Cite

Balsiger, J., 2016: The European Union Strategy for the Alpine Region. In: Gänzle, S., Kern, K. (eds.): A ‘Macro-regional’ Europe in the Making. London, Palgrave MacMillan, p. 189–213.Search in Google Scholar

Bindewald, A., Brundu, G., Schueler, S., Starfinger, U., Bauhus, J., Lapin, K., 2021: Site-specific risk assessment enables trade-off analysis of non-native tree species in European forests. Ecology and Evolution, 11:18089–18110.Search in Google Scholar

Bolte, A., Ammer, C., Löf, M., Madsen, P., Nabuurs, G.-J., Schall, P. et al., 2009: Adaptive forest management in central Europe: Climate change impacts, strategies and integrative concept. Scandinavian Journal of Forest Research, 24:473–482.Search in Google Scholar

Bouget, C., Brin, A., Larrieu, L., 2021: The use of sentinel logs to assess host shifts in early beetle colonisers of deadwood under climate- and forestry-induced tree species substitutions. Insect Conservation and Diversity, 14:117–131.Search in Google Scholar

Brang, P., Breznikar, A., Hanewinkel, M., Jandl, R., Maier, B., 2013: Managing Alpine Forests in a Changing Climate. In: Cerbu, G. (ed.): Management Strategies to Adapt Alpine Space Forests to Climate Change Risks. InTech Open. Available at: 10.5772/56272.Search in Google Scholar

Brang, P., Pluess, A. R., Bürgi, A., Born, J., 2016: Potenzial von Gastbaumarten bei der Anpassung an den Klimawandel. In: Pluess, A. R. et al. (eds.): Wald im Klimawandel. Grundlagen für Adaptationsstrategien. Bern, Haupt, p. 385–405. (In German).Search in Google Scholar

Brundu, G., Pauchard, A., Pyšek, P., Pergl, J., Bindewald, A. M., Brunori, A. et al., 2020: Global guidelines for the sustainable use of non-native trees to prevent tree invasions and mitigate their negative impacts. Neo-Biota, 61:65–116.Search in Google Scholar

Brunet, J., Zalapa, J. E., Pecori, F., Santini, A., 2013: Hybridization and introgression between the exotic Siberian elm, Ulmus pumila, and the native Field elm, U. minor, in Italy. Biological Invasions, 15:2717–2730.Search in Google Scholar

Brus, R., Pötzelsberger, E., Lapin, K., Brundu, G., Orazio, C., Straigyte, L. et al., 2019: Extent, distribution and origin of non-native forest tree species in Europe. Scandinavian Journal of Forest Research, 34:533–544.Search in Google Scholar

Castro-Díez, P., Alonso, Á., Saldaña-López, A., Granda, E., 2021: Effects of widespread non-native trees on regulating ecosystem services. Science of the Total Environment, 778:146141.Search in Google Scholar

Castro-Díez, P., Vaz, A. S., Silva, J. S., van Loo, M., Alonso, Á., Aponte, C. et al., 2019: Global effects of non-native tree species on multiple ecosystem services. Biological Reviews, 94:1477–1501.Search in Google Scholar

Chakraborty, D., Gaviria, J., Bednárová, D., Bolte, A., Bouissou, C., Buchacher, R. et al., 2019: Implementing assisted migration. Output of the INTERREG Cental Europe Programme. SUSTREE Policy Brief No. 2. Available at: https://www.interreg-central.eu/Content.Node/SUSTREE/CE614-SUSTREED.T2.4.3-PolicyBrief2.pdf.Search in Google Scholar

Collins, S., Genova, F., Harrower, N., Hodson, S., Jones, S., Laaksonen, L. et al., 2018: Turning FAIR into reality. Brussels, European Commission, 78 p.Search in Google Scholar

Czaja, M., Kołton, A., Muras, P., 2020: The Complex Issue of Urban Trees–Stress Factor Accumulation and Ecological Service Possibilities. Forests, 11:932.Search in Google Scholar

Elena-Bucea, A., Cruz-Jesus, F., Oliveira, T., Coelho, P. S., 2021: Assessing the Role of Age, Education, Gender and Income on the Digital Divide: Evidence for the European Union. Information Systems Frontiers, 23:1007–1021.Search in Google Scholar

Fady, B., Rihm, G., 2022: Arboretums, common gardens and forest tree resilience. New Forests, 53:603–606.Search in Google Scholar

Felton, A., Boberg, J., Björkman, C., Widenfalk, O., 2013: Identifying and managing the ecological risks of using introduced tree species in Sweden’s production forestry. Forest Ecology and Management, 307:165–177.Search in Google Scholar

Grêt-Regamey, A., Walz, A., Bebi, P., 2008: Valuing Ecosystem Services for Sustainable Landscape Planning in Alpine Regions. Mountain Research and Development, 28:156–165.Search in Google Scholar

