Open Access

Invasive terrestrial plant species in the Romanian protected areas. A review of the geographical aspects

Folia Oecologica's Cover Image
Folia Oecologica
Special Issue: Invasive species in forest, agricultural and urban ecosystems

Cite

Aguilera, A., Alpert, P., Dukes, J.S., Harrington, R., 2010. Impacts of the invasive plant Fallopia japonica (Houtt.) on plant communities and ecosystem processes. Biological Invasions, 12: 1243–1252. doi: 10.1007/s10530-009-9543-z.10.1007/s10530-009-9543-zSearch in Google Scholar

Anastasiu, P., Negrean, G., 2005. Alien plants in Romania. Analele Ştiinţifice ale Universităţii “Alexandru Ioan Cuza” din Iaşi (Serie nouă). Secţiunea 2a. Biologie Vegetală, 51: 87–96.Search in Google Scholar

Anastasiu, P., Negrean, G., 2008. New alien plants to Romania. Analele Universităţii din Craiova. Seria Agricultură, Montanologie, Cadastru, 38: 1–10.Search in Google Scholar

Anastasiu, P., Negrean, G., Başnou, C., Sîrbu, C., Oprea, A., 2008. A preliminary study on the neophytes of wet-lands in Romania. In Rabitsch, W. Biological invasions – from ecology to conservation. Neobiota, 7. Berlin: Institute of Ecology of the TU Berlin, p. 181–191.Search in Google Scholar

Badalamenti, E., La Mantia, T., 2013. Stem-injection of herbicide for control of Ailanthus altissima (Mill.) Swingle: a practical source of power for drilling holes in stems. iForest: Biogeosciences and Forestry, 6 (3): 123–126.10.3832/ifor0693-006Search in Google Scholar

Bax, N., Williamson, A., Aguero, M., Gonzalez, E., Geeves, W., 2003. Marine invasive alien species: a threat to global biodiversity. Marine Policy, 27: 313–323.10.1016/S0308-597X(03)00041-1Search in Google Scholar

Beerling, D.J., 1991. The testing of cellular concrete revetment blocks resistant to growths of Reynoutria japonica Houtt. (Japanese knotweed). Water Reserach, 25: 495–498.10.1016/0043-1354(91)90088-8Search in Google Scholar

Callaway, R.M., Ridenour, W.M., 2004. Novel weapons: invasive success and the evolution of increased competitive ability. Frontiers in Ecology and the Environment, 2 (8): 436–443. https://doi.org/10.1890/1540-9295(2004)002[0436:NWISAT]2.0.CO;210.1890/1540-9295(2004)002[0436:NWISAT]2.0.CO;2Search in Google Scholar

Charles, H., Dukes, J.S., 2006. Impacts of invasive species on ecosystem services in ecological studies. Biological Invasions, 193: 9–15.Search in Google Scholar

Ciocârlan, V. (coord.), 1988–1990. Flora ilustrată a României. Vol. 1, Vol. 2 [Illustrated flora of Romania]. Bucureşti: Editura Ceres. 897 p.Search in Google Scholar

Ciocârlan, V., 2000. Flora ilustrată a României: Pteridophyta et Spermatophyta [Illustrated flora of Romania]. 2. ed. Bucureşti: Editura Ceres. 1138 p.Search in Google Scholar

Ciocârlan, V., 2009. Flora ilustrată a Romaniei: Pteridophyta et Spermatophyta [Illustrated flora of Romania]. 3. ed. Bucureşti: Editura Ceres. 1141 p.Search in Google Scholar

De Poorter, M., Pagad, S., Ullah, M.I., 2007. Invasive alien species and protected areas: a scoping report. Part I. Scoping the scale and nature of invasive alien species threats to protected areas, impediments to IAS management and mean to address those impediments.[online]. Produced for the World Bank as a contribution to the Global Invasive Species Programme (GISP). [cit. 2020-03-30]. http://www.issg.org/pdf/publications/gisp/resources/ias_protectedareas_scoping_i.pdf.Search in Google Scholar

Dihoru, G., 2004. Invasive plants in Romania’s flora. Analele Universităţii din Craiova, 9 (45): 73–82.Search in Google Scholar

Ditomaso, J.M, Brooks, M.L, Allen, E.B, Minnich, R., Rice, P.M, Kyser, G.B., 2006. Control of invasive weeds with prescribed burning. Weed Technology, 20: 535–548. https://doi.org/10.1614/WT-05-086R1.110.1614/WT-05-086R1.1Search in Google Scholar

