Otwarty dostęp

Current distribution and modeling of potential distribution of Elodea nuttallii (Planch.) H. St. John at the territory of Ukraine and Europe


Zacytuj

Alahuta, J., Heino, J., Luoto, M., 2011. Climate change and the future distributions of aquatic macrophytes across boreal catchments. Journal of Biogeography, 38: 383–393. https://doi.org/10.1111/j.1365-2699.2010.02412.x Search in Google Scholar

Angelstein, S., Schubert, H., 2009. Light acclimatisation of Elodea nuttallii grown under ambient DIC conditions. Plant Ecology, 202 (1): 91–101. https://doi.org/10.1007/s11258-008-9500-4 Search in Google Scholar

Andelkovic, A.A., Živkovic, M.M., Cvijanovic, D.Lj., Novkovic, M.Z., Marisarisav, D.P., Pavlovic, D.M., Radulovic, S.B., 2016. The contemporary records of aquatic plants invasion through the Danubian floodplain corridor in Serbia. Aquatic Invasions, 11 (4): 381–395. http://dx.doi.org/10.3391/ai.2016.11.4.04 Search in Google Scholar

Barrat-Segretain, M.-H., 2001. Invasive species in the Rhône River floodplain (France): replacement of Elodea canadensis Michaux by E. nuttallii St. John in two former river channels. Archiv für Hydrobiologie, 152 (2): 237–251. https://doi.org/10.1127/archiv-hydrobiol/152/2001/237 Search in Google Scholar

Best, E.P.H., Woltman, H., Jacobs, F.H.H., 1996. Sediment-related growth limitation of Elodea nuttallii as indicated by a fertilization experiment. Freshwater Biology, 36 (1): 33–44. https://doi.org/10.1046/j.1365-2427.1996.d01-474.x Search in Google Scholar

Boucher, O., Servonnat, J., Albright, A.L., Aumont, O., Balkanski, Y., Bastrikov, V., Bekki, S., Bonnet, R., Bony, S., Bopp, L., Braconnot, P., Brockmann, P., Cadule, P., Caubel, A., Cheruy, F., Codron, F., Cozic, A., Cugnet, D., D’Andrea, F., Davini, P., de Lavergne, C., Denvil, S., Deshayes, J., Devilliers, M., Ducharne, A., Dufresne, J.L., Dupont, E., Éthé, C., Fairhead, L., Falletti, L., Flavoni, S., Foujols, M.A., Gardoll, S., Gastineau, G., Ghattas, J., Grandpeix, J.Y., Guenet, B., Guez, L.E., Guilyardi, E., Guimberteau, M., Hauglustaine, D., Hourdin, F., Idelkadi, A., Joussaume, S., Kageyama, M., Khodri, M., Krinner, G., Lebas, N., Levavasseur, G., Lévy, C., Li, L., Lott, F., Lurton, T., Luyssaert, S., Madec, G., Madeleine, J.B., Maignan, F., Marchand, M., Marti, O., Mellul, L., Meurdesoif, Y., Mignot, J., Musat, I., Ottlé, C., Peylin, P., Planton, Y., Polcher, J., Rio, C., Rochetin, N., Rousset, C., Sepulchre, P., Sima, A., Swingedouw, D., Thiéblemont, R., Traore, A. K., Vancoppenolle, M., Vial, J., Vialard, J., Viovy, N., Vuichard, N., 2020. Presentation and evaluation of the IPSL-CM6A-LR Climate Model. Journal of Advances in Modeling Earth Systems, 12: e2019MS002010. https://doi.org/10.1029/2019MS002010 Search in Google Scholar

Bubíková, K., Svitková, I., Svitok, M., Hrivnák, R., 2021. Invasive elodeas in Slovakia (Central Europe): distribution, ecology and effect on native macrophyte assemblages) and with other aquatic invasive macrophytes. Aquatic Invasions, 16 (4): 617–636. https://doi.org/10.3391/ai.2021.16.4.03 Search in Google Scholar

Butkuvienė, J., Kamaitytė-Bukelskienė, L., Naugžemys, D., Patamsytė, J., Sinkevičienė, Z., 2022. First records and molecular confirmation of invasive species Elodea nuttallii (Planch.) H.St.John, 1920 in Lithuania. Bio-Invasions Records, 11 (4): 1019–1030. https://doi.org/10.3391/bir.2022.11.4.20 Search in Google Scholar

Carbon brief, 2019. [cit. 2023-03-20]. https://www.carbon-brief.org/ Search in Google Scholar

Casper, S.J., Krausch, H.-D., 1981. Familie Hydrocharitaceae. Süßwasserflora von Mitteleuropa, 2/2: 186–207. Search in Google Scholar

