J. For. Sci., 2013, 59(6):238-252 | DOI: 10.17221/16/2013-JFS

Ground vegetation as an important factor in the biodiversity of forest ecosystems and its evaluation in regard to nitrogen depositionOriginal Paper

V. Buriánek, R. Novotný, K. Hellebrandová, V. Šrámek
Forestry and Game Management Research Institute, Strnady, Jíloviště, Czech Republic

: We documented the current typological and phytosociological characterisation of the ground vegetation as an essential component of biodiversity in 154 Czech forest monitoring plots and to describe its changes during the past 15 years in regard to the deposition and concentration of nitrogen in the soil. Plots were classified as vegetation units in accordance with the UNECE and FAO nomenclature and on the basis of their potential natural vegetation and compared in terms of the occurrence and coverage of the indicative selected nitrophilous species. In all the soil horizons tested statistically significant differences in the C/N ratio were observed between areas with and without the presence of certain selected nitrophilous species (Geranium robertianum, Impatiens parviflora, Sambucus nigra, Urtica dioica). In the areas with the presence of the Geranium robertianum and Urtica dioica species, statistically significantly higher concentrations of nitrogen were recorded in some soil horizons than in those areas with the absence of these species. The findings concerning the influence of nitrogen on nitrophilous herbaceous indicators were compared with the European results obtained in the framework of the ICP Forests international programme and with those of other foreign studies.

Keywords: forest monitoring; nutrificiation; nitrophilous species; vegetation diversity

Published: June 30, 2013  Show citation

ACS AIP APA ASA Harvard Chicago IEEE ISO690 MLA NLM Turabian Vancouver
Buriánek V, Novotný R, Hellebrandová K, Šrámek V. Ground vegetation as an important factor in the biodiversity of forest ecosystems and its evaluation in regard to nitrogen deposition. J. For. Sci.. 2013;59(6):238-252. doi: 10.17221/16/2013-JFS.
Download citation