Doroftei, M., 2009a. Chorology of Amorpha fruticosa in Danube Delta. Romanian Journal of Plant Biology, 54 (1): 61–67.Search in Google Scholar

Doroftei, M., 2009b. Ecology of some alien plant species in Danube Delta. Ovidius University Annals of Natural Sciences, Biology – Ecology Series, 9 (1): 33–40.Search in Google Scholar

Doroftei, M., Anastasiu, P., 2014. Potential impacts of climate change on habitats and their effects on invasive plant species in Danube Delta Biosphere Reserve, Romania. In Rannow, S., Neubert, M. (eds). Managing protected areas in Central and Eastern Europe under climate change. Dordrecht: Springer, p. 267–278.10.1007/978-94-007-7960-0_18Search in Google Scholar

Doroftei, M., Grigorescu, I., Dumitraşcu, M., Kucsicsa, G., 2016. Key indicators in assessing of invasive terrestrial plant species in Romanian protected areas. In Dumitraşcu, M., Grigorescu, I. (eds). Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Român, p. 64–74.Search in Google Scholar

Doroftei, M., Kucsicsa, G., Grigorescu, I., Dumitraşcu, M., Ferus, P., Herlo, G., Năstase, M., 2016. Linkages between ecological features and Amorpha fruticosa (mill.) occurrence in selected protected areas from Romania and Slovakia. Preliminary results. In Ries C., Krippel, Y. (eds), 2016. Biological invasions: interactions with environmental change. Book of abstracts. NEOBIOTA 2016 – 9th international conference on biological invasions. Vianden, Luxembourg, 14–16 September 2016. Luxembourg: Fondation faune-flore, p. 142.Search in Google Scholar

Dumitraşcu, M., Grigorescu, I. (eds), 2016. Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Române. 155 p.Search in Google Scholar

Dumitraşcu, M., Grigorescu, I., Doroftei, M., Kucsicsa, G., Mierlă, M., Dragotă, C., Năstase, M., 2013. Amorpha fruticosa in three wetland areas: Danube Delta Biosphere Reserve, Comana and Mureş Floodplain Natural Parks. International Multidisciplinary Scientific Geo-Conference: SGEM: Surveying Geology & Mining Ecology Management, 1: 113–124.10.5593/SGEM2013/BE5.V1/S20.016Search in Google Scholar

Dumitraşcu, M., Grigorescu, I., Kuscicsa, G., Doroftei, M., Năstase, M., Dragotă, C.S., 2014. Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Romanian Journal of Geography, 58 (2): 145–160.Search in Google Scholar

Dumitraşcu, M., Grigorescu, I., Kucsicsa, G., Dragotă, C.S., Năstase, M., 2011. Non-native and native invasive terrestrial plant species in Comana Natural Park. Case-studies: Amorpha fruticosa and Crategus monogyna. Romanian Journal of Geography, 55 (2): 81–89.Search in Google Scholar

Dumitraşcu, M., Kucsicsa, G., Grigorescu, I., Dragotă, C.S., Năstase, M., 2012. Invasive terrestrial plant species in the Romanian protected areas. Case study: Fallopia japonica in Maramureş Mountains Natural Park. Geographical Phorum, 11 (1): 45–53.10.5775/fg.2067-4635.2012.031.iSearch in Google Scholar

Elakowich, S.D., Wooten, J.W., 1995. Allelopathyc woody plants I. Abies alba through Lyonia lucida. Allelopathy Journal, 2: 117–146.Search in Google Scholar

Fenesi, A., Ruprecht, E.K., Vincze, E., 2009. Aggressively spreading exotic plant species in Romania. In Rakosy, L., Momeu, L. (eds). Neobiota din Romania. Cluj-Napoca: Presa Universitară Clujeană, p. 55–65.Search in Google Scholar

Feret, P.P., 1985. Ailanthus: variation, cultivation, and frustration. Journal of Arboriculture, 11 (12): 361–368.10.48044/jauf.1985.077Search in Google Scholar

Gallardo, B., 2014. Europe’s top 10 invasive species: relative importance of climatic, habitat and socio-economic factors. Ethology, Ecology & Evolution, 26 (2–3): 130–151.10.1080/03949370.2014.896417Search in Google Scholar