Chambers, P.A., Lacoul, P., Murphy, K.J., Thomaz, S.M., 2007. Global diversity of aquatic macrophytes in freshwater. In Freshwater animal diversity assessment. Developments in Hydrobiology, vol. 198. Netherlands: Springer, p. 9–26. https://doi.org/10.1007/978-1-4020-8259-7_2 Search in Google Scholar

Chapman, V.J., Brown, J.M.A., Hill, C.F., Carr, J.L., 1974. Biology of excessive growth in the hydro-electric lakes of the Waikato River, New Zealand. Hydrobiologia, 44: 349–363. https://doi.org/10.1007/BF00036301 Search in Google Scholar

Chorna, H.А., Protopopova, V.V., Shevera, M.V., Fedoronchuck, М.М., 2006. Elodea nuttallii(Planch.) H. St. John (Hydrocharitaceae) – novyy dlya flory Ukrainy vyd [Elodea nuttallii (Planch.) H. St. John (Hydrocharitaceae) – a new alien species for the flora of Ukraine. Ukrainskyi Botanichnyi Zhurnal, 63 (3): 328–331. Search in Google Scholar

Cir, 2017. Commission Implementing Regulation (EU) 2017/1263 of 12 July 2017 updating the list of invasive alien species of Union concern established by Implementing Regulation (EU) 2016/1141 pursuant to Regulation (EU) No 1143/2014 of the European Parliament and of the Council. Official Journal of the European Union, L 182/37. Search in Google Scholar

Climate change and security in Eastern Europe: Republic of Belarus, Republic of Moldova, Ukraine. Regional Assessment Report, 2016. 110 p. Search in Google Scholar

Cook, C.D.K., Urmi-König, K., 1985. A revision of the genus Elodea (Hydrocharitaceae). Aquatic Botany, 21 (2): 111–156. https://doi.org/10.1016/0304-3770(85)90084-1 Search in Google Scholar

Davis, M.A., 2009. Invasion biology. Oxford: Oxford University Press. 264 p. Search in Google Scholar

Davydova, A.O., Orlova-Hudim, K.S., Shevchenko, I.V., Davydov, D.A., Dzerkal, V.M., 2021. The first record of Elodea nuttallii (Hydrocharitaceae) in the Lower Dnipro River. Ukrainian Botanical Journal, 78 (4): 303–307. https://doi.org/10.15407/ukrbotj78.04.303 Search in Google Scholar

Dendène, M.A., Rolland, T., Trémolières, M., Carbiener, R., 1993. Effect of ammonium ions on the net photosynthesis of three species of Elodea. Aquatic Botany, 46 (3–4): 301–315. https://doi.org/10.1016/0304-3770(93)90010-T Search in Google Scholar

Douville, H., Qasmi, S., Ribes, A., Bock, O., 2022. Global warming at near-constant tropospheric relative humidity is supported by observations. Communications Earth & Environment, 3 (1): 237. https://doi.org/10.1038/s43247-022-00561-z Search in Google Scholar

Dubyna, D.V., Dziuba, T.P., Dvoretzkiy, T.V., Zolotariova, O.K., Taran, N.Yu., Mosyakin, A.S., Iemelianova, S.M., Kazarinova, G.O., 2017. Invasive aquatic macrophytes of Ukraine. Ukrainian Botanical Journal, 74 (3): 248–262. https://doi.org/10.15407/ukrbotj74.03.248 Search in Google Scholar

Dudgeon, D., 2020. Freshwater biodiversity: status, threats and conservation. Ecology, Biodiversity and Conservation. Cambridge: Cambridge University Press. https://doi.org/10.1017/9781139032759 Search in Google Scholar

Duenas, M.A., 2022. Elodea nuttallii (Nuttalls waterweed). CABI Compendium. [cit. 2023-05-04]. https://doi.org/10.1079/cabicompendium.20761 Search in Google Scholar

European Parliament, Council of the European Union, 2014. Regulation (EU) No 1143/2014 of the European Parliament and of the Council of 22 October 2014 on the prevention and management of the introduction and spread of invasive alien species. Official Journal of the European Union, 317: 35–55. Search in Google Scholar

Fleming, J.P., Dibble, E.D., 2015. Ecological mechanisms of invasion success in aquatic macrophytes. Hydrobiologia, 746(1):23–37. https://doi.org/10.1007/s10750-014-2026-y Search in Google Scholar

