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评估废水排放对底栖生物群的潜在风险:一种在受控条件下暴露的蛤蜊(菲律宾蛤仔)生物标志物反应的综合评估方法。

Assessing potential risks of wastewater discharges to benthic biota: an integrated approach to biomarker responses in clams (Ruditapes philippinarum) exposed under controlled conditions.

作者信息

Maranho L A, DelValls T A, Martín-Díaz M L

机构信息

Physical Chemistry Department, University of Cádiz, Faculty of Marine and Environmental Sciences, Campus of International Excellence of the Sea (CEIMAR), 11510 Puerto Real, Cádiz, Spain; Andalusian Centre of Marine Science and Technology (CACYTMAR), University of Cádiz, 11510 Puerto Real, Cádiz, Spain.

Physical Chemistry Department, University of Cádiz, Faculty of Marine and Environmental Sciences, Campus of International Excellence of the Sea (CEIMAR), 11510 Puerto Real, Cádiz, Spain.

出版信息

Mar Pollut Bull. 2015 Mar 15;92(1-2):11-24. doi: 10.1016/j.marpolbul.2015.01.009. Epub 2015 Jan 29.

Abstract

Marine clams Ruditapes philippinarum were exposed under laboratory conditions to sediments sampled at five sites affected by wastewater effluents at the Bay of Cádiz (SW, Spain). Contamination and early biological stress were determined. Metabolism and antioxidant system differed according to seasons. Health status diminished in summer. Metabolism of detoxification, and oxidative effect were related to concentration of metals, PAH, secondary alkane sulfonates (SAS) and antibiotics in winter. Antioxidant system and DNA damage were linked to metals and pharmaceutical products. Phase I and antioxidant system were associated to PAH and SAS in summer. Oxidative stress and effects were related to pharmaceuticals. Phase II was linked to metals and pharmaceuticals. Seasonality of sediment contamination by organic compounds and biological responses was determined. Clams were useful bioindicators, since the set of biomarkers applied was validated as potential tools for sediment quality assessment of wastewater discharges areas.

摘要

在实验室条件下,将菲律宾蛤仔暴露于从西班牙西南部加的斯湾五个受废水排放影响的地点采集的沉积物中。测定了污染情况和早期生物应激反应。新陈代谢和抗氧化系统因季节而异。夏季健康状况下降。冬季,解毒代谢和氧化作用与金属、多环芳烃、仲烷磺酸盐(SAS)和抗生素的浓度有关。抗氧化系统和DNA损伤与金属及药品有关。夏季,第一阶段代谢和抗氧化系统与多环芳烃和SAS有关。氧化应激及其影响与药品有关。第二阶段代谢与金属和药品有关。确定了有机化合物对沉积物污染的季节性以及生物反应。蛤仔是有用的生物指示物,因为所应用的一系列生物标志物已被验证为废水排放区域沉积物质量评估的潜在工具。

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