Goslee, S.C, Debra, P.C, Peters, D.P.C, Beck, G.K., 2006. Spatial prediction of invasion success across heterogeneous landscapes using an individual-based model. Biological Invasions, 8 (2): 193–200.10.1007/s10530-004-2954-ySearch in Google Scholar

Grigorescu, I., Dumitraşcu, M., Kucsicsa, G., Doroftei, M., Năstase, M., Dragotă, C.S., 2016a. Predicting the potential distribution of Ailanthus altissima invasive terrestrial plant species in Măcin Mountains National Park (Romania). In Koulov, B., Zhelezov, G. (eds). Sustainable development in mountain regions. Cham: Springer International Publishing, p. 159-172.10.1007/978-3-319-27905-3_12Search in Google Scholar

Grigorescu, I., Kucsicsa, G., Dumitraşcu, M., Doroftei, M., 2016b. Assessing invasive terrestrial plant species in selected protected areas in Romania. A geographical approach. In Dendrologické dni v Arboréte Mlyňany SAV 2016: dreviny v meniacom sa prostredí. Vieska nad Žitavou: Arborétum Mlyňany SAV, detašované pracovisko Ústavu ekológie lesa SAV Zvolen, 2016, p. 113–120.Search in Google Scholar

Grigorescu, I., Kucsicsa, G., Dumitraşcu, M., Năstase, M., Dragotă, C.S., 2016c. Potential distribution of Invasive Terrestrial Plant Species (ITPS) in the Romanian protected areas. ITPS in Comana Natural Park. In Dumitraşcu, M., Grigorescu, I. (eds). Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Român, p. 81–86.Search in Google Scholar

Hijmans, R.J., Graham, C.H., 2006. The ability of climate envelope models to predict the effect of climate change on species distributions. Global Change Biology, 12: 2272–2281.10.1111/j.1365-2486.2006.01256.xSearch in Google Scholar

Hulme, P.E., 2009. Trade, transport and trouble: managing invasive species pathways in an era of globalization. Journal of Applied Ecology, 46: 10–18.10.1111/j.1365-2664.2008.01600.xSearch in Google Scholar

Hulme, P.E., Nentwig, W., Pyšek, P., Vilà, M., 2009. Biological invasions: benefits versus risks response. Science, 324: 1015–1016.10.1126/science.324_1015bSearch in Google Scholar

Kucsicsa, G., Grigorescu, I., Dumitraşcu, M., 2013. Integrated methodology for the assessment of invasive terrestrial plant species potential distribution in the Romanian protected areas. A GIS-based approach. In Recent advances in environmental science. Proceedings of 9th international conference on energy, environment, ecosystems and sustainable development (EEESD’13). Energy, environmental and structural engineering series, 7. WSEAS Press, p. 150–155.Search in Google Scholar

Kucsicsa, G., Grigorescu, I., Dumitraşcu, M., Năstase, M., 2016. Potential distribution of Invasive Terrestrial Plant Species (ITPS) in the Romanian protected areas. ITPS in Maramureş Mountains Natural Park. In Dumitraşcu, M., Grigorescu, I. (eds). Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Române, p. 87–92.Search in Google Scholar

Kucsicsa, G., Grigorescu, I., Dumitraşcu, M., Doroftei, M., Năstase, M., Gabriel, H., 2018. Assessing the potential distribution of invasive alien species Amorpha Fruticosa (mill.) in the Mureş Floodplain Natural Park (Romania) using GIS and logistic regression. Nature Conservation, 30: 41–67.10.3897/natureconservation.30.27627Search in Google Scholar

Lambdon, P., Pyšek, P., Basnou, C., Hejda, M., Arianoutsou, M., Essl, F. Andriopoulos, P., 2008. Alien flora of Europe: species diversity, temporal trends, geographical patterns and research needs. Preslia, 80: 101–149.Search in Google Scholar

Loo, S.E., Mac Nally, R., O’Dowd, D.J., Thomson, J.R., Lake, P.S., 2009. Multiple scale analysis of factors influencing the distribution of an invasive aquatic grass. Biological Invasions, 11: 1903–1912.10.1007/s10530-008-9368-1Search in Google Scholar

Magyar, P., 1960. Alföldfásítás [Afforestation in Great Hungarian Plain]. Budapest: Akadémiai Kiadó, p. 86–104.Search in Google Scholar