Fox-Kemper, B., Hewitt, H.T., Xiao, C., Aðalgeirsdóttir, G., Drijfhout, S.S., Edwards, T.L., Golledge, N.R., Hemer, M., Kopp, R.E., Krinner, G., Mix, А., Notz, D., Nowicki, S., Nurhati, I.S., Ruiz, L., Sallée, J.-B., Slangen, A.B.A., Yu, Y. 2021. Ocean, cryosphere and sea level change. In Masson-Delmotte, V., Zhai, P., Pirani, A., Connors, S.L., Péan, C., Berger, S., Caud, N., Chen, Y., Goldfarb, L.M., Gomis, I., Huang, M., Leitzell, K., Lonnoy, E., Waterfield, T., Yelekçi, O., Yu, R., Zhou, B. (eds.). Climate change 2021: the physical science basis. Contribution of Working Group I to the Sixth assessment report of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom and New York, NY, USA: Cambridge University Press, p. 1211–1362. Search in Google Scholar

Gbif.org. (24 May 2023). GBIF Occurrence Download. https://doi.org/10.15468/dl.52mrt9 Search in Google Scholar

Global climate and weather data, 2022. [cit. 2023-03-20]. https://www.worldclim.org/data/index.html Search in Google Scholar

Greulich, S., Trémolières, M., 2006. Present distribution of the genus Elodea in the Alsatian Upper Rhine floodplain (France) with a special focus on the expansion of Elodea nuttallii St. John during recent decades. In Caffrey, J.M., Dutartre, A., Haury, J., Murphy, K.J., Wade, P.M. (eds). Macrophytes in aquatic ecosystems: from biology to management. Developments in Hydrobiology, vol. 190. Dordrecht: Springer, p. 249–255. https://doi.org/10.1007/978-1-4020-5390-0_36 Search in Google Scholar

Gutiérrez, J.M., Ranasinghe, R., Ruane, A.C., Vautard, R., 2021. IPCC. Annex VI: Climatic impact-driver and extreme indices. In Climate change 2021: the physical science basis. Contribution of Working Group I to the Sixth assessment report of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom and New York, NY, USA: Cambridge University Press, p. 2205–2214. Search in Google Scholar

Gutjahr, O., Putrasahan, D., Lohman, K., Jungclaus, J.H., Von Storch, J.S., Bruggemmann, N., Haak, H., Stossel, A., 2019. Max Planck Institute Earth System Model (MPI-ESM1.2) for the High-Resolution Model Intercomparison Project (HighResMIP). Geoscientific Model Development, 12: 3241–3281. https://doi.org/10.5194/gmd-12-3241-2019 Search in Google Scholar

Harold, St.J., 1965. Monograph of the genus Elodea. Part 4. The species of Eastern and Central North America. Rhodora, 67: 1–35. Search in Google Scholar

Havel, J.E., Lee, C.E., Zanden, M.J.V., 2005. Do reservoirs facilitate invasions into landscapes? Bioscience, 55: 518–525. Search in Google Scholar

Hoffmann, M.A., Benavent G.A., Raeder U., Melzer A., 2013. Experimental weed control of Najas marina ssp. intermedia and Elodea nuttallii in lakes using biodegradable jute matting. Journal of Limnology, 72 (3): 485–493. Search in Google Scholar

Ikusima, I., 1970. Ecological studies on the productivity of aquatic plant communities. IV. Light condition and community photosynthesic production. Shokubutsugaku Zasshi, 83 (987–988): 330–341. https://doi.org/10.15281/jplantres1887.83.330 Search in Google Scholar

Ipbesthe Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services 2023. [cit. 2023-03-20]. https://www.ipbes.net/ Search in Google Scholar

Josefsson, M., 2011. NOBANIS – Invasive Alien Species Fact Sheet – Elodea canadensis, Elodea nuttallii and Elodea callitrichoides. Online database of the European Network on Invasive Alien Species. Search in Google Scholar

Kaminski, D., 2010. Elodea nuttallii (Hydrocharitaceae) nowy gatunek w wodach Wisły [Elodea nuttallii (Hydro-charitaceae) a new species in Vistula River]. Fragmenta Floristica and Geobotanica Polonica, 17 (1): 182–184. Search in Google Scholar

Kelly, R., Leach K., Cameron, A., Maggs, C.A., Reid, N., 2014. Combining global climate and regional landscape models to improve prediction of invasion risk. Diversity and Distributions, 20: 1–11. https://doi.org/10.1111/ddi.12194 Search in Google Scholar

Király, G., Steták, D., Bányász, Á., 2008. Spread of invasive macrophytes in Hungary. Neobiota, 7: 123–130. Search in Google Scholar

