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多变量和综合方法分析生态毒理学中的多个生物标志物:在新热带地区的实地研究。

Multivariate and integrative approach to analyze multiple biomarkers in ecotoxicology: A field study in Neotropical region.

机构信息

Programa de Pós-graduação em Ecologia de Ambientes Aquáticos e Continentais (PEA)/Nupélia, Universidade Estadual de Maringá (UEM), Av. Colombo, 5790, Zona 7, 87020-900 Maringá, PR, Brazil; Universidade Tecnológica Federal do Paraná (UTFPR), Campus Dois Vizinhos, Estrada para Boa Esperança, km 04, P.O. Box 157, 85660-000 Dois Vizinhos, PR, Brazil.

Universidade Tecnológica Federal do Paraná (UTFPR), Campus Dois Vizinhos, Estrada para Boa Esperança, km 04, P.O. Box 157, 85660-000 Dois Vizinhos, PR, Brazil.

出版信息

Sci Total Environ. 2017 Dec 31;609:1208-1218. doi: 10.1016/j.scitotenv.2017.07.266. Epub 2017 Aug 4.

Abstract

Aquatic pollution has dramatically worsened in developing countries, due to the discharge of a mixture of pollutants into water bodies, to the lack of stringent laws, and the inadequate treatment of effluents. In this study, the Neotropical fish Astyanax aff. paranae was sampled from three sites with different pollution levels: 1) a Biological Reserve (Rebio), protected by the Brazilian government; 2) an agricultural area in one of the most productive regions of Brazil, upstream of an urban zone; and 3) a site downstream from urban zone, characterized by the influx of different effluents, including wastes from industry, a sewer treatment plant, and agricultural areas. We assess biomarkers at multiple levels, such as the comet assay, hepatic histopathological analysis, brain and muscle acetylcholinesterase (AChE) and the hepatic enzymes glutathione-S-transferase (GST), catalase (CAT), and lipoperoxidation (LPO), during winter and summer. The interpretation of field results is always a very complex operation, since many factors can influence the variables analyzed in uncontrollable conditions. For this reason, we apply an integrative multivariate analysis. The results showed that the environmental risk of the three sites was significantly different. We can see a gradient in data distribution in discriminant analysis: separating, from one side, the fish of Rebio; in the middle are the fish from agricultural area and, in the other side are the animals from downstream site. Overall, the biomarkers responses were more greatly altered in the downstream site, whereas fish from the agricultural area showed an intermediate level of damage. The greatest changes were likely caused by agriculture, industrial chemical effluents and ineffective sewage treatments, in a synergic interaction in downstream site. In conclusion, the use of multiple biomarkers at different response levels to assess the toxic effects of mixed pollutants in a natural aquatic environment is an important tool for monitoring polluted regions.

摘要

发展中国家的水生污染急剧恶化,这是由于将各种污染物混合排入水体、缺乏严格的法律以及废水处理不足造成的。在这项研究中,从三个污染水平不同的地点采集了新热带鱼类 Astyanax aff. paranae:1)一个由巴西政府保护的生物保护区;2)巴西最具生产力的一个农业区,位于城市下游;3)一个城市下游的地点,其特点是有各种废水流入,包括工业废物、污水处理厂和农业区的废物。我们评估了多个水平的生物标志物,如彗星试验、肝组织病理学分析、脑和肌肉乙酰胆碱酯酶(AChE)以及肝酶谷胱甘肽-S-转移酶(GST)、过氧化氢酶(CAT)和脂质过氧化(LPO),在冬季和夏季进行。由于许多因素可能在不可控条件下影响分析变量,因此现场结果的解释一直是一项非常复杂的操作。出于这个原因,我们应用了综合多元分析。结果表明,这三个地点的环境风险明显不同。我们可以在判别分析中看到数据分布的梯度:从一侧分离出 Rebio 的鱼类;中间是农业区的鱼类,另一侧是下游地区的动物。总的来说,下游地区的生物标志物反应变化更大,而农业区的鱼类则表现出中等程度的损伤。这种变化很可能是由农业、工业化学废水和低效污水处理的协同作用造成的,这种变化在下游地区最为明显。总之,在自然水生环境中使用不同反应水平的多种生物标志物来评估混合污染物的毒性影响,是监测污染地区的重要工具。

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