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利用贻贝 Crassostrea gasar 的综合生物标志物反应评估巴西河口的水生污染。

Integrated biomarker responses in oysters Crassostrea gasar as an approach for assessing aquatic pollution of a Brazilian estuary.

机构信息

Fishery Engineering and Biological Sciences Department, Santa Catarina State University, Laguna, 88790-000, Brazil.

Laboratory of Biomarkers of Aquatic Contamination and Immunochemistry - LABCAI, Federal University of Santa Catarina, Florianópolis, 88034-257, Brazil.

出版信息

Mar Environ Res. 2021 Mar;165:105252. doi: 10.1016/j.marenvres.2021.105252. Epub 2021 Jan 6.

Abstract

The Laguna Estuarine System (LES), southern Brazil, suffers impacts from anthropogenic activities, releasing contaminants into the ecosystem. This study evaluated changes in biochemical and molecular biomarkers and contaminants concentrations in oysters Crassostrea gasar transplanted and kept for 1.5 and 7 days at three potentially contaminated sites (S1, S2, and S3) at LES. Metals varied spatiotemporally; S1 exhibited higher Ag and Pb concentrations, whereas Cd was present in S3. S2 was a transition site, impacted by Ag, Pb, or Cd, depending on the period. Organic contaminants concentrations were higher before transplantation, resulting in the downregulation of biotransformation genes transcripts levels. Phase II-related genes transcripts and metals showed positive correlations. Decreased levels of HSP90-like transcripts and antioxidant enzymes activity were related to increased pollutant loads. Integrated biomarker response index (IBR) analysis showed S1 and S3 as the most impacted sites after 1.5 and 7 days, respectively. Regardless of the scenario, LES contaminants pose a significant threat to aquatic biota.

摘要

拉古纳河口系统(LES),巴西南部,遭受人为活动的影响,将污染物释放到生态系统中。本研究评估了在 LES 的三个潜在污染地点(S1、S2 和 S3)移植并保存 1.5 和 7 天的贻贝 Crassostrea gasar 的生化和分子生物标志物和污染物浓度的变化。金属的含量在时空上有所不同;S1 表现出更高的 Ag 和 Pb 浓度,而 Cd 存在于 S3。S2 是一个过渡站点,根据时间段的不同,受到 Ag、Pb 或 Cd 的影响。有机污染物浓度在移植前较高,导致生物转化基因转录物水平下调。与 II 期相关的基因转录物和金属呈正相关。HSP90 样转录物水平和抗氧化酶活性的降低与污染物负荷的增加有关。综合生物标志物响应指数(IBR)分析表明,S1 和 S3 在 1.5 和 7 天后分别是受影响最大的地点。无论哪种情况,LES 的污染物对水生生物群都构成了重大威胁。

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