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The effects of sewage treatment plant effluents on hepatic and intestinal biomarkers in common carp (Cyprinus carpio)

Authors :
Tomas Bakal
Martin Krøyer Rasmussen
Roman Grabic
Pham Thai Giang
Sabine Sampels
Galia Zamaratskaia
Sidika Sakalli
Jan Turek
Tomas Randak
Jitka Kolarova
Sarvenaz Khalili Tilami
Vladimir Zlabek
Viktoriia Burkina
Source :
Sakalli, S, Giang, P T, Burkina, V, Zamaratskaia, G, Rasmussen, M K, Bakal, T, Tilami, S K, Sampels, S, Kolarova, J, Grabic, R, Turek, J, Randak, T & Zlabek, V 2018, ' The effects of sewage treatment plant effluents on hepatic and intestinal biomarkers in common carp ( Cyprinus carpio ) ', Science of the Total Environment, vol. 635, pp. 1160-1169 . https://doi.org/10.1016/j.scitotenv.2018.04.188
Publication Year :
2018
Publisher :
Elsevier BV, 2018.

Abstract

Sewage treatment plants (STPs) are one of the major source of pharmaceuticals and personal care products in the aquatic environment. Generally, the effects of individual chemicals on fish are studied under laboratory conditions, which leads to results that are potentially not realistic regarding the effects of these chemicals under environmental conditions. Therefore, in this study, common carps were held in exposed pond that receive water from STP effluents for 360 days under natural conditions. Elimination of xenobiotics starts in the fish intestine, in which the microbial community strongly influences its function. Moreover, the fish intestine functions as crucial organ for absorbing lipids and fatty acids (FA), with consequent transport to the liver where their metabolism occurs. The liver is the primary organ performing xenobiotic metabolism in fish, and therefore, the presence of pollutants may interact with the metabolism of FA. The catalytic activity of CYP1A and CYP3A-like enzymes, their gene expression, FA composition and intestinal microbiome consortia were measured. The catalytic activity of enzymes and their gene and protein expression, were induced in hepatic and intestinal tissues of fish from the exposed pond. Also, fish from the exposed pond had different compositions of FA than those from the control pond: concentration of 18:1 n-9 and 18:2 n-6 were significantly elevated and the longer chain n-3 FA 20:5 n-3, 22:5 n-3 and 22:6 n-3 were significantly lowered. There were clear differences among microbiome consortia in fish intestines across control and exposed groups. Microbiome taxa measured in exposed fish were also associated with those found in STP activated sludge. This study reveals that treated STP water, which is assumed to be clean, affected measured biomarkers in common carp.

Details

ISSN :
00489697
Volume :
635
Database :
OpenAIRE
Journal :
Science of The Total Environment
Accession number :
edsair.doi.dedup.....2816d880ef42c88553a81ab402e43339
Full Text :
https://doi.org/10.1016/j.scitotenv.2018.04.188