assess toxic effects of wastewater treatment plant effluents and activated defence mechanisms in marine (Ruditapes philippinarum) and fresh water (Corbicula fluminea) bivalve species.

机构信息

Faculty of Marine and Environmental Sciences, Cadiz University, Campus Excelencia Internacional del Mar (CEIMAR), Polígono Río San Pedro s/n. P. Real, Cádiz, Spain.

Faculty of Health Science, Arturo Prat University, Casilla 121, 1110939, Iquique, Chile.

出版信息

Ecotoxicology. 2020 Sep;29(7):941-958. doi: 10.1007/s10646-020-02216-1. Epub 2020 Apr 29.

Abstract

Since it has been demonstrated that urban effluents can have adverse effects on aquatic organisms, a multibiomarker study was used to evaluate the effects of wastewater treatment plant (WWTP) effluents discharged into the marine and freshwater environments on clams in Cádiz, Spain. One bioassay was performed in the Bay of Cádiz, exposing Ruditapes philippinarum (marine) to a reference site as well as two sites close to WWTP discharges for 14 days. A second bioassay was performed in the Guadalete River, exposing Corbicula fluminea (fresh water) to three sites for 21 days. The biomarkers analysed included defence mechanisms and various toxic effects. Results indicated that WWTP effluents activated defence mechanisms and induced toxic effects in clams exposed to both environments, thus indicating bioavailability of contaminants present in water. Elevated enzymatic activity was found in clams deployed in La Puntilla and El Trocadero compared to control clams and those exposed to the reference site, and 96% of clams deployed at G2 in the Guadalete River died before day 7. Clams exposed to G1 and G3 indicated significant differences in all biomarkers analysed with respect to control clams (p < 0.05). Both species were sensitive to contaminants present in studied sites. This is the first time that these species were used in cages to assess the environmental risk of wastewater effluent discharges in freshwater and marine column environments. The multibiomarker approach provided important ecotoxicological information and is useful for the assessment of the bioavailability and effect of contaminants from WWTP effluents on marine and fresh water invertebrates.

摘要

由于已经证明城市废水可能对水生生物产生不利影响,因此进行了一项多生物标志物研究,以评估西班牙加的斯市污水处理厂(WWTP)排放的废水对贻贝和淡水蚌的影响。在加的斯湾进行了一项生物测定,将菲律宾蛤仔(海洋)暴露于参考点以及靠近 WWTP 排放口的两个地点 14 天。在瓜达莱特河进行了第二项生物测定,将黄喉拟水龟暴露于三个地点 21 天。分析的生物标志物包括防御机制和各种毒性效应。结果表明,WWTP 废水激活了贻贝的防御机制,并诱导了暴露于两种环境中的贻贝产生毒性效应,从而表明水中存在的污染物具有生物可利用性。与对照贻贝和暴露于参考点的贻贝相比,在拉蓬蒂拉和埃尔特罗卡德罗部署的贻贝中发现酶活性升高,在瓜达莱特河的 G2 部署的 96%的贻贝在第 7 天之前死亡。与对照贻贝相比,暴露于 G1 和 G3 的贻贝在所有分析的生物标志物上均表现出显著差异(p<0.05)。这两种贻贝对研究点存在的污染物均敏感。这是首次将这些物种用于笼中,以评估淡水和海洋柱状环境中废水排放的环境风险。多生物标志物方法提供了重要的生态毒理学信息,有助于评估 WWTP 废水对海洋和淡水无脊椎动物中污染物的生物利用度和效应。

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