Please use this identifier to cite or link to this item: https://biore.bio.bg.ac.rs/handle/123456789/1441
Title: Monitoring of DNA damage in haemocytes of freshwater mussel Sinanodonta woodiana sampled from the velika morava river in Serbia with the comet assay
Authors: Kolarević, Stoimir 
Knežević Vukčević, Jelena 
Paunović, Momir
Kračun, Margareta
Vasiljević, Božica
Tomović, Jelena
Vuković Gačić, Branka 
Gačić, Zoran
Keywords: Comet assay;Velika morava river;Sinanodonta woodiana;Haemocytes
Issue Date: 1-Sep-2013
Journal: Chemosphere
Abstract: 
This study was undertaken to investigate the potential of the freshwater mussel Sinanodonta woodiana for detection of genotoxic pollution of the environment. Study was performed at two sites in the Velika Morava River, from May 2010 to February 2011. The alkaline comet assay on haemocytes was used, and the olive tail moment (OTM) was chosen as a measure of DNA damage. The specimens held on acclimation under controlled laboratory conditions for 10. d were used as a control. Chemical analysis revealed the presence of phosphates and increased concentrations of zinc, copper and nickel at both sites during the entire sampling period. The values of OTM in mussels collected from the environment, significantly correlated with the concentration of zinc (. r=. 0.6248), temperature (. r=. 0.7006) and dissolved oxygen (. r=. 0.7738). Seasonal variations in genotoxic response were observed, with the highest OTM values obtained during summer months. Preliminary results of the in vitro study indicated the effect of water temperature on genotoxic response to zinc and cadmium in S. woodiana suggesting that the presence of genotoxic pollutants during months with lower temperature could be under-estimated. Obtained results indicate that S. woodiana could be a valuable tool for active biomonitoring of aquatic environments and emphasizes the importance of seasonal genotoxic monitoring with this organism. © 2013 Elsevier Ltd.
URI: https://biore.bio.bg.ac.rs/handle/123456789/1441
ISSN: 0045-6535
DOI: 10.1016/j.chemosphere.2013.04.073
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