CATASTROPHIC ANTHROPOGENIC VEGETATION CHANGES IN THE KILIYAN ARM OF THE DANUBE DELTA (UKRAINE)
DOI: http://dx.doi.org/10.30970/sbi.1901.809
Abstract
Background. Delta areas are unique natural ecosystems, characterized by a high diversity of habitats. At the beginning of the previous century, natural complexes of the Danube Delta underwent significant anthropogenic transformations. Large-scale anthropogenic pressure on natural ecosystems of the delta leads to a catastrophic alteration of the ecological regime and degradation of native flora complexes and plant communities. Catastrophic large-scale changes occurred in the last decades as a result of the damming of the riverbed and near-channel ridges of individual islands, and floodplain territories and their subsequent de-damming, the construction of the large-scale deep-water Danube–Black Sea shipping canal, the transformation of significant areas of delta into agricultural land, pulp backfilling of islands and shallow waters. The coastal ecosystems of the eastern part of the Kiliyan arm of the Danube Delta have also been catastrophically impacted by the Russian military actions, mainly caused by explosions of military shells.
Materials and Methods. Long-term comparative phytocoenotic surveys and stationary studies were used in this research. The investigation of the anthropogenic dynamics of vegetation were carried out by direct methods – on stationary and semi-stationary sites. We compared data obtained prior to the construction of the deep-water Danube–Black Sea shipping canal and the recent data obtained after the transformation. The direct methods included the method of comparing the current state with historical maps and geobotanical relevés published in the monograph «Reserve ”Wetlands of the Danube”» (Shelyag-Sosonko & Dubyna, 1984).
Results and Discussion. The paper highlights the detected catastrophic anthropogenic vegetation changes based on long-term comparative phytocoenotic surveys and stationary studies. Catastrophic changes in the vegetation of the Danube Delta most pronounced on the territory of Stentsivsko-Zhebryansky floodplain, the Zhebryansk seaside ridge, Yermakov, Mashenka, Katenka, Kislytsky, Maly and Velyky Tataru, Velyky and Maly Dallery islands, in the area of Izmail and Ust-Dunaisk ports, the floodplain zone near the city of Kilya, and most of the floodplain terrace from Vylkovo to Izmail. The most endangered are meadow and psammophyte vegetation with representatives of the psammophilous-littoral neoendemic floristic complex. The floodplain forests are also subject to digression. Only aquatic ecosystems are more labile to hydrological changes.
Conclusion. A strategy for optimizing the vegetation cover of the delta is offered. The established patterns can be used to develop methods for assessing the risks for ecosystems, and the intensity of their degradation to ensure effective protection, management, and sustainable use of the biodiversity in the delta areas of the Northern Black Sea region.
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Anastasiu, P., Negrean, G., Samoilă, C., Memedemin, D., & Cogălniceanu, D. (2011). A comparative analysis of alien plant species along the Romanian Black Sea coastal area. The role of harbours. Journal of Coastal Conservation, 15(4), 595-606. doi:10.1007/s11852-011-0149-0 Crossref ● Google Scholar | ||||
| ||||
Craft, C. (2016). Creating and restoring wetlands: from theory to practice. Amsterdam, Netherlands: Elsevier. doi:10.1016/c2012-0-03647-2 Crossref ● Google Scholar | ||||
| ||||
Diachenko, T. M. (2010). Dinamika visshei vodnoi rastitelnosti vodoemov Kiliiskoi delti Dunaya v svyazi s antropogennim vozdeistviem [Dynamics of the aquatic vegetation in water reservoirs of the Kiliya arm of the Danube Delta under anthropogenic impact]. Hydrobiological Journal, 46(5), 30-42. (In Russian) Google Scholar | ||||
| ||||
Didukh, Ya. P. (Ed.). (2009a). Chervona knyha Ukrainy. Roslynnyi svit [Red Data Book of Ukraine. Plant world]. Kyiv: Globalconsulting. (In Ukrainian) Google Scholar | ||||
| ||||
Didukh, Ya. P. (Ed.). (2009b). Zelena knyha Ukrainy [Green Data Book of Ukraine]. Kyiv: Alterpress. Retrieved from http://www.irbis-nbuv.gov.ua/E_LIB/PDF/ukr0002042.pdf (In Ukrainian) Google Scholar | ||||
| ||||
Doroftei, M., Mierlă, M., & Lupu, G. (2011). Approaches to habitat disturbance in the Danube Delta Biosphere Reserve. SCSB Vegetal Biology, 20(1), 45-56. Google Scholar | ||||
| ||||
Dubyna, D. V., Shelyag-Sosonko, Yu. R., Zhmud, O. I., Zhmud, M. E., Dvoretskyi, T. V., Dziuba, T. P., & Tymoshenko, P. A. (2003). Dunaiskyi biosfernyi zapovidnyk. Roslynnyi svit [Danube Biosphere Reserve. The plant world]. Kyiv: Phytosociocenter. (In Ukrainian) Google Scholar | ||||
| ||||