References

  1. Aber J.D., Nadelhoffer K.J., Stendler P., Melillo J.M. (1989): Nitrogen saturation in northern forest ecosystems. Bioscience, 39: 378-386. Go to original source...
  2. Ambros Z. (1990): Bylinná synuzie jako indikátor změn abiotického prostředí smrkové monokultury. [Herb synusia as indicator of abiotic environment change in spruce monoculture.] Preslia, 62: 205-214.
  3. Barkman J.J., Doing H., Segal S. (1964): Kritische Bemerkungen und Vorschläge zur quantitativen Vegetationsanalyse. Acta botanica neerlandica, 13: 394-419. Go to original source...
  4. Binkley D. (1986): Forest nutrition management. New York, John Wiley & Sons: 290.
  5. Bobbink R., Braun S., Nordin A., Power S., Schütz K., Strengbom J., Weijters M., Tomassen H. (2011): Review and revision of empirical critical loads and doseresponse relationships. In: Bobbink R., Hettelingh J.P. (eds): Proceedings of an Expert Workshop. Noordwijkerhout, 23.-25. June 2010. Bilthoven, National Institute for Public Health and the Environment: 244.
  6. Boháčová L., Lomský B., Šrámek V. (eds) (2009): Forest Condition Monitoring in the Czech Republic. Forestry and Game Management Research Institute: 134.
  7. Braun-Blanquet J. (1965): Plant Sociology, the Study of Plants Communities. London, Hafner: 439.
  8. Buriánek V. (1993): Využití sledování vegetačního krytu a jeho změn v rámci programu ekologického monitoringu lesních porostů. [Using of vegetation cover assessment and its changes within ecological monitoring programme of forest stands.] Zprávy lesnického výzkumu, 38: 26-27.
  9. Canullo R., Starlinger F., Granke O., Fischer R., Aamlid D., Neville P. (2011): Assessment of Ground Vegetation. Hamburg, UNECE, ICP Forests Programme Co-ordinating Centre: 15.
  10. Chytrý M., Kučera T., Kočí M., Grulich V., Lustyk P. (eds) (2010): Katalog biotopů České republiky. [Habitat Catalogue of the Czech Republic.] Praha, Agentura ochrany přírody a krajiny ČR: 445.
  11. Crowley K. F., McNeil B.E., Lovett G.M., Canham C.D., Driscoll C.T., Rustad L.E., Denny E., Hallett R.A., Arthur M.A., Boggs J.L., Goodale C.L., Kahl J.S., McNulty S.G., Ollinger S.V., Pardo L.H., Schaberg P.G., Stoddard J.L., Weand M.P., Weathers K.C. (2012): Do nutrient limitation patterns shift from nitrogen toward phosphorus with increasing nitrogen deposition across the Northeastern United States? Ecosystems, 15: 940-957. Go to original source...
  12. de Vries W., Leeters E.E.J.M., Hendriks C.M.A., van Dobben H., van den Burg J., Boumans L.J.M. (1995): Large scale impact of acid deposition on forests and forest soils in the Netherlands. In: Heij G.J., Erisman J.W. (eds): Acid Rain Research: Do We Have Enough Answers? Amsterdam, Elsevier: 261-277. Go to original source...
  13. de Vries W., Kros H., Reinds G.J., Wamelink W., Mol J., van Dobben H., Bobbink R., Emmett B., Smart S., Evans C., Schlutow A., Kraft P., Belyazid S., Sverdrup H., van Hinsberg A., Posch M., Hettelingh J.P. (2007): Development in Deriving Critical Limits and Modelling Critical Loads of Nitrogen for Terrestrial Ecosystems in Europe. Wageningen, Bilthoven, Alterra, CCE: 206.
  14. Diekmann M., Brunet J., Rühling Å., FalkengrenGrerup U. (1999): Effects of nitrogen deposition: Results of a temporal-spatial analysis of deciduous forests in South Sweden. Plant Biology, 1: 471-481. Go to original source...
  15. Diekmann M., Dupré C. (1997): Acidification and eutrophication of deciduous forests in northwestern Germany demonstrated by indicator species analysis. Journal of Vegetation Science, 8: 855-864. Go to original source...
  16. Ellenberg H.,Weber H. E., Düll R.,Wirth V., Werner W. (2001): Zeigerwerte von Pflanzen in Mitteleuropa. Ed. 4. Scripta Geobotanica, 18: 1-262.
  17. Fabiánek P. (ed.) (2004): Forest condition monitoring in the Czech Republic 1984-2003. Praha, Czech Ministry of Agriculture and Forestry and Game management Research Institute: 431.
  18. Falkengren-Grerup U., Schöttelndreier M. (2004): Vascular plants as indicators of nitrogen enrichment in soils. Plant Ecology, 172: 51-62. Go to original source...
  19. Fenn M.E., Jovan S., Yuan F., Geiser L., Meixner T., Gimeno B.S. (2008): Empirical and simulated critical loads for nitrogen deposition in California mixed conifer forests. Environmental Pollution, 155: 492-511. Go to original source... Go to PubMed...
  20. Fischer R., Lorenz M., Granke O., Mues V., Iost S., van Dobben H., Reinds G.J., de Vries W. (2007): The Condition of Forests in Europe. Hamburg and Brussels, ICP Forests and European Commission: 33.
  21. Fisher R.F., Binkley D. (2000): Ecology and management of forest soils. New York, John Wiley & Sons: 489.
  22. Fischer R., Lorenz M., Köhl M., Mues V., Granke O. Iost S., van Dobben H., Reinds G.J., de Vries W. (2010): The Condition of Forests in Europe 2010. Hamburg and Brussels, ICP Forests and European Commission: 21.
  23. Forests Europe, UNECE, FAO (2011): State of Europe's Forests 2011. Oslo, Ministerial Conference on the Protection of Forests in Europe: 337.