Hanewinkel, M., Knook, J., 2016: Economic aspects of introduced tree species – opportunities and risks. In: Krumm, F., Vitkova, L. (eds.): Introduced tree species in European forests: opportunities and challenges. Freiburg, European Forest Institute, p. 214–225.Search in Google Scholar

Hasenauer, H., Gazda, A., Konnert, M., Lapin, K., Mohren, G. M. J., Spiecker, H. et al., 2017: Non-native tree species for European forests: Experiences, risks and opportunities. COST Action FP1403 NNEXT Country Reports, Joint Volume. Vienna, University of Natural Resources and Life Sciences Vienna, 434 p.Search in Google Scholar

Haysom, K. A., Murphy, S. T., 2004: The status of invasiveness of forest tree species outside their natural habitat: a global review and discussion paper. Forestry Department Forest Health and Biosecurity Working Paper FBS-3E. p. 5–8.Search in Google Scholar

Hazarika, R., 2021: Stakeholder’s knowledge on risks, benefits and management of non-native tree species in urban, peri-urban and forest ecosystems in the Alpine Space. Interreg Alpine Space ALPTREES Report on Activity A.T4.1, Deliverable D.T4.1.1, Vienna, Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), 66 p.Search in Google Scholar

Hazarika, R., La Porta, N., Lugli, L., Lapin, K., 2022: Policy Analysis Report. Interreg Alpine Space ALP-TREES Report on Activity A.T4.2, Deliverable D.T4.2.1, Vienna, Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), 33 p.Search in Google Scholar

Hulme, P. E., 2015: Invasion pathways at a crossroad: policy and research challenges for managing alien species introductions. Journal of Applied Ecology, 52:1418–1424.Search in Google Scholar

Jenerette, G. D., Clarke, L. W., Avolio, M. L., Pataki, D. E., Gillespie, T. W., Pincetl, S. et al., 2016: Climate tolerances and trait choices shape continental patterns of urban tree biodiversity. Global Ecology and Biogeography, 25:1367–1376.Search in Google Scholar

Karam, N., Khiat, A., Algergawy, A., Sattler, M., Wei-land, C., Schmidt, M., 2020: Matching biodiversity and ecology ontologies: challenges and evaluation results. The Knowledge Engineering Review, 35:e9.Search in Google Scholar

Křivánek, M., Pyšek, P., Jarošík, V., 2006: Planting History and Propagule Pressure as Predictors of Invasion by Woody Species in a Temperate Region. Conservation Biology, 20:1487–1498.Search in Google Scholar

Krumm, F., Vítková, L. (ed.), 2016: Introduced tree species in European forests: opportunities and challenges. European Forest Institute, Joensuu, 436 p.Search in Google Scholar

Lapin, K., Bacher, S., Cech, T., Damjanić, R., Essl, F., Georges, F.-I. et al., 2021: Comparing environmental impacts of alien plants, insects and pathogens in protected riparian forests. NeoBiota, 69:1–28.Search in Google Scholar

Lapin, K., Bindewald, A., Kraxner, F., Marinšek, A., La Porta, N., Hazarika, R. et al., 2020: A transnational cooperation for sustainable use and management of non-native trees in urban, peri-urban and forest ecosystems in the Alpine region (ALPTREES). Research Ideas and Outcomes, 6:e53038.Search in Google Scholar

Marinšek, A., Bindewald, A., Kraxner, F., La Porta, N., Meisel, P., 2022a: Management of non-native tree species in urban areas of the Alpine space. Vienna, Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), 180 p. Available at: https://www.bfw.gv.at/wp-content/uploads/alptrees_mhb_3_eng-1.pdf.Search in Google Scholar

Marinšek, A., Bindewald, A., Kraxner, F., La Porta, N., Meisel, P., Lapin, K., 2022b: Management of non-native tree species in forests of the Alpine space. Vienna, Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), 147 p. Available at: https://www.bfw.gv.at/wp-content/uploads/alptrees_mhb_2_eng-1.pdf.Search in Google Scholar

Messier, C., Bauhus, J., Sousa Silva, R., Auge, H., Baeten, L., Barsoum, N. et al., 2022: For the sake of resilience and multifunctionality, let’s diversify planted forests! Conservation Letters, 15:e12829.Search in Google Scholar

Miu, I. V., Rozylowicz, L., Popescu, V. D., Anastasiu, P., 2020: Identification of areas of very high biodiversity value to achieve the EU Biodiversity Strategy for 2030 key commitments. PeerJ, 8:e10067.Search in Google Scholar

Müller-Meißner, A., Bindewald, A., 2021: Inventory of non-native tree species in the Alpine Space. Vienna, Federal Research and Training Centre for Forests, Natural Hazards and Landscape (BFW), 2 p.Search in Google Scholar

Musvuugwa, T., Dlomu, M. G., Adebowale, A., 2021: Big Data in Biodiversity Science: A Framework for Engagement. Technologies, 9:60.Search in Google Scholar

Pötzelsberger, E., Lapin, K., Brundu, G., Adriaens, T., Andonovski, V., Andrašev, S. et al., 2020a: Mapping the patchy legislative landscape of non-native tree species in Europe. Forestry: An International Journal of Forest Research, 93:567–586.Search in Google Scholar

