Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests
Atmospheric nitrogen (N) pollution is considered responsible for a substantial decline in plant species richness and for altered community structures in terrestrial habitats worldwide. Nitrogen affects habitats through direct toxicity, soil acidification, and in particular by favoring fast-growing s...
| Published in: | Environmental Research Letters |
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| Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
| Format: | Article |
| Language: | English |
| Published: |
IOP Publishing
2018-01-01
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| Subjects: | |
| Online Access: | https://doi.org/10.1088/1748-9326/aaf26b |
| _version_ | 1851949102111129600 |
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| author | Thomas Dirnböck Gisela Pröll Kari Austnes Jelena Beloica Burkhard Beudert Roberto Canullo Alessandra De Marco Maria Francesca Fornasier Martyn Futter Klaus Goergen Ulf Grandin Maria Holmberg Antti-Jussi Lindroos Michael Mirtl Johan Neirynck Tomasz Pecka Tiina Maileena Nieminen Jørn-Frode Nordbakken Maximilian Posch Gert-Jan Reinds Edwin C Rowe Maija Salemaa Thomas Scheuschner Franz Starlinger Aldona Katarzyna Uziębło Salar Valinia James Weldon Wieger G W Wamelink Martin Forsius |
| author_facet | Thomas Dirnböck Gisela Pröll Kari Austnes Jelena Beloica Burkhard Beudert Roberto Canullo Alessandra De Marco Maria Francesca Fornasier Martyn Futter Klaus Goergen Ulf Grandin Maria Holmberg Antti-Jussi Lindroos Michael Mirtl Johan Neirynck Tomasz Pecka Tiina Maileena Nieminen Jørn-Frode Nordbakken Maximilian Posch Gert-Jan Reinds Edwin C Rowe Maija Salemaa Thomas Scheuschner Franz Starlinger Aldona Katarzyna Uziębło Salar Valinia James Weldon Wieger G W Wamelink Martin Forsius |
| author_sort | Thomas Dirnböck |
| collection | DOAJ |
| container_title | Environmental Research Letters |
| description | Atmospheric nitrogen (N) pollution is considered responsible for a substantial decline in plant species richness and for altered community structures in terrestrial habitats worldwide. Nitrogen affects habitats through direct toxicity, soil acidification, and in particular by favoring fast-growing species. Pressure from N pollution is decreasing in some areas. In Europe (EU28), overall emissions of NO _x declined by more than 50% while NH _3 declined by less than 30% between the years 1990 and 2015, and further decreases may be achieved. The timescale over which these improvements will affect ecosystems is uncertain. Here we use 23 European forest research sites with high quality long-term data on deposition, climate, soil recovery, and understory vegetation to assess benefits of currently legislated N deposition reductions in forest understory vegetation. A dynamic soil model coupled to a statistical plant species niche model was applied with site-based climate and deposition. We use indicators of N deposition and climate warming effects such as the change in the occurrence of oligophilic, acidophilic, and cold-tolerant plant species to compare the present with projections for 2030 and 2050. The decrease in N deposition under current legislation emission (CLE) reduction targets until 2030 is not expected to result in a release from eutrophication. Albeit the model predictions show considerable uncertainty when compared with observations, they indicate that oligophilic forest understory plant species will further decrease. This result is partially due to confounding processes related to climate effects and to major decreases in sulphur deposition and consequent recovery from soil acidification, but shows that decreases in N deposition under CLE will most likely be insufficient to allow recovery from eutrophication. |
| format | Article |
| id | doaj-art-88bd6c2ccf2345ef91912ecea3c19dff |
| institution | Directory of Open Access Journals |
| issn | 1748-9326 |
| language | English |
| publishDate | 2018-01-01 |
| publisher | IOP Publishing |
| record_format | Article |
| spelling | doaj-art-88bd6c2ccf2345ef91912ecea3c19dff2025-08-19T21:47:20ZengIOP PublishingEnvironmental Research Letters1748-93262018-01-01131212501010.1088/1748-9326/aaf26bCurrently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forestsThomas Dirnböck0https://orcid.org/0000-0002-8294-0690Gisela Pröll1Kari Austnes2Jelena Beloica3Burkhard Beudert4Roberto Canullo5Alessandra De Marco6Maria Francesca Fornasier7Martyn Futter8Klaus Goergen9Ulf Grandin10Maria Holmberg11Antti-Jussi Lindroos12Michael Mirtl13Johan Neirynck14Tomasz Pecka15Tiina Maileena Nieminen16Jørn-Frode Nordbakken17Maximilian Posch18Gert-Jan Reinds19Edwin C Rowe20Maija Salemaa21Thomas Scheuschner22Franz Starlinger23Aldona Katarzyna Uziębło24Salar Valinia25James Weldon26Wieger G W Wamelink27Martin Forsius28Environment Agency Austria, Spittelauer Lände 5, A-1090, Vienna, AustriaEnvironment Agency Austria, Spittelauer Lände 5, A-1090, Vienna, AustriaNorwegian Institute for Water Research NIVA, Gaustadalléen 21, NO-0349 Oslo, NorwayFaculty of Forestry, University of Belgrade , Kneza Viseslava 1, RS-11000 Belgrade, SerbiaNational Park Bayrischer Wald, Freyungerstr. 