  24. Fottová D. (2003): Trends in sulphur and nitrogend deposition fluxes in the Geomon network, Czech Republic, between 1994 and 2000. Water Air and Soil Pollution, 150: 73-87. Go to original source...
  25. Frey W., Frahm J.P., Fischer E., Lobin W. (1995): Die Moosund Farnpflanzen Europas. In: Kleine Kryptogamenflora. Stuttgart-Jena-New York, Gustav Fischer Verlag: 426.
  26. Geiser L.H., Jovan S.E., Glavich D.A., Porter M.K. (2010): Lichen-based critical loads for atmospheric nitrogen deposition in Western Oregon and Washington Forests, USA. Environmental Pollution, 158: 2412-2421. Go to original source... Go to PubMed...
  27. Giordani P. (2006): Variables influencing the distribution of epifytic lichens in heterogeneous areas: A case study for Liguria, NW Italy. Journal of Vegetation Science, 17: 195-206. Go to original source...
  28. Giordani P., Calatayud V., Stofer S., Granke O. (2011): Epiphytic lichen diversity in relation to atmospheric deposition. In: Fischer R., Lorenz M. (eds): Forest Condition in Europe. Hamburg, ICP Forests: 128-143.
  29. Gundersen P. (1991): Nitrogen deposition and the forest nitrogen cycle: role of denitrification. Forest Ecology and Management, 44: 15-28. Go to original source...
  30. Gundersen P., Callesen I., de Vries W. (1998): Nitrate leaching in forest ecosystems is related to forest floor C/N ratios. Environmental Pollution, 102: 403-407. Go to original source...
  31. ICP (2010): ICP Forests Manual. Part X, Soil Sampling and Analysis. Available at http://icp-forests.net/page/icp-forestsmanual
  32. Hofmeister J., Mihaljevič M., Hošek J., Sádlo J. (2002): Eutrophication of deciduous forests in the Bohemian Karst (Czech Republic): the role of nitrogen and phosphorus. Forest Ecology and Management, 169: 213-230. Go to original source...
  33. Hofmeister J., Hošek J., Modrý M., Roleček J. (2009): The influence of light and nutrient availability on herb layer species richness in oak-dominated forests in central Bohemia. Plant Ecology, 205: 57-75. Go to original source...
  34. Johannessen T. (2009): Clean air policy under the UNECE Convention on long-range transboundary air pollution: how are monitoring results "translated" to policy action. iForest, 2: 49-50. Go to original source...
  35. Krpeš V. (2005): Ekologie rostlin. [Ecology of Plants.] Ostrava, Ostravská univerzita: 75.
  36. Kubát K., Hrouda L., Chrtek J. jn., Kaplan Z., Kirchner J., Štěpánek J. (eds) (2002): Klíč ke květeně České republiky. [The Key to Flora of the Czech Republic.] Praha, Academia: 927.
  37. Meyer F.D., Paulsen J., Korner C. (2008): Windthrow damage in Picea abies is associated with physical and chemical stem wood properties. Trees - Structure and Function, 22: 463-473. Go to original source...
  38. Moravec J., Balátová-Tuláčková E., Blažková D., Hadač E., Hejný S., Husák Š., Jeník J., Kolbek J., Krahulec F., Kropáč Z., Neuhäusl R., Rybníček K., Řehořek V., Vicherek J. (1995): Rostlinná společenstva České republiky a jejich ohrožení. [Plant communities of the Czech Republic and their Endangering.] 2nd Ed. Litoměřice, Severočeskou přírodou: 206.
  39. Neumann M., Starlinger F. (2001): The significance of different indices for stand structure and diversity in forests. Forest Ecology and Management, 145: 91-106. Go to original source...
  40. Neuhäuslová Z., Blažková D., Grulich V., Husová M., Chytrý M., Jeník J., Jirásek J., Kolbek J., Kropáč Z., Ložek V., Moravec J., Prach K., Rybníček K., Rybníčková E., Sádlo J. (1998): Mapa potenciální přirozené vegetace České republiky. [Map of Potential Natural Vegetation of the Czech Republic.] Praha, Academia: 341.
  41. Nilsson J., Grennfelt P. (1988): Critical loads for sulphur and nitrogen. In: Report from a workshop held at Skokloster, Sweden. Skokloster, 19.-24. March 1988. Copenhagen, Nordic Council of Ministers: 418. Go to original source...
  42. Nilsson J., Cowling E. (1992): A comparison of some national assessments. Studies in Environmental Science, 50: 463-517. Go to original source...
  43. Novotný R., Hůnová I., Skořepová I., Zapletal M., Češka P., Buriánek V., Čonková M., Fadrhonsová V., Hellebrandová K., Chroust P., Lochmanová Z., Lomský B., Maznová J., Šrámek V. (2011): Stav lesních půd jako určující factor vývoje zdravotního stavu, biodiversity a naplňování produkčních I mimoprodukčních funkcí lesů. [Forest soil state as a determining factor of health state development, biodiversity and filling productivity and outside productivity functions of forests.] Annual report of the Grant of the Ministry of Agriculture of the Czech Republic No. QI112A168. Strnady, Forestry and Game Management Research Institute: 55.
  44. Petriccione B. (2002): Survey and assessment of vegetation in the CONECOFOR permanent plots. In: Mosello V., Petriccione B., Marchetto A. (eds): Long-term ecological research in Italian forests ecosystems. Journal of limnology, 61, Supplement 1: 19-24. Go to original source...
  45. Plíva K., Žlábek I. (1986): Přírodní lesní oblasti ČSR. [Nature Forest Regions of the Czech Socialist Republic.] Praha, Státní zemědělské nakladatelství: 313.