Mack, M.C., D’Antonio, C.M., 1998. Impacts of biological invasions on disturbance regimes. Trends in Ecology & Evolution, 13 (5): 195–198.10.1016/S0169-5347(97)01286-XSearch in Google Scholar

Marian, M., Nicula, C., Mihaly-Cozmuta, L., Peter, A. Mihaly-Cozmuta, A., 2010. Participation of the indigenous vs. alien herbaceous species to the constitution of vegetal layer on the Bozânta Mare tailing ponds. Analele Universităţii din Oradea, Fascicula Biologie, 17 (1): 134–141.Search in Google Scholar

Mokany, K., Ferrier, S., 2010. Predicting impacts of climate change on biodiversity: a role for semi-mechanistic community-level modelling. Diversity and Distributions, 17: 374–380.10.1111/j.1472-4642.2010.00735.xSearch in Google Scholar

Niculescu, M., Făgăraş, M., Popescu, C., 2016. Diversity, distribution and ecology of the invasive alien plants in the Cotmeana Platform Protected Area, Romania. International multidisciplinary scientific geoconference: SGEM: Surveying Geology & Mining Ecology Management, 1: 247–253.Search in Google Scholar

Oprea, A., Sîrbu, C., Doroftei, M., 2011. New contributions to the flora of Romania. Analele Ştiinţifice ale Universităţii “Alexandru Ioan Cuza” din Iaşi (Serie nouă). Secţiunea 2a. Biologie Vegetală, 57: 79–90.Search in Google Scholar

Oprea, A., Sîrbu, C., Eliáš, P. Jun., Ferus, P., 2012. New data addition to the Romanian alien flora. Journal of Plant Development, 19: 141–156.Search in Google Scholar

Pearman, P.B., Guisan, A., Broennimann, O., Randin, C.F., 2008. Niche dynamics in space and time. Trends in Ecology & Evolution, 23: 149–158.10.1016/j.tree.2007.11.00518289716Search in Google Scholar

Pyšek, P., 2009. Fallopia japonica (Houtt.) Ronse Decr., Japanese knotweed (Polygonaceae, Magnoliophyta). In Daisie. Handbook of alien species in Europe. Invading Nature, 3. Berlin: Springer. 348 p.Search in Google Scholar

Pyšek, P., Hulme, P.E., 2005. Spatio-temporal dynamics of plant invasions: Linking pattern to process. Ecoscience, 12:302–315.10.2980/i1195-6860-12-3-302.1Search in Google Scholar

Pyšek, P., Jarošík, V., Hulme, P.E., Kühn, I., Wild, J., Arianoutsou, M., Bacher, S., Chiron, F., Didžiulis, V., Essl, F., Genovesi, P., Gherardi, F., Hejda, M., Kark, S., Lambdon, P.W., Desprez-Loustau, M.L., Nentwig, W., Pergl, J., Poboljšaj, K., Rabitsch, W., Roques, A., Roy, D.B., Shirley, S., Solarz, W., Vilà, M., Winter, M., 2010. Disentangling the role of environmental and human pressures on biological invasions across Europe. Proceedings of the National Academy of Sciences, 107 (27): 12157–12162. https://doi.org/10.1073/pnas.100231410710.1073/pnas.1002314107290144220534543Search in Google Scholar

Richardson, D.M., Pyšek, P., 2012. Naturalization of introduced plants: ecological drivers of biogeographical patterns. New Phytologist, 196: 383–396.10.1111/j.1469-8137.2012.04292.x22943470Search in Google Scholar

Rojas-Sandoval, J., Tremblay, R.L., Acevedo-Rodríguez, P., Díaz-Soltero, H., 2017. Invasive plant species in the West Indies: geographical, ecological, and floristic insights. Ecology and Evolution, 7 (13): 4522–4533.10.1002/ece3.2984549654728690783Search in Google Scholar

Sămărghițan, M., Oroian, S., Tănase, C., 2018. Contributions to the study of the alien and invasive species in some protected areas in Mureș County, Romania. Acta Horti Botanici Bucurestiensis, 45: 33–46.Search in Google Scholar

Sărăţeanu, V., 2010. Assessing the influence of Amorpha fruticosa L. invasive shrub on some grassland vegetation types from western Romania. Research Journal of Agricultural Science, 42 (1): 536–540.10.2478/v10025-012-0006-zSearch in Google Scholar