Pötzelsberger, E., Spiecker, H., Neophytou, C., Mohren, F., Gazda, A., Hasenauer, H., 2020b: Growing Non-native Trees in European Forests Brings Benefits and Opportunities but Also Has Its Risks and Limits. Current Forestry Reports, 6:339–353.Search in Google Scholar

Rebetez, M., Reinhard, M., 2008: Monthly air temperature trends in Switzerland 1901–2000 and 1975–2004. Theoretical and Applied Climatology, 91:27–34.Search in Google Scholar

Richardson, D. M., Rejmánek, M., 2011: Trees and shrubs as invasive alien species – a global review: Global review of invasive trees & shrubs. Diversity and Distributions, 17:788–809.Search in Google Scholar

Rigling, A., Gessler, A., Feichtinger, L., Queloz, V., Wohlgemuth, T., 2016: Introduced or native tree species to maintain forest ecosystem services in a hotter and drier future? In: Krumm, F., Vitkova, L. (eds.): Introduced tree species in European forests: opportunities and challenges. Joensuu, European Forest Institute, p. 236–247.Search in Google Scholar

Schilthuizen, M., Santos Pimenta, L. P., Lammers, Y., Steenbergen, P. J., Flohil, M., Beveridge, N. G. P. et al., 2016: Incorporation of an invasive plant into a native insect herbivore food web. PeerJ, 4:e1954.Search in Google Scholar

Suanno, C., Aloisi, I., Parrotta, L., Fernández-González, D., del Duca, S., 2021: Allergenic risk assessment of urban parks: Towards a standard index. Environmental Research, 200:111436.Search in Google Scholar

Sundseth, K., 2006: Natura 2000 in the Alpine region. Luxembourg, European Commission, Luxembourg. 12 p. Available at: https://ec.europa.eu/environment/nature/info/pubs/docs/brochures/nat2000_alpine.pdf.Search in Google Scholar

Tattoni, C., Ianni, E., Geneletti, D., Zatelli, P., Ciolli, M., 2017: Landscape changes, traditional ecological knowledge and future scenarios in the Alps: A holistic ecological approach. Science of the Total Environment, 579:27–36.Search in Google Scholar

Thurm, E. A., Hernandez, L., Baltensweiler, A., Ayan, S., Rasztovits, E., Bielak, K. et al., 2018: Alternative tree species under climate warming in managed European forests. Forest Ecology and Management, 430:485–497.Search in Google Scholar

van Loo, M., Dobrowolska, D., 2019: Douglas-fir’s role in European forests in the 21st century. In: Spiecker, H. et al. (eds.): Douglas-fir – an option for Europe. What Science Can Tell us 9, Joensuu, European Forest Institute, p. 30–22. Available at: https://efi.int/sites/default/files/files/publication-bank/2019/efi_wsctu9_2019.pdf.Search in Google Scholar

Vaz, A. S., Castro-Díez, P., Godoy, O., Alonso, Á., Vilà, M., Saldaña, A. et al., 2018: An indicator-based approach to analyse the effects of non-native tree species on multiple cultural ecosystem services. Ecological Indicators, 85:48–56.Search in Google Scholar

Weber, E., Gut, D., 2004: Assessing the risk of potentially invasive plant species in central Europe. Journal for Nature Conservation, 12:171–179.Search in Google Scholar

Wohlgemuth, T., Moser, B., Pötzelsberger, E., Rigling, A., Gossner, M. M., 2021: Über die Invasivität der Douglasie und ihre Auswirkungen auf Boden und Biodiversität. Schweizerische Zeitschrift für Forstwesen, 172:118–127. (In German).Search in Google Scholar

BFW, 2022: Database on non-native trees in Europe (Version 1st of August 2022). Available at: http://www.non-native-trees.eu/index.php/nnt-database-list.Search in Google Scholar

EEA, 2020: The Alpine region – Biodiversity, Energy and Water – European Environment Agency. Available at: https://www.eea.europa.eu/themes/regions/the-alpine-region/biodiversity-energy-water/biodiversity-energy-and-water.Search in Google Scholar

FAO, IPPC, 2019: International Standards for Phytosanitary Measures 2 – Framework for pest risk analysis. Rome, FAO, IPPC, 20 p. Available at: https://www.ippc.int/static/media/files/publication/en/2016/01/ISPM_02_2007_En_2015-12-22_PostCPM10_InkAmReformatted.pdf.Search in Google Scholar

Interreg Alpine Space, 2022: Interreg Alpine Space Programme 2021–2027. Salzburg, Interreg Alpine Space, 84 p.Search in Google Scholar

IPBES, 2020: Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services (IPBES). Available at: https://ipbes.net/node/36759.Search in Google Scholar

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. Available at: http://data.europa.eu/eli/reg/2014/1143/oj.Search in Google Scholar

eISSN:
2454-0358
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Plant Science, Ecology, other