  46. Průša E. (2001): Pěstování lesů na typologických základech. [Silviculture on Typological Background.] Kostelec nad Černými lesy, Lesnická práce: 593.
  47. Pyšek P., Chytrý M., Pergl J., Sádlo J., Wild J. (2012): Plant invasions in the Czech Republic: current state, introduction dynamics, invasive species and invaded habitats. In: Pyšek P., Kaplan Z., Chytrý M., Danihelka J. (eds): Flora and Vegetation of the Czech Republic. Preslia, 84: 575-629.
  48. Qinghong L., Bråkenhielm S. (1996): Variability of plant species diversity in Swedish natural forest and its realtion to atmospheric deposition. Vegetatio, 125: 63-72. Go to original source...
  49. Rambousková H. (1984): Some notes on forest ruderalisation. Preslia, 56: 117-123.
  50. Salemaa M., Hamberg L. (2007): Understorey vegetation on level II plots during 1998-2004. In: Merilä P., Kilponen T., Derome J. (eds): Forest Condition Monitoring in Finland. Helsinki, Finnish Forest Research Institute: 69-80.
  51. Schulze E.D., Gerstberger P. (1993): Functional aspects of landscape diversity: a Bavarian example. In: Schulze E.D., Money H.D. (eds): Biodiversity and Ecosystem Function. Berlin, Springer-Verlag: 453-466. Go to original source...
  52. Seidling W. (2005): Ground floor vegetation assessment within the intensive (Level II) monitoring of forest ecosystems in Germany: chances and challenges. European Journal of Forest Research, 124: 301-312. Go to original source...
  53. Skořepová I., Fottová D., Skořepa J. (2009): Příspěvek k odhadu účinků atmosférické depozice dusíku a síry. [The contribution to the estimation of nitrogen and sulphur atmospheric deposition influence.] In: Holoubek I. (ed.): Ovzduší [Atmosphere.] Brno, Masarykova universita: 249-253.
  54. Skořepová I., Skořepa J., Beneš S., Fottová D., Hruška J. (2007): Czech Republic - the national database of nutrient nitrogen critical loads. In: Slootweg J., Posch M., Hettelingh J.P. (eds): Critical Loads of Nitrogen and Dynamic Modelling. Bilthoven, Netherlands Environmental Assessment Agency: 129-132.
  55. Skořepová I., Skořepa J., Fottová D., Hruška J. (2010): Czech Republic. In: Slootweg J., Posch M., Hettelingh J.P. (eds): Progress in the Modelling of Critical Thresholds and Dynamic Modelling, including Impacts on Vegetation in Europe Bilthoven, Coordination Centre for Effects: 131-136.
  56. Spiecker H. (1999): Overview of recent growth trends in European forests. Water, Air, and Soil Pollution, 116: 33-46. Go to original source...
  57. Sýkora L. (1959): Rostliny v geologickém výzkumu. [The Plants in the Geological Research.] Praha, Nakladatelství Československé akademie věd: 322.
  58. Thimonier A., Dupouey J.L., Timbal J. (1992): Floristic changes in the herb-layer vegetation of a decuduous forest in the Lorraine Plain under influence of atmospheric deposition. Forest Ecology and Management, 55: 149-167. Go to original source...
  59. Throop H.L., Lerdau M.T. (2004): Effects of nitrogen deposition on insect herbivory: Implications for community and ecosystem processes. Ecosystems, 7: 109-133. Go to original source...
  60. Tutin T.G., Heywood V.H., Burges N.A., Moore D.M., Valentine D.H, Walters S.M., Webb D.A. (1968-1980): Flora Europaea. Volumes 2-5. Cambridge, Cambridge University Press.
  61. Tutin T.G., Burges N.A., Chater A.O., Edmonson J.R., Heywood, V.H., Moore D.M. Valentine D.H, Walters S.M., Webb D.A. (1993): Flora Europaea. Volume 1. Cambridge, Cambridge University Press: 581.
  62. Tyler G. (1987): Probable effects of soil acidification and nitrogen deposition on the floristic composition of oak (Quercus robur L.) forest. Flora (Jena), 179: 165-170. Go to original source...
  63. van Dobben H.F., Ter Braak C.J.F., Dirkse G.M. (1999): Undergrowth as a biomonitor for deposition of nitrogen and acidity in pine forest. Forest Ecology and Management, 114: 83-95. Go to original source...
  64. van Dobben H.F., van Hinsberg A., Schouwenberg E.P.A.G., Jansen M., Mol-Dijkstra J.P., Wieggers H.J.J., Kros J., de Vries W. (2006): Simulation of critical loads for nitrogen for terrestrial plant communities in the Netherlands. Ecosystems, 9: 32-45. Go to original source...
  65. van Dobben H., de Vries W. (2010): Relation between forest vegetation, atmospheric deposition and site conditions at regional and European scales. Environmental Pollution, 158: 921-933 Go to original source... Go to PubMed...
  66. UBA (2004): Manual on Methodologies and Criteria for Modelling and Mapping Critical Loads and Levels and Air Pollutions Effects, Risks and Trends. Berlin, Federal Environmental Agency: 266.
  67. Wirth V. (1995): Die Flechtenflora. Bestimmung und ökologische Kennzeichnung der Flechten Südwestdeutschlands und angrenzender Gebiete. Stuttgart, Ulmer: 661.
  68. Zapletal M. (2006): Atmospheric deposition of nitrogen and sulphur in relation to critical loads of nitrogen and acidity in the Czech Republic. Journal of Forest Science, 52: 92-100. Go to original source...

This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.