Dziuba, T. P. (1996). The syntaxonomy of vegetation of the rice system of Ukraine. Ukrainian Phytosociological Collection. Series A, 3, 92-104. (In Ukrainian) Google Scholar | ||||
| ||||
Godeanu, M. (1976). Consideraţii generale asupra principalelor asociaţii acvatice şi palustre din Delta Dunării în condiţii naturale şi amenajate. Peuce, 5, 57-99. Google Scholar | ||||
| ||||
Klokov, V. M., & Diachenko, T. M. (1993). Vysshaya vodnaya rastitelnost [Higher aquatic vegetation]. In: V. D. Romanenko (Ed.), Gidroekologiya ukrainskogo uchastka Dunaya i sopredelnykh vodoyemov [Hydroecology of the Ukrainian section of the Danube and adjacent reservoirs] (pp. 41-77). Kiev: Naukova dumka. (In Russian) Google Scholar | ||||
| ||||
Liashenko, A. V., Zorina-Sakharova, K. Y., Pohorielova, M. S., Sereda, T. M., Abramyuk, І. І., & Trylis, V. V. (2022). Impact of hydrotechnical construction on aquatic ecosystems of the Kiliia branch of the Danube Delta. Biosystems Diversity, 30(4), 359-371. doi:10.15421/012235 Crossref ● Google Scholar | ||||
| ||||
Marin, G., & Schneider, E. (Eds.). (1997). Ecological restoration in the Danube Delta biosphere reserve/Romania. Babina and Cernovca islands. Tulcea, Romania: ICPDD & WWF-Auen-Institut. Google Scholar | ||||
| ||||
Mazur, S. I., Nedashkivskyi, V. V., Peychev, & D. G. (2011). Izmailskyi raion [Izmail district]. In: I. M. Dziuba, A. I. Zhukovsky, M. G. Zheleznyak (Eds.), Entsyklopediia suchasnoi Ukrainy [Encyclopedia of Modern Ukraine]. Kyiv: NAS of Ukraine, Institute of Encyclopedic Research of the NAS of Ukraine. Retrieved from https://esu.com.ua/article-13824 (In Ukrainian) | ||||
| ||||
Mosyakin, S. L., & Fedoronchuk, M. M. (1999). Vascular plants of Ukraine. A nomenclatural hecklist. Kiev: M. G. Kholodny Institute of Botany, National Academy of Sciences of Ukraine. Google Scholar | ||||
| ||||
Newton, A., Icely, J., Cristina, S., Brito, A., Cardoso, A. C., Colijn, F., Riva, S. D., Gertz, F., Hansen, J. W., Holmer, M., Ivanova, K., Leppäkoski, E., Canu, D. M., Mocenni, C., Mudge, S., Murray, N., Pejrup, M., Razinkovas, A., Reizopoulou, S., … Zaldívar, J.-M. (2014). An overview of ecological status, vulnerability and future perspectives of European large shallow, semi-enclosed coastal systems, lagoons and transitional waters. Estuarine, Coastal and Shelf Science, 140, 95-122. doi:10.1016/j.ecss.2013.05.023 Crossref ● Google Scholar | ||||
| ||||
Oosterberg, W., Staras, M., Bogdan, L., Buijse, A. D., Constantinescu, A., Coops, H., Hanganu, J., Ibelings, B. W., Menting, G. A. M., Nãvodaru, I., & Török, L. (2000). Ecological gradients in the Danube Delta lakes: present state and man-induced changes (pp. 95-109). Lelystad, Netherlands: RIZA rapport 2000.015. Google Scholar | ||||
| ||||
Protopopova, V. V. (1991). Sinantropnaya flora Ukraini i puti yee razvitiya [Synanthropic flora of Ukraine and methods of its development]. Kyiv: Naukova dumka. (In Russian) Google Scholar | ||||
| ||||
Protopopova, V. V., Mosyakin, S. L., & Shevera, M. V. (2002). Fitoinvazii v Ukraini yak zahroza bioriznomanittiu: suchasnyi stan i zavdannia na maibutnie [Phytoinvasions in Ukraine as a threat to biodiversity: current status and challenges for the future]. Kyiv: M. G. Kholodny Institute of Botany NAS of Ukraine. Retrieved from https://www.botany.kiev.ua/doc/shevera38.pdf (In Ukrainian) Google Scholar | ||||
| ||||
Rewilding Danube Delta. (2022). The Danube Delta was recognized as the European flagship of nature restoration at the COP15. Retrieved from https://rewilding-danube-delta.com/uk/news/danube-deltarecognised-as-role-model-for-nature-restoration-at-cop-15 (accessed on 13.12.2022) | ||||
| ||||
Shelyag-Sosonko, Yu. R., & Dubyna, D. V. (1984). Gosudarstvennii zapovednik "Dunaiskie plavni" [Reserve "Wetlands of the Danube"]. Kyiv: Naukova dumka. (In Russian) Google Scholar | ||||
| ||||
Starodubtsev, V. M., & Ladyka, M. M. (2021). Land area increase in Ukrainian part of the Danube Delta. Scientific Reports of the National University of Life and Environmental Sciences of Ukraine, 17(6), 41-47. doi:10.31548/dopovidi2021.06.003 Crossref ● Google Scholar | ||||
| ||||
Syvitski, J. P. M., Kettner, A. J., Overeem, I., Hutton, E. W. H., Hannon, M. T., Brakenridge, G. R., Day, J., Vörösmarty, C., Saito, Y., Giosan, L., & Nicholls, R. J. (2009). Sinking deltas due to human activities. Nature Geoscience, 2(10), 681-686. doi:10.1038/ngeo629 Crossref ● Google Scholar | ||||
| ||||
Trifanov, C., Romanescu, G., Tudor, M., Grigoras, I., Doroftei, M., Silviu, C., & Mierla, M. (2018). Anthropizsation degree of coastal vegetation areas in Danube Delta biosphere reserve. Journal of Environmental Protection and Ecology, 19(2), 539-546. Google Scholar |
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