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Water Column Monitoring 2014: Determining the biological effects of an offshore platform on local fish populations

机译:2014年水柱监测:确定海上平台对当地鱼类种群的生物影响

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摘要

The biological effects of an offshore oil platform on local fish populations were assessed as part of the Water Column Monitoring (WCM) programme for 2014. The Njord A platform was chosen as the study location, which was not in operation and had no current discharge of produced water. Demersal fish species were targeted since they were believed to be less likely to migrate away from the platform than pelagic fish. By targeting organisms deeper in the water column and selecting a platform currently not in operation, the impact of drill cuttings and other sediment sources including leakages from well deposits were the main sources of contamination.Wild fish including ling (Molva molva), tusk (Brosme brosme), redfish (Sebastes sp.) and saithe (Pollachius virens) were caught with baited rod and line from within the 500 m safety zone of the Njord A platform during the summer of 2014. Reference fish were caught on a separate research cruise by trawling from a region of the Norwegian Sea less impacted by oil and gas activities. Limited numbers of reference ling were obtained and the reference data for ling collected from the North Sea as part of the WCM2013 programme were used for comparison of the biomarker responses.Contaminant body burden and a suite of biological effects endpoints were measured in all fish groups and included DNA adducts, DNA strand breaks by comet assay, acetylcholine esterase (AChE) inhibition, ethoxyresorufin 0-deethylase (EROD), vitellogenin (VTG), lysosomal membrane stability (LMS), liver and gill histopathology, PAH metabolites, and PAH body burden. The biomarker data were integrated using the integrated biological response index (IBR/n). Despite low and/or undetected concentrations of PAH and PAH metabolites in fish fillet and bile respectively significant responses in AChE, comet and DNA adducts were found. The biomarker responses indicated exposure to both neurotoxic and genotoxic chemicals in fish inhabiting the lower water column with influence from sediment sources around the Njord A platform. Integration of the biomarker responses (IBR/n) found that all four fish species that were caught from around the platform had markedly higher IBR/n values than their respective reference population. The study shows the advantage of using a suite of biomarkers for assessing the biological effects of low concentrations of complex mixtures with biological effects observed despite low concentrations of PAH measured.
机译:作为2014年水柱监测(WCM)计划的一部分,评估了海上石油平台对当地鱼类种群的生物影响。选择了Njord A平台作为研究地点,该平台未投入运营且目前没有任何排放生产的水。以沉鱼为目标,因为它们被认为比远洋鱼类迁移出平台的可能性小。通过将目标对准水柱深处的生物并选择目前未使用的平台,钻屑和其他沉积物源(包括井沉积物泄漏)的影响是主要的污染源。野生鱼类包括岭(Molva molva),象牙(Brosme 2014年夏季,在Njord A平台安全区500 m内,用诱饵的鱼竿和钓线钓到了鱼,红鱼(Sebastes sp。)和saithe(Pollachius virens)。从挪威海地区拖网的活动受到石油和天然气活动的影响较小。 WCM2013计划的一部分获得了数量有限的参考林,并从北海收集了参考林数据,用于比较生物标志物的反应。在所有鱼类和鱼类中测量了污染物的身体负担和一系列生物学效应终点包括DNA加合物,彗星分析法检测的DNA链断裂,乙酰胆碱酯酶(AChE)抑制,乙氧基试卤灵0-去乙基酶(EROD),卵黄蛋白原(VTG),溶酶体膜稳定性(LMS),肝和g组织病理学,PAH代谢物和PAH体负荷。使用整合的生物反应指数(IBR / n)整合生物标记数据。尽管鱼片和胆汁中PAH和PAH代谢物的浓度较低和/或未检测到,但在AChE,彗星和DNA加合物中却有明显的反应。生物标志物的响应表明,受Njord A平台周围沉积物来源的影响,居住在较低水柱的鱼类同时暴露于神经毒性和遗传毒性化学物质。生物标志物应答(IBR / n)的整合发现,从平台周围捕获的所有四种鱼类的IBR / n值均明显高于其各自的参考种群。这项研究显示了使用一套生物标记物评估低浓度复杂混合物的生物学效应的优势,尽管所测量的PAH浓度低,但仍可观察到生物学效应。

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