Săvulescu, T. (ed.), 1952–1976. Flora Republicii Populare Române – Flora Republicii Socialiste România. Vols 1–13. București: Editura Academiei Republicii Populare Române, Academia Republicii Socialiste România.Search in Google Scholar

Sîrbu, C. (ed.), Oprea, A., 2011. Plante adventive în flora Românei [Adventitious plants in the Romanian flora]. Iaşi: Editura “Ion Ionescu de la Brad”. 733 p.Search in Google Scholar

Sîrbu, C., Oprea, A., 2013. A new contribution on the vascular flora of Romania. Acta Horti Botanici Bucurestiensis, 40: 19–26.10.2478/ahbb-2013-0002Search in Google Scholar

Sîrbu, C., Oprea, A., Doroftei, M., 2016a. Management and control of invasive terrestrial plant species in Romania. In Dumitraşcu M., Grigorescu, I. (eds). Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Române, p. 103–112.Search in Google Scholar

Sîrbu, C., Oprea, A., Doroftei, M., 2016b. Invasive terrestrial plant species in Romania. In Dumitraşcu M., Grigorescu, I. (eds). Invasive terrestrial plant species in the Romanian protected areas. A geographical approach. Bucureşti: Editura Academiei Române, p. 17–29.Search in Google Scholar

Sîrbu, C., Oprea, A., Eliáš, P. Jun., Ferus, P., 2011. New contribution to the study of alien flora in Romania. Journal of Plant Development, 18: 121–134.Search in Google Scholar

Sîrbu, C., Oprea, A., Eliáš, P. Jun., Ferus, P., 2012. New data addition to the Romanian alien flora. Journal of Plant Development, 19: 141–156.Search in Google Scholar

Stănescu, V., Şofletea, N., Popescu O., 1997. Flora forestieră lemnoasă a României [Romania’s ligneous forest flora]. Bucureşti: Ceres. 452 p.Search in Google Scholar

Szigetvári, C., 2002. Initial steps in the regeneration of a floodplain meadow after a decade of dominance of an invasive transformer shrub, Amorpha fruticosa L. Tiscia, 33: 67–77.Search in Google Scholar

Traveset, A., Brundu, G., Carta, L., Mprezetou, I., Lamb-don, P., Manca, M., Suehs, C.M., 2008. Consistent performance of invasive plant species within and among islands of the Mediterranean basin. Biological Invasions, 10 (6): 847–858.10.1007/s10530-008-9245-ySearch in Google Scholar

Trifilo, P., Raimondo, F., Nardini, A., Lo Gullo, M.A., Salleo, S., 2004. Drought resistance of Ailanthus altissima: root hydraulics and water relations. Tree Physiology, 24 (1): 107–114.10.1093/treephys/24.1.10714652220Search in Google Scholar

Underwood, E.C., Klinger, R., Moore, P.E., 2004. Predicting patterns of non-native plant invasions in Yosemite National Park, California, USA. Diversity and Distributions, 10 (5–6): 447–459.10.1111/j.1366-9516.2004.00093.xSearch in Google Scholar

Vilà, M., Tessier, M., Suehs, C.M., Brundu, G., Carta, L., Galanidis, A., Lambdon, P., Manca, M., Médail, F., Moragues, E., Traveset, A., Troumbis, A.Y., Hulme, P.E., 2006. Local and regional assessments of the impacts of plant invaders on vegetation structure and soil properties of Mediterranean islands. Journal of Biogeography, 33 (5): 853–861.10.1111/j.1365-2699.2005.01430.xSearch in Google Scholar

Vilà, M., Espinar, J.L., Hejda, M., Hulme, P.E., Jarošík, V., Maron, J.L, Pergl, J., Schaffner, U., Sun, Y., Pyšek, P., 2011. Ecological impacts of invasive alien plants: a meta-analysis of their effects on species, communities and ecosystems. Ecology Letters, 14: 702–708.10.1111/j.1461-0248.2011.01628.x21592274Search in Google Scholar

Wang, E.T., Van Berkum, P., Sui, X.H., Beyene, D., Chen, W.X., Martínez-Romero, E., 1999. Diversity of microbial associated with Amorpha fruticosa isolated from Chinese soils and description of Mesorhizobium amorphae sp. nov. International Journal of Systematic Bacteriology, 49 (1): 51–65. https://doi.org/10.1099/00207713-49-1-5110.1099/00207713-49-1-5110028247Search in Google Scholar

eISSN:
1338-7014
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, other, Plant Science, Zoology, Ecology