J. For. Sci., 2020, 66(12):501-510 | DOI: 10.17221/139/2020-JFS

The long-term dynamics of the old-growth structure in the National Nature Reserve Badínsky pralesOriginal Paper

Ladislav ©umichrast ORCID...*, Jaroslav Vencurik, Ján Pittner, Stanislav Kucbel
Department of Silviculture, Faculty of Forestry, Technical University in Zvolen, Zvolen, Slovakia

The main goal of this paper was to evaluate structure dynamics in the fir-beech, old-growth forest Badínsky prales. Measurements were taken on four permanent research plots (0.5 ha each) between 1970 and 2018, typically in ten-year intervals. In order to assess long-term structure dynamics, this study used basic stand characteristics and selected structural indices - the relative density (RD), coefficient of homogeneity (H), and structural complexity index (SCI). Species composition was quantified by the relative importance value (RIV), and a detrended correspondence analysis was carried out for the visualisation of long-term changes. The long-term mean of the stand volume reached 634 ± 99 m3.ha-1, and the mean of the basal area was 36.6 ± 4.0 m2.ha-1. Calculated values of the coefficient of homogeneity (1.46-2.54) were similar to values in other old-growth forests with a comparable tree species composition. An increasing trend in beech RIV values was observed; on the other hand, fir RIV values fell by approximately 20%-25%. In 2018, maximal values of the basal area, stand volume and relative density were recorded. These high values may indicate better growth conditions due to climate change, as well as fewer disturbance events in the last few decades.

Keywords: old-growth forests; structural dynamics; structural indices; Fagus sylvatica; Abies alba

Published: December 31, 2020  Show citation

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©umichrast L, Vencurik J, Pittner J, Kucbel S. The long-term dynamics of the old-growth structure in the National Nature Reserve Badínsky prales. J. For. Sci. 2020;66(12):501-510. doi: 10.17221/139/2020-JFS.
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References

