Molecular Methods as Potential Tools in Ecohydrological Studies on Emerging Contaminants in Freshwater Ecosystems
- 1. UNESCO Department of Ecohydrology and Applied Ecology, Faculty of Biology and Environmental Protection, University of Lodz, 90-237 Lodz, Poland
- 2. Department of Biochemistry and Microbiology, Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, 166 28 Prague, Czech Republic
Description
Contaminants of emerging concern (CECs) present a threat to the functioning of freshwater ecosystems. Their spread in the environment can affect both plant and animal health. Ecohydrology serves as a solution for assessment approaches (i.e., threat identification, ecotoxicological assessment, and cause–effect relationship analysis) and solution approaches (i.e., the elaboration of nature-based solutions: NBSs), mitigating the toxic effect of CECs. However, the wide array of potential molecular analyses are not fully exploited in ecohydrological research. Although the number of publications considering the application of molecular tools in freshwater studies has been steadily growing, no paper has reviewed the most prominent studies on the potential use of molecular technologies in ecohydrology. Therefore, the present article examines the role of molecular methods and novel omics technologies as essential tools in the ecohydrological approach to CECs management in freshwater ecosystems. It considers DNA, RNA and protein-level analyses intended to provide an overall view on the response of organisms to stress factors. This is compliant with the principles of ecohydrology, which emphasize the importance of multiple indicator measurements and correlation analysis in order to determine the effects of contaminants, their interaction with other environmental factors and their removal using NBS in freshwater ecosystems.
Open Access
Licence Attribution (CC BY)
Publisher Website
Access full text
Publication Details
Journal article
Persistent Identifiers
MAGID
3094399019
DOI
10.3390/w12112962
Read more
Funding
References
Bahamonde . Molecular signatures in rainbow darter (Etheostoma caeruleum) inhabi...
Read more
Planello . Transcriptional Responses, Metabolic Activity and Mouthpart Deformiti...
Read more
Bell . Increasing phytoremediation efficiency and reliability using novel omics ...
Read more
Bej . Applications of the polymerase chain reaction in environmental microbiolog...
Read more
Li . Occurrence and fate of antibiotic residues and antibiotic resistance genes ...
Read more
Showing first 5 of 91 references.
European Structural and Investment Funds, OP RDE-funded project `CHEMFELLS4UCTP'