Description
Enregistrements de données
Les données de cette ressource données d'échantillonnage ont été publiées sous forme dune Archive Darwin Core (Darwin Core Archive ou DwC-A), le format standard pour partager des données de biodiversité en tant quensemble dun ou plusieurs tableurs de données. Le tableur de données du cœur de standard (core) contient 1 059 enregistrements.
3 tableurs de données dextension existent également. Un enregistrement dextension fournit des informations supplémentaires sur un enregistrement du cœur de standard (core). Le nombre denregistrements dans chaque tableur de données dextension est illustré ci-dessous.
Cet IPT archive les données et sert donc de dépôt de données. Les données et métadonnées de la ressource sont disponibles pour téléchargement dans la section téléchargements. Le tableau des versions liste les autres versions de chaque ressource rendues disponibles de façon publique et permet de tracer les modifications apportées à la ressource au fil du temps.
Versions
Le tableau ci-dessous naffiche que les versions publiées de la ressource accessibles publiquement.
Comment citer
Les chercheurs doivent citer cette ressource comme suit:
Reiss L, Dirnböck T, Pröll G, Mirtl M (2026). Forest vegetation surveys at eLTER site Zöbelboden in Austria, 1992-2021. Version 1.7. Test changing title - thanks!. Samplingevent dataset. https://ipt.gbif.org/resource?r=at-zoe-veg&v=1.7
Droits
Les chercheurs doivent respecter la déclaration de droits suivante:
L’éditeur et détenteur des droits de cette ressource est Test changing title - thanks!. Ce travail est sous licence Creative Commons Attribution Non Commercial (CC-BY-NC) 4.0.
Enregistrement GBIF
Cette ressource a été enregistrée sur le portail GBIF, et possède lUUID GBIF suivante : bd1661c3-52e2-4e22-8d09-26c22a9ccf92. Test changing title - thanks! publie cette ressource, et est enregistré dans le GBIF comme éditeur de données avec lapprobation du GBIF Secretariat.
Mots-clé
Sampling Event; vegetation; survey; braun-blanquet; releve; forest; long-term monitoring; IM; integrated monitoring; eLTER; Observation
Données externes
Les données de la ressource sont disponibles dans dautres formats
| EUDAT B2SHARE | https://doi.org/10.23728/b2share.8726314fb01848a5951c91808bd573b5 UTF-8 HTML |
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Contacts
- Personne De Contact
- Créateur
- Créateur
- Créateur
- Personne De Contact
- Ecologist
Couverture géographique
National Park Kalkalpen, research site Zöbelboden, https://deims.org/8eda49e9-1f4e-4f3e-b58e-e0bb25dc32a6
| Enveloppe géographique | Sud Ouest [47,838, 14,435], Nord Est [47,847, 14,453] |
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Couverture taxonomique
Plantae
| Kingdom | Plantae |
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Couverture temporelle
| Date de début / Date de fin | 1993-07-15 / 2021-08-26 |
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Données sur le projet
Pas de description disponible
| Titre | ICP Integrated Monitoring |
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| Financement | Funded by the Austrian Federal Ministry for Agriculture and Forestry, Climate and Environmental Protection, Regions and Water Management Austria (BMLUK) under the ICP Integrated Monitoring Program (CLRTAP) |
| Projets liés |
Biodiversity Meets Data (BMD) Grant agreement ID: 101181294 |
Les personnes impliquées dans le projet:
Méthodes déchantillonnage
Species cover was estimated using the Braun-Blanquet scale, adapted after Pfadenhauer et al. (1986), with defined cover range and mean cover percentages: + = 1% cover = 0.5% mean cover / 1a = 1-3% cover = 2% mean cover / 1b = 3-5% cover = 4% mean cover / 2a = 5-12.5% cover = 8.75% mean cover, 2b = 12.5-23% cover = 18.75% mean cover / 3 = 25-50% cover = 37.5% mean cover / 4 = 50-75% cover = 62.5% mean cover / 5 = 75-100% cover = 87.5 % mean cover). Vegetation stratification follows Kraft (1884, cited in Schieler & Hauk 2001), distinguishing the following layers: Tree layer 1 (TL1): Dominant to co-dominant trees. Tree layer 2 (TL2): Intermediate or subdominant trees. Tree layer 3 (TL3): Fully subordinate to strongly suppressed trees. Shrub layer (SL): Woody vegetation between knee height and approximately 3 meters. Herb layer (HL): Vegetation up to knee height, including woody species. Protocol References: Braun-Blanquet, J. (1963): Pflanzenphysiologie. 3. Aufl., Springer Verlag: Wien, New York. https://doi.org/10.1007/978-3-7091-8110-2.; Traxler, A. (1997): Handbuch des vegetationsökologischen Monitorings. Methoden, Praxis, angewandte Projekte. Teil A: Methoden. Umweltbundesamt (Federal Environmental Agency), Wien, Austria.; Schieler, K.; Hauk, E. (2001): Österreichische Waldinventur 2000/2002. Forstliche Bundesversuchsanstalt Wien, Waldforschungszentrum. ISBN 3-901347-29-1.