  1. Bauhus J., Puettmann K., Messier C. (2009): Silviculture for old-growth attributes. Forest Ecology and Management, 258: 525-537. Go to original source...
  2. Bublinec E., Pichler V. (2001): Slovenské pralesy: Slovak primeval forests diversity and conservation: diverzita a ochrana. Zvolen, Ústav ekológie lesa SAV: 200.
  3. Camino R.D. (1976): Zur Bestimmung der Bestandeshomogenität, Allgemeine Forst- und Jagdzeitung, 147: 54-58.
  4. Cottam G., Curtis J.T. (1956): The use of distance measurements in phytosociological sampling. Ecology, 37: 451-460. Go to original source...
  5. Del Rîo M., Pretzsch H., Alberdi I., Bielak K., Bravo F., Brunner A., Condés S., Ducey M.J., Fonseca T., Von LuĚ?pke N., Pach M., Peric S., Perov T., Souidi Z., Spathelf P., Sterba H., Tijardovic M., Tomé M., Vallet P., Bravo-Oviedo A. (2016): Characterization of structure, dynamics, and productivity of mixed-species stands: review and perspectives. European Journal of Forest Research, 135: 23-49. Go to original source...
  6. Diaci J., Rozenbergar D., Anic I., Mikac S., Saniga M., Kucbel S., Visnjic C., Ballian D. (2011): Structural dynamics and synchronous silver fir decline in mixed old-growth mountain forests in Eastern and Southeastern Europe. Forestry, 84: 479-491. Go to original source...
  7. Ducey M.J., Knapp R.A. (2010): A stand density index for complex mixed species forests in the north-eastern United States. Forest Ecology and Management, 260: 1613-1622. Go to original source...
  8. Dulamsuren C., Hauck M., Kopp G., Ruff M., Leuschner C. (2016): European beech responds to climate change with growth decline at lower, and growth decrease at higher elevations in the center of its distribution range (SW Germany). Trees, 31: 673-686. Go to original source...
  9. Elling W., Dittmar C., Pfaffelmoser K., Rötzer T. (2009): Dendroecological assessment of the complex causes of decline and recovery of the growth of silver fir (Abies alba Mill.) in Southern Germany. Forest Ecology and Management, 257: 1175-1187. Go to original source...
  10. Feldmann E., Drössler l., Hauck M., Kucbel S., Pichler V., Leuschner Ch. (2018): Canopy gap dynamics and tree understory release in a virgin beech forest, Slovakian Carpathians. Forest Ecology and Management, 415-416: 38-46. Go to original source...
  11. Filípek M. (2019): ©trukturálna diverzita a jej dynamika vo vybraných prîrodných lesoch Slovenska. [Ph.D. Thesis.] Zvolen, Technical University in Zvolen, Faculty of Forestry. (in Slovak)
  12. Firm D., Nagel T.A., Diaci J. (2009): Disturbance history and dynamics of an old-growth mixed species mountain forest in the Slovenian Alps. Forest Ecology and Management, 257: 1893-1901. Go to original source...
  13. Hill M.O., Gauch H.G. (1980): Detrended correspondence analysis: an improved ordination technique. Vegetation, 42: 47-58. Go to original source...
  14. Holeksa J., Saniga M., Szwagrzyk J., Czerniak M., Staszyńska K., Kapusta P. (2009): A giant tree stand in the West Carpathians - an exception or a relic of formerly widespread mountain European forests? Forest Ecology and Management, 257: 1577-1585. Go to original source...
  15. Jaehne S., Dohrenbusch A. (1997): Ein Verfahren zur Beurteilung der Bestandesdiversität. Forstwissenschaftliches Centralblatt, 116: 333-345. Go to original source...
  16. Jaloviar P., Saniga M., Kucbel S., Pittner J., Vencurik J., Dovciak M. (2017): Seven decades of change in a European old-growth forest following a stand-replacing wind disturbance: A long-term case study. Forest Ecology and Management, 399: 197-205. Go to original source...
  17. Korpeµ ©. (1958): Príspevok k ątúdiu pralesov na Slovensku na príklade Badínskeho pralesa. Lesnícky časopis, 4(6): 349-385. (in Slovak)
  18. Korpeµ ©. (1968): Badínsky prales. Československá ochrana prírody, 6: 311-315. (in Slovak)
  19. Korpeµ ©. (1989): Pralesy Slovenska. Bratislava, Veda: 328. (in Slovak)
  20. Král K., Janîk D., Vrąka T., Adam D., Hort L., Unar P., ©amonil P. (2010): Local variability of stand structural features in beech dominated natural forests of Central Europe: implications for sampling. Forest Ecology and Management, 260: 2196-2203. Go to original source...
  21. Kriľová E. (2000): Lesné spoločenstvá NPR Badínsky prales. Chránené územia Slovenska: ątvr»ročný odbornometodický a informačný časopis ątátnej ochrany prírody, 46: 36-37. (in Slovak) Go to original source...
  22. Kucbel S., Jaloviar P., Saniga M., Vencurik J., Klimaą V. (2010): Canopy gaps in an old-growth fir-beech forest remnant of Western Carpathians. European Journal of Forest Research, 129: 249-259. Go to original source...
  23. Leibundgut H. (1959): UĚ?ber Zweck und Methodik der Struktur und Zuwachsanalyse von UrwaĚ?ldern. Schweizerische Zeitschrift für Forstwesen, 110: 111-124.
