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Lesnoy Zhurnal

Natural Regeneration on Deadwood in the Primeval Forest Janj. P. 90–102

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Zoran Govedar, Nadezhda Prokhorova, Violeta Babić, Vojislav Dukić, Branko Kanjevac, Srdan Bilić

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UDС

630*231

DOI:

10.37482/0536-1036-2023-5-90-102

Abstract

The paper investigates the natural regeneration of downed deadwood in the Janj primeval forest. The old-growth forest is located in the southwestern part of the Republic of Srpska, which is dominated by dolomite geological base on which cambial soils were formed. The climate is perhumid and mountainous and the plantation belongs to the Piceo-Abieti-Fagetum community. The hectare contains 517 live trees with a total basal area of 53.0 m2/ha and a volume of 876 m3/ha. Twenty six downed deadwoods classified into three different degrees of decay were included in the study, where fir and spruce seedlings were found to be predominant and beech seedlings were rarely represented. The first degree of decay includes 7 (26.9 %), the second 8 (30.7 %), and the third 11 (42.3 %). The total volume of deadwood is 110.82 m3/ha with an average volume per tree of 4.2 m3/ha. The total number of seedlings on fallen dead trees is 836 seedlings (Abies alba – 89.59 %, Picea abies – 10.17 %, Fagus silvatica – 0.24 %). Fir seedlings are found on 25 fallen trees, spruce on 18 fallen trees, and beech on 2 fallen trees. Regarding quality, on average fir seedlings are better than spruce seedlings, but both species show a lot of senescence and very small size of current height increment. Most seedlings belong to the third quality class (fir – 46.2 %, spruce – 61.1 %), followed by second class (fir – 34.6 %, spruce – 22.2 %) and third class (fir – 19.2 %, spruce – 16.7 %). The total number of seedlings was found to have a statistically significant difference in the amount of downed deadwood depending on the degree of decay, and the number of seedlings depended on the degree of tree decay. The number of seedlings increased with increasing volume and length of rotten trees.

Authors

Zoran Govedar1*, Corresponding member of ASARS, Doctor of Forestry, Prof.; ResearcherID: AAH-6314-2019, ORCID: https://orcid.org/0000-0001-9791-4113
Nadezhda Prokhorova2, Senior Lecturer; ORCID: https://orcid.org/0000-0001-6558-7074
Violeta Babić3, Doctor of Forestry, Prof.; ResearcherID: ABA-2260-2021, ORCID: https://orcid.org/0000-0001-6848-8442
Vojislav Dukić1, Doctor of Forestry, Prof.; ORCID: https://orcid.org/0000-0002-1111-0593
Branko Kanjevac3, Doctor of