2, D-94481 Grafenau, GermanyUniversity of Camerino , School of Biosciences and Veterinary Medicine—Plant Diversity and Ecosystems Management unit, Via Pontoni 5, I-62032 Camerino, ItalyENEA—Casaccia Research Centre, Via Anguillarese 301, I-00123 Santa Maria di Galeria, Rome, ItalyInstitute for Env. Protection and Research (ISPRA), Via Vitaliano Brancati 48, I-00144 Rome, ItalySwedish University of Agricultural Sciences SLU , PO Box 7050, SE-75007 Uppsala, SwedenInstitute of Bio- and Geosciences, Agrosphere (IBG-3), Research Centre Jülich, Jülich, Germany; Centre for High Performance Scientific Computing in Terrestrial Systems, Geoverbund ABC/J, Jülich, GermanySwedish University of Agricultural Sciences SLU , PO Box 7050, SE-75007 Uppsala, SwedenFinnish Environment Institute, Mechelininkatu 34a, FI-00251 Helsinki, FinlandNatural Resources Institute Finland LUKE, Latokartanonkaari 9, FI-00790 Helsinki, FinlandEnvironment Agency Austria, Spittelauer Lände 5, A-1090, Vienna, AustriaResearch Institute for Nature and Forest (INBO), Gaverstraat 35, B-9500 Geraardsbergen, BelgiumInstitute of Environmental Protection (IOS-PIB) ul. Kolektorska 4, PL-01692, Warszawa, PolandNatural Resources Institute Finland LUKE, Latokartanonkaari 9, FI-00790 Helsinki, FinlandNorwegian Institute of Bioeconomy Research, Postboks 115, NO-1431 Ås, NorwayInternational Institute for Applied Systems Analysis (IIASA), Schlossplatz 1, A-2361 Laxenburg, AustriaWageningen Environmental Research, Wageningen UR, PO Box 47, NL-6700 AA Wageningen, The NetherlandsCentre for Ecology and Hydrology (CEH), ECW, Bangor, LL57 3EU, United KingdomNatural Resources Institute Finland LUKE, Latokartanonkaari 9, FI-00790 Helsinki, FinlandUmweltbundesamt UBA, Wörlitzer Platz 1, D-06844 Dessau-Roßlau, GermanyAustrian Research Centre for Forests - BFW, A-1131 Vienna, AustriaSilesian University , Faculty of Biology and Environmental Protection, Jagiellońska 28, 40-032 Katowice, PolandNorwegian Institute for Water Research NIVA, Gaustadalléen 21, NO-0349 Oslo, Norway; Swedish Environmental Protection Agency, SE-10648 Stockholm, SwedenSwedish University of Agricultural Sciences SLU , PO Box 7050, SE-75007 Uppsala, SwedenWageningen Environmental Research, Wageningen UR, PO Box 47, NL-6700 AA Wageningen, The NetherlandsFinnish Environment Institute, Mechelininkatu 34a, FI-00251 Helsinki, FinlandAtmospheric nitrogen (N) pollution is considered responsible for a substantial decline in plant species richness and for altered community structures in terrestrial habitats worldwide. Nitrogen affects habitats through direct toxicity, soil acidification, and in particular by favoring fast-growing species. Pressure from N pollution is decreasing in some areas. In Europe (EU28), overall emissions of NO _x declined by more than 50% while NH _3 declined by less than 30% between the years 1990 and 2015, and further decreases may be achieved. The timescale over which these improvements will affect ecosystems is uncertain. Here we use 23 European forest research sites with high quality long-term data on deposition, climate, soil recovery, and understory vegetation to assess benefits of currently legislated N deposition reductions in forest understory vegetation. A dynamic soil model coupled to a statistical plant species niche model was applied with site-based climate and deposition. We use indicators of N deposition and climate warming effects such as the change in the occurrence of oligophilic, acidophilic, and cold-tolerant plant species to compare the present with projections for 2030 and 2050. The decrease in N deposition under current legislation emission (CLE) reduction targets until 2030 is not expected to result in a release from eutrophication. Albeit the model predictions show considerable uncertainty when compared with observations, they indicate that oligophilic forest understory plant species will further decrease. This result is partially due to confounding processes related to climate effects and to major decreases in sulphur deposition and consequent recovery from soil acidification, but shows that decreases in N deposition under CLE will most likely be insufficient to allow recovery from eutrophication.https://doi.org/10.1088/1748-9326/aaf26bLTERforest ecosystemair pollutionmodellingclimate changeLRTAP Convention |
| spellingShingle | Thomas Dirnböck Gisela Pröll Kari Austnes Jelena Beloica Burkhard Beudert Roberto Canullo Alessandra De Marco Maria Francesca Fornasier Martyn Futter Klaus Goergen Ulf Grandin Maria Holmberg Antti-Jussi Lindroos Michael Mirtl Johan Neirynck Tomasz Pecka Tiina Maileena Nieminen Jørn-Frode Nordbakken Maximilian Posch Gert-Jan Reinds Edwin C Rowe Maija Salemaa Thomas Scheuschner Franz Starlinger Aldona Katarzyna Uziębło Salar Valinia James Weldon Wieger G W Wamelink Martin Forsius Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests LTER forest ecosystem air pollution modelling climate change LRTAP Convention |
| title | Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests |
| title_full | Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests |
| title_fullStr | Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests |
| title_full_unstemmed | Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests |
| title_short | Currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in European forests |
| title_sort | currently legislated decreases in nitrogen deposition will yield only limited plant species recovery in european forests |
| topic | LTER forest ecosystem air pollution modelling climate change LRTAP Convention |
| url | https://doi.org/10.1088/1748-9326/aaf26b |
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