Kunii, H., 1984. Seasonal growth and profile structure development of Elodea nuttallii (Planch.) St. John in pond Ojaga-Ike, Japan. Aquatic Botany, 18 (3): 239–247. https://doi.org/10.1016/0304-3770(84)90065-2 Search in Google Scholar

Lobato de Magalhães, T., Murphy, K., Efremov, A., Davidson, T.A., Molina-Navarro, E., Wood, K.A., Tapia-Grimaldo, J., Hofstra, D., Fu, H., Ortegón-Aznar, I., 2023. How on Earth did that get there? Natural and human vectors of aquatic macrophyte global distribution. Hydrobiologia, 850 (7): 1515–1542. https://doi.org/10.1007/s10750-022-05107-0 Search in Google Scholar

Lonsdale, W.F., 1999. Global patterns of plant invasions and the concept of invasibility. Ecology, 80: 1522–1536. Search in Google Scholar

Maxent software, 2023. [cit. 24-08-2022]. https://biodiversityinformatics.amnh.org/open_source/maxent/ Search in Google Scholar

Moorhouse, T.P., Macdonald, D.W., 2015. Are invasives worse in freshwater than terrestrial ecosystems? WIREs Water, 2 (1): 1–8. https://doi.org/10.1002/wat2.1059 Search in Google Scholar

Murphy, K., Efremov, A., Davidson, T.A., Molina-Navarro, E., Fidanza, K., Crivelari Betiol, T.C., Chambers, P., Tapia Grimaldo, J., Varandas Martins, S., Springuel, I., Kennedy, M., Mormul, R.P., Dibble, E., Hofstra, D., Lukács, B.A., Gebler, D., Baastrup-Spohr, L., Urrutia-Estrada, J., 2019. World distribution, diversity and endemism of aquatic macrophytes. Aquatic Botany, 158: 103–127. https://doi.org/10.1016/j.aquabot.2019.06.006 Search in Google Scholar

Newman, J.R., 2009. Information sheet 25: Elodea nuttallii, Nuttalls Pondweed. Centre for Ecology and Hydrology. 2 p. [cit. 2023-05-16]. https://nora.nerc.ac.uk/id/eprint/10425/2/N010425_leaflet.pdf Search in Google Scholar

Ozimek, T., Donk, E.V., Gulati, R.D., 1993. Growth and nutrient uptake by two species of Elodea in experimental conditions and their role in nutrient accumulation in a macrophyte-dominated lake. Hydrobiologia, 251: 13–18. Search in Google Scholar

Phillips, S.J., 2017. A brief tutorial on Maxent. 2022. [cit. 2022-08-24]. http://biodiversityinformatics.amnh.org/open_source/maxent/ Search in Google Scholar

Phillips, S.J., Anderson, R.P., Schapire, R.E., 2006. Maximum entropy modeling of species geographic distributions. Ecological Modelling, 190 (3–4): 231–259. https://doi.org/10.1016/j.ecolmodel.2005.03.026 Search in Google Scholar

Preston, C.D., Croft, J.M., 2014. Aquatic plants in Britain and Ireland. Colchester: Harley Books for the Environment Agency, Institute of Terrestrial Ecology and the Joint Nature Conservation Committee. 365 p. Search in Google Scholar

Prokopuk, M., Zub, L., 2020. Urban ecosystems as locations of distribution of alien aquatic plants. Folia Oecologica, 47 (2): 159–167. https://doi.org/10.2478/foecol-2020-0019 Search in Google Scholar

Prokopuk, M.S., Zub L.M., 2019. Peculiarities of species of Elodea (Hydrocharitaceae) in the aquatic ecosystems of Ukraine (East Europe). Phytologia Balcanica, 25 (3): 381–386. Search in Google Scholar

Richards, C.L., Bossdorf, O., Muth, N.Z., Gurevitch, J., Pigliucci, M., 2006. Jack of all trades, master of some? On the role of phenotypic plasticity in plant invasions. Ecology Letters, 9 (8): 981–993. https://doi.org/10.1111/j.1461-0248.2006.00950.x Search in Google Scholar

Ridley, J., Menary, M., Kuhlbrodt, T., Andrews, M., Andrews, T., 2018. MOHC HadGEM3-C31-LL model output prepared for CMIP6 CMIP. Version 20230602. Earth System Grid Federation. https://doi.org/10.22033/ESGF/CMIP6.419 Search in Google Scholar

