Article detail · 2023
Ecological indicators reveal historical regime shifts in the Black Sea ecosystem
- Year
- 2023
- Type
- article
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- YÖKSİS YÖKSİS article record
- YÖKSİS venue PEERJ
- Catalog match (ISSN) PeerJ
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Background The Black Sea is one of the most anthropogenically disturbed marine ecosystems in the world because of introduced species, fisheries overexploitation, nutrient enrichment via pollution through river discharge, and the impacts of climate change. It has undergone significant ecosystem transformations since the 1960s. The infamous anchovy and alien warty comb jelly Mnemiopsis leidyi shift that occurred in 1989 is the most well-known example of the drastic extent of anthropogenic disturbance in the Black Sea. Although a vast body of literature exists on the Black Sea ecosystem, a holistic look at the multidecadal changes in the Black Sea ecosystem using an ecosystem- and ecology-based approach is still lacking. Hence, this work is dedicated to filling this gap. Methods First, a dynamic food web model of the Black Sea extending from 1960 to 1999 was established and validated against time-series data. Next, an ecological network analysis was performed to calculate the time series of synthetic ecological indicators, and a regime shift analysis was performed on the time series of indicators. Results The model successfully replicated the regime shifts observed in the Black Sea. The results showed that the Black Sea ecosystem experienced four regime shifts and was reorganized due to effects instigated by overfishing in the 1960s, eutrophication and establishment of trophic dead-end organisms in the 1970s, and overfishing and intensifying interspecies trophic competition by the overpopulation of some r-selected organisms (i.e., jellyfish species) in the 1980s. Overall, these changes acted concomitantly to erode the structure and function of the ecosystem by manipulating the food web to reorganize itself through the introduction and selective removal of organisms and eutrophication. Basin-wide, cross-national management efforts, especially with regard to pollution and fisheries, could have prevented the undesirable changes observed in the Black Sea ecosystem and should be immediately employed for management practices in the basin to prevent such drastic ecosystem fluctuations in the future.
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Citations
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19 citations
OpenAlex cited_by_count (cache / database)
6 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Seasonal Geochemical Analysis of Toxic Metal Contamination and Ecological Risk Assessment in Sediments of the Değirmendere River Basin and Estuary, Türkiye 2025
- State of the art modelling for the Black Sea ecosystem to support European policies 2025
- Decadal changes in the Sea of Marmara indicate degraded ecosystem conditions and unsustainable fisheries 2024
- The Eutrophication Status of Aquaculture Areas in the Black Sea (Sinop) Using the Trophic Index (TRIX) 2025
- Microscopic Characterization of Otolith Abnormalities in Garfish Belone belone (Actinopterygii: Belonidae) from the Black Sea Using Light and SEM Microscopy 2025
- Microscopic Characterization of Otolith Abnormalities in Garfish Belone belone (Actinopterygii: Belonidae) from the Black Sea Using Light and SEM Microscopy 2025