  24. Linder M., Maroschek M., Netherer S., Kremer A., Barbati A., Garcia-Gonzalo J., Seidl R., Delzon S., Corona P., Kolström P., Lexer M.J., Marchetti M. (2010): Climate change impacts, adaptive capacity, and vulnerability of European forest ecosystems. Forest Ecology and Management, 259: 698-709. Go to original source...
  25. Long J.N., Daniel T.W. (1990): Assessment of growing stock in uneven-aged stands. Western Journal of Applied Forestry, 5: 93-96. Go to original source...
  26. McElhinny C., Gibbons P., Brack C., Bauhus J. (2005): Forest and woodland stand structural complexity: Its definition and measurement. Forest Ecology and Management, 218: 1-24. Go to original source...
  27. Millar C.I., Stephenson N.L. (2015): Temperate forest health in an era of emerging megadisturbance. Science, 349: 823-826. Go to original source... Go to PubMed...
  28. Nagel T.A., Diaci J. (2006): Intermediate wind disturbance in an old-growth beech-fir forest in southeastern Slovenia. Canadian Journal of Forest Research, 36: 629-638. Go to original source...
  29. Nagel T.A., Svoboda M., Diaci J. (2006): Regeneration patterns after intermediate wind disturbance in an old-growth Fagus-Abies forest in southeastern Slovenia. Forest Ecology and Management, 226: 268-278. Go to original source...
  30. Peck J.E., Commarmot B., Hobi M.L., Zenner E.K. (2015): Should reference conditions be drawn from a single 10 ha plot? Assessing representativeness in a 10,000 ha oldgrowth European beech forest. Restoration Ecology, 23: 927-935. Go to original source...
  31. Petráą R., Pajtík J. (1991): Sústava československých objemových tabuliek drevín. Lesnícky časopis, 37: 49-56. (in Slovak)
  32. Petritan I.C., Commarmot B., Hobi M.L., Petritan A.M., Bigler C., Abrudan I.V., Rigling A. (2015): Structural patterns of beech and silver fir suggest stability resilience of the virgin forest Sinca in the Southern Carpathians, Romania. Forest Ecology and Management, 356: 184-195. Go to original source...
  33. Prislan P., Gričar J., Čufar K., de Louis M. Merela M., Rossi S. (2019): Growing season and radial growth predicted for Fagus sylvatica under climate change. Climatic Change, 153: 181-197. Go to original source...
  34. Prodan M. (1951): Messung der Waldbestände. Frankfurt am Main, J. D. Sauerländer's Verlag: 260.
  35. Reineke L.H. (1933): Perfecting a stand density index for even-aged forests. Journal of Agricultural Research, 46: 627-638.
  36. Saniga M., Kucbel S., Jaloviar P., Vencurik J. (2012): ©truktúra, vývoj, textúra, disturbančný reľim a produkčné procesy Badínskeho pralesa. Zvolen, Technická univerzita vo Zvolene: 60. (in Slovak)
  37. Saniga M., Pittner J., Kucbel S., Filîpek M., Jaloviar P., Sedmáková D., Vencurik J. (2019): Dynamické zmeny ątruktúry, regeneračné procesy a zmena objemu mrĚ?tveho dreva v rámci vývojového cyklu bukového pralesa NPR Stuľica (časová ątúdia). Zvolen. Technická univerzita vo Zvolene: 61. (in Slovak)
  38. Saniga M., Pittner J., Kucbel S., Jaloviar P., Sedmáková D., Vencurik J. (2018): ©truktúra, produkcia bio- a nekromasy a regeneračné procesy bukových pralesov NPR Haveąová a Kyjov (časová ątúdia). Zvolen, Technická univerzita vo Zvolene: 54. (in Slovak)
  39. Schütz J.P., Saniga M., Diaci J., Vrąka T. (2016): Comparing close-to-nature silviculture with processes in pristine forests: lessons from Central Europe. Annals of Forest Science, 73: 911-921. Go to original source...
  40. Seidl R., Thom D., Kautz M., Martin-Benito D., Peltoniemi M., Vacchiano G., Wild J., Ascoli D., Petr M., Honkaniemi J., Lexer M.J., Trotsiuk V., Mairota P., Svoboda M., Fabrika M., Nagel T.A., Reyer C.P.O. (2017): Forest disturbances under climate change. Nature Climate Change, 7: 395-402. Go to original source... Go to PubMed...
  41. Thom D., Seidl R. (2016): Natural disturbance impacts on ecosystem services and biodiversity in temperate and boreal forests. Biological Reviews, 91: 760-781. Go to original source... Go to PubMed...
  42. Watson J.E.M., Evans T., Venter O., Williams B., Tulloch A., Stewart C., Thompson I., Ray J.C., Murray K., Salazar A., McAlpine C., Potapov, P., Walston J., Robinson J.G., Painter M., Wilkie D., Filardi C., Laurance W.F., Houghton R.A., Maxwell S., Grantham H., Samper C., Wang S., Laestadius L., Runting R.K., Silva-Chávez G.A., Ervin J., Lindenmayer D. (2018): The exceptional value of intact forest ecosystems. Nature Ecology & Evolution, 2: 599-610. Go to original source... Go to PubMed...
  43. Wirth C., Gleixner G., Heimann M. (2009): Old-Growth Forests: Function, Fate and Value - an Overview. In: Wirth C., Gleixner G., Heimann M. (eds.): Old-Growth Forests. Ecological Studies (Analysis and Synthesis), Vol. 207. Springer, Berlin, Heidelberg: 3-10. Go to original source...
  44. Zenner E.K., Hibbs D.E. (2000): A new method for modelling the heterogeneity of forest structure. Forest Ecology and Management, 129: 75-87. Go to original source...

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