Seneviratne, S.I., Zhang, X., Adnan, M., Badi, W., Dereczynski, C., Di, L.A., Ghosh, S., Iskandar, I., Kossin, J., Lewis, S., Otto, F., Pinto, I., Satoh, M., Vicente-Serrano, S.M., Wehner, M., Zhou, B., 2021. Weather and climate extreme events in a changing climate. In Masson-Delmotte, V., Zhai, P., Pirani, A., Connors, S.L., Péan, C., Berger, S., Caud, N., Chen, Y., Goldfarb, L., Gomis, M.I., Huang, M., Leitzell, K., Lonnoy, E., Matthews, J.B.R., Maycock, T.K., Waterfield, T., Yelekçi, O., Yu, R., Zhou, B. (eds.). Climate change 2021: the physical science basis. Contribution of Working Group I to the Sixth assessment report of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom and New York, NY, USA: Cambridge University Press, p. 1513–1766. Search in Google Scholar

Simpson, D.A., 1990. Displacement of Elodea canadensis Michx by Elodea nuttallii (Planch.) H. St John in the British Isles. Watsonia, 18 (2): 173–177. Search in Google Scholar

Steen, B., Cardoso, A.C., Tsiamis, K., Nieto, K., Engel, J., Gervasini, E., 2019. Modelling hot spot areas for the invasive alien plant Elodea nuttallii in the EU. Management of Biological Invasions, 10 (1): 151–170. https://doi.org/10.3391/mbi.2019.10.1.10 Search in Google Scholar

Strayer, D.L., 2010. Alien species in fresh waters: ecological effects, interactions with other stressors, and prospects for the future. Freshwater Biology, 55: 152–174. https://doi.org/10.1111/j.1365-2427.2009.02380.x Search in Google Scholar

Sutherst, R.W., 2003. Prediction of species geographical ranges. Journal of Biogeography, 30 (6): 805–816. https://doi.org/10.1046/j.1365-2699.2003.00861.x Search in Google Scholar

Tasker, S.J.L., Foggo, A., Bilton, D.T., 2022. Quantifying the ecological impacts of alien aquatic macrophytes: a global meta‐analysis of effects on fish, macroinvertebrate and macrophyte assemblages. Freshwater Biology, 67 (11): 1847–1860. https://doi.org/10.1111/fwb.13985 Search in Google Scholar

Thiébaut, G., 2005. Does competition for phosphate supply explain the invasion pattern of Elodea species? Water Research, 39 (14): 3385–3393. https://doi.org/10.1016/j.watres.2005.05.036 Search in Google Scholar

Thiébaut, G., Muller, S., 1999. A macrophyte communities sequence as an indicator of eutrophication and acidification levels in weakly mineralised streams in north-eastern France. Hydrobiologia, 410: 17–24. https://doi.org/10.1023/A:1003829921752 Search in Google Scholar

Thiébaut, G., Rolland, T., Robach, F., Tremolieres, M., Muller, S., 1997. Quelques conséquences de l’introduction de deux espèces de macrophytes, Elodea canadensis Michaux et Elodea nuttallii St. John, dans les écosystèmes aquatiques continentaux : exemple de la plaine d’Alsace et des Vosges du Nord (Nord-Est de la France) [Some consequences of the introduction of two macrophyte species, Elodea canadensis Michaux and Elodea nuttallii St. John, in Continental aquatic ecosystems: example of two areas in the North-East of France : Alsace Plain and Northern Vosges]. Bulletin Français de la Pêche et de la Pisciculture, 344/345: 441–452. https://doi.org/10.1051/kmae:1997040 Search in Google Scholar

Tilman, D., 2004. Niche tradeoffs, neutrality, and community structure: a stochastic theory of resource competition, invasion, and community assembly. Proceedings of the National Academy of Sciences, 101 (30): 10854–10861. https://doi.org/10.1073/pnas.0403458101 Search in Google Scholar

Van Donk E., Otte, A., 1996. Effects of grazing by fish and waterfowl on the biomass and speciescomposition of sub merged macrophytes. Hydrobiologia, 340 (1–3): 285–290. Search in Google Scholar

Zehnsdorf, A., Hussner, A., Eismann, F., Rönicke, H., Melzer, A., 2015. Management options of invasive Elodea nuttallii and Elodea canadensis. Limnologica, 51: 110–117. https://doi.org/10.1016/j.limno.2014.12.010 Search in Google Scholar

Zhukinskiy, V.N., Kharchenko, T.A., Lyashenko, A.V., 2007. Adventive species and changes in the area of distribution of aboriginal hydrobionts in surface water bodies of Ukraine. Report I. Aquatic invertebrates. Hydrobiological Journal, 43 (2): 3–16. https://doi.org/10.1615/HydrobJ.v43.i2.10 Search in Google Scholar

eISSN:
1338-7014
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, other, Plant Science, Zoology, Ecology