| Etendue de létude | The eLTER site Zöbelboden is a remote forest site located within the Kalkalpen National Park in Upper Austria. The Zöbelboden was established in 1992 as the only Integrated Monitoring site in Austria under the UN Convention on long-range transboundary air pollution (CLRTAP). In 2006 it became part of LTER Austria. The 90 ha study area was established in 1992 using a rectangular grid with a spacing of 100 × 100 m. At each grid corner and midpoint, permanent plots of 10 × 10 m were installed, resulting in a total of 167 plots after excluding rock outcrops and forest plantations younger than 20 years. The first permanent vegetation plots were installed in 1992 with an initial survey of general relevé data (layer cover). Comprehensive vegetation surveys began in 1993, and plots were re-surveyed in 1996, 2005, 2008, 2010, 2014, 2017 and 2021. Full re-surveys were conducted in 2008, 2014 and 2021. In 2005, 2010 and 2017, a reduced number of plots was re-surveyed. All plots have a uniform size of 100 m2 (10 x 10 m). |
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Description des étapes de la méthode:
- Installation of permanent monitoring plots at the site
- Repeated vegetation relevé surveys of the plots
- Subsequent data storage, management, and harmonisation
Citations bibliographiques
- Bernhardt-Römermann, Markus; Baeten, Lander; Craven, Dylan; Frenne, Pieter de; Hédl, Radim; Lenoir, Jonathan et al. (2015): Drivers of temporal changes in temperate forest plant diversity vary across spatial scales. In Global Change Biology 21 (10), pp. 3726–3737. DOI: 10.1111/gcb.12993
- Caron, Maria Mercedes; Zellweger, Florian; Verheyen, Kris; Baeten, Lander; Hédl, Radim; Bernhardt‐Römermann, Markus et al. (2021): Thermal differences between juveniles and adults increased over time in European forest trees. In J Ecol, Article 1365-2745.13773. DOI: 10.1111/1365-2745.13773
- De Schuyter, Wim; De Lombaerde, Emiel; Depauw, Leen; De Smedt, Pallieter; Stachurska‐Swakoń, Alina; Orczewska, Anna et al. (2024): Declining potential nectar production of the herb layer in temperate forests under global change. In Journal of Ecology 112 (4), pp. 832–847 DOI: 10.1111/1365-2745.14274
- irnböck, Thomas; Grandin, Ulf; Bernhardt-Römermann, Markus; Beudert, Burkhardt; Canullo, Roberto; Forsius, Martin et al. (2014): Forest floor vegetation response to nitrogen deposition in Europe. In Global Change Biology 20 (2), pp. 429–440. DOI: 10.1111/gcb.12440
- Helm, Norbert; Essl, Franz; Mirtl, Michael; Dirnböck, Thomas (2017): Multiple environmental changes drive forest floor vegetation in a temperate mountain forest. In Ecology and Evolution 7 (7), pp. 2155–2168. DOI: 10.1002/ece3.2801
- Hülber, K.; Dirnböck, T.; Kleinbauer, I.; Willner, W.; Dullinger, S.; Karrer, G.; Mirtl, M. (2008): Long-term impacts of nitrogen and sulphur deposition on forest floor vegetation in the Northern limestone Alps, Austria. In Applied Vegetation Science 11, pp. 395–404.
