Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments
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2020
Authors
Jovanović-Marić, JovanaKracun-Kolarević, Margareta

Kolarević, Stoimir

Sunjog, Karolina

Kostić-Vuković, Jovana

Deutschmann, Bjorn
Hollert, Henner

Tenji, Dina
Paunović, Momir

Vukovic-Gacic, Branka

Article (Published version)

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In this study, few different evaluation concepts were used for the assessment of genotoxic potential at the stretch of the Danube River identified as a significant hotspot of pollution originated through the untreated wastewaters. Three sites were chosen: one site upstream of the wastewater outlet in Novi Sad (Serbia), one at the outlet of wastewaters, and one site few kilometer downstream. Ex situ approach comprised prokaryotic SOS/umuCtest onSalmonella typhimuriumTA1535/pSK1005 and comet assay on human hepatoma cell line (HepG2). In situ approach was based on the active monitoring (cage approach) using freshwater musselsSinanodonta woodianaand fishCyprinus carpio.The comet and micronucleus assays were selected for evaluation of DNA damage in mussel haemocytes and fish blood cells. Within the ex situ part of the study, our results indicated that the eukaryotic model system is more sensitive compared to the prokaryotic one. In situ bioassays are recommended for obtaining a better insig...ht into ecosystem status and in the case of our study the complete insight of genotoxic pressure. However, the choice of animals as bioindicators also has a significant impact on the quality of the obtained information. Differential response between fish and mussels was observed at the highly polluted site suggesting possible involvement of additional protective mechanism such as valve closure in mussels.
Keywords:
In situ / genotoxicity / Ex situ / Eco / Danube River / Comet assay / BioassaysSource:
Environmental Science and Pollution Research, 2020, 27, 27, 33903-33915Publisher:
- Springer Heidelberg, Heidelberg
Funding / projects:
- Republic of Serbia [30/2018-19, 2313/2018]
- Republic of Slovenia [30/2018-19, 2313/2018]
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200178 (University of Belgrade, Faculty of Biology) (RS-200178)
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200007 (University of Belgrade, Institute for Biological Research 'Siniša Stanković') (RS-200007)
DOI: 10.1007/s11356-020-09597-0
ISSN: 0944-1344
PubMed: 32535828
WoS: 000539968800002
Scopus: 2-s2.0-85086381081
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Institut za multidisciplinarna istraživanjaTY - JOUR AU - Jovanović-Marić, Jovana AU - Kracun-Kolarević, Margareta AU - Kolarević, Stoimir AU - Sunjog, Karolina AU - Kostić-Vuković, Jovana AU - Deutschmann, Bjorn AU - Hollert, Henner AU - Tenji, Dina AU - Paunović, Momir AU - Vukovic-Gacic, Branka PY - 2020 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/1362 AB - In this study, few different evaluation concepts were used for the assessment of genotoxic potential at the stretch of the Danube River identified as a significant hotspot of pollution originated through the untreated wastewaters. Three sites were chosen: one site upstream of the wastewater outlet in Novi Sad (Serbia), one at the outlet of wastewaters, and one site few kilometer downstream. Ex situ approach comprised prokaryotic SOS/umuCtest onSalmonella typhimuriumTA1535/pSK1005 and comet assay on human hepatoma cell line (HepG2). In situ approach was based on the active monitoring (cage approach) using freshwater musselsSinanodonta woodianaand fishCyprinus carpio.The comet and micronucleus assays were selected for evaluation of DNA damage in mussel haemocytes and fish blood cells. Within the ex situ part of the study, our results indicated that the eukaryotic model system is more sensitive compared to the prokaryotic one. In situ bioassays are recommended for obtaining a better insight into ecosystem status and in the case of our study the complete insight of genotoxic pressure. However, the choice of animals as bioindicators also has a significant impact on the quality of the obtained information. Differential response between fish and mussels was observed at the highly polluted site suggesting possible involvement of additional protective mechanism such as valve closure in mussels. PB - Springer Heidelberg, Heidelberg T2 - Environmental Science and Pollution Research T1 - Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments EP - 33915 IS - 27 SP - 33903 VL - 27 DO - 10.1007/s11356-020-09597-0 ER -
@article{ author = "Jovanović-Marić, Jovana and Kracun-Kolarević, Margareta and Kolarević, Stoimir and Sunjog, Karolina and Kostić-Vuković, Jovana and Deutschmann, Bjorn and Hollert, Henner and Tenji, Dina and Paunović, Momir and Vukovic-Gacic, Branka", year = "2020", abstract = "In this study, few different evaluation concepts were used for the assessment of genotoxic potential at the stretch of the Danube River identified as a significant hotspot of pollution originated through the untreated wastewaters. Three sites were chosen: one site upstream of the wastewater outlet in Novi Sad (Serbia), one at the outlet of wastewaters, and one site few kilometer downstream. Ex situ approach comprised prokaryotic SOS/umuCtest onSalmonella typhimuriumTA1535/pSK1005 and comet assay on human hepatoma cell line (HepG2). In situ approach was based on the active monitoring (cage approach) using freshwater musselsSinanodonta woodianaand fishCyprinus carpio.The comet and micronucleus assays were selected for evaluation of DNA damage in mussel haemocytes and fish blood cells. Within the ex situ part of the study, our results indicated that the eukaryotic model system is more sensitive compared to the prokaryotic one. In situ bioassays are recommended for obtaining a better insight into ecosystem status and in the case of our study the complete insight of genotoxic pressure. However, the choice of animals as bioindicators also has a significant impact on the quality of the obtained information. Differential response between fish and mussels was observed at the highly polluted site suggesting possible involvement of additional protective mechanism such as valve closure in mussels.", publisher = "Springer Heidelberg, Heidelberg", journal = "Environmental Science and Pollution Research", title = "Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments", pages = "33915-33903", number = "27", volume = "27", doi = "10.1007/s11356-020-09597-0" }
Jovanović-Marić, J., Kracun-Kolarević, M., Kolarević, S., Sunjog, K., Kostić-Vuković, J., Deutschmann, B., Hollert, H., Tenji, D., Paunović, M.,& Vukovic-Gacic, B.. (2020). Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments. in Environmental Science and Pollution Research Springer Heidelberg, Heidelberg., 27(27), 33903-33915. https://doi.org/10.1007/s11356-020-09597-0
Jovanović-Marić J, Kracun-Kolarević M, Kolarević S, Sunjog K, Kostić-Vuković J, Deutschmann B, Hollert H, Tenji D, Paunović M, Vukovic-Gacic B. Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments. in Environmental Science and Pollution Research. 2020;27(27):33903-33915. doi:10.1007/s11356-020-09597-0 .
Jovanović-Marić, Jovana, Kracun-Kolarević, Margareta, Kolarević, Stoimir, Sunjog, Karolina, Kostić-Vuković, Jovana, Deutschmann, Bjorn, Hollert, Henner, Tenji, Dina, Paunović, Momir, Vukovic-Gacic, Branka, "Selection of assay, organism, and approach in biomonitoring significantly affects the evaluation of genotoxic potential in aquatic environments" in Environmental Science and Pollution Research, 27, no. 27 (2020):33903-33915, https://doi.org/10.1007/s11356-020-09597-0 . .