- Knollová, Ilona; Chytrý, Milan; Bruelheide, Helge; Dullinger, Stefan; Jandt, Ute; Bernhardt‐Römermann, Markus et al. (2024): ReSurveyEurope : A database of resurveyed vegetation plots in Europe. In J Vegetation Science 35 (2), Article e13235. DOI: 10.1111/jvs.13235
- Landuyt, Dries; Perring, Michael P.; Blondeel, Haben; De Lombaerde, Emiel; Depauw, Leen; Lorer, Eline et al. (2024): Combining multiple investigative approaches to unravel functional responses to global change in the understorey of temperate forests. In Global Change Biology 30 (1), Article e17086. DOI: 10.1111/gcb.17086
- Padullés Cubino, Josep; Lenoir, Jonathan; Li, Daijiang; Montaño-Centellas, Flavia A.; Retana, Javier; Baeten, Lander et al. (2023): Evaluating plant lineage losses and gains in temperate forest understories: a phylogenetic perspective on climate change and nitrogen deposition. In New Phytologist. DOI: 10.1111/nph.19477
- Perring, Michael P.; Bernhardt-Römermann, Markus; Baeten, Lander; Midolo, Gabriele; Blondeel, Haben; Depauw, Leen et al. (2018a): Global environmental change effects on plant community composition trajectories depend upon management legacies. In Global Change Biology 24 (4), pp. 1722–1740. DOI: 10.1111/gcb.14030
- Perring, Michael P.; Diekmann, Martin; Midolo, Gabriele; Schellenberger Costa, David; Bernhardt-Römermann, Markus; Otto, Johanna C. J. et al. (2018b): Understanding context dependency in the response of forest understorey plant communities to nitrogen deposition. In Environmental Pollution 242 (Part B), pp. 1787–1799. DOI: 10.1016/j.envpol.2018.07.089
- Perring, Michael P.; Frenne, Pieter de; Hertzog, Lionel R.; Blondeel, Haben; Depauw, Leen; Maes, Sybryn L. et al. (2020): Increasing liana frequency in temperate European forest understories is driven by ivy. In Front. Ecol. Environ. 18 (10), pp. 550–557. DOI: 10.1002/fee.2266
- Sanczuk, Pieter; Verheyen, Kris; Lenoir, Jonathan; Zellweger, Florian; Lembrechts, Jonas J.; Rodríguez-Sánchez, Francisco et al. (2024): Unexpected westward range shifts in European forest plants link to nitrogen deposition. In Science 386 (6718), pp. 193–198. DOI: 10.1126/science.ado0878
- Segar, Josiane; Pereira, Henrique M.; Baeten, Lander; Bernhardt-Römermann, Markus; Frenne, Pieter de; Fernández, Néstor et al. (2022): Divergent roles of herbivory in eutrophying forests. In Nature Communications 13 (1), p. 7837. DOI: 10.1038/s41467-022-35282-6
- Staude, Ingmar R.; Pereira, Henrique M.; Daskalova, Gergana N.; Bernhardt-Römermann, Markus; Diekmann, Martin; Pauli, Harald et al. (2021): Directional turnover towards larger-ranged plants over time and across habitats. In Ecology Letters. DOI: 10.1111/ele.13937
- Staude, Ingmar R.; Waller, Donald M.; Bernhardt-Römermann, Markus; Bjorkman, Anne D.; Brunet, Jörg; Frenne, Pieter de et al. (2020): Replacements of small- by large-ranged species scale up to diversity loss in Europe's temperate forest biome. In Nature ecology & evolution. DOI: 10.1038/s41559-020-1176-8
- Zellweger, Florian; Frenne, Pieter de; Lenoir, Jonathan; Vangansbeke, Pieter; Verheyen, Kris; Bernhardt-Römermann, Markus et al. (2020): Forest microclimate dynamics drive plant responses to warming. In Science 368 (6492), pp. 772–775. DOI: 10.1126/science.aba6880
Métadonnées additionnelles
This dataset is a Darwin Core-formatted version of data previously published at B2SHARE (https://doi.org/10.23728/b2share.8726314fb01848a5951c91808bd573b5). The data were reformatted and published through GBIF to support broader reuse and integration with other biodiversity datasets.
| Remerciements | |
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| Identifiants alternatifs | https://doi.org/10.23728/b2share.8726314fb01848a5951c91808bd573b5 |
| bd1661c3-52e2-4e22-8d09-26c22a9ccf92 | |
| https://ipt.gbif.org/resource?r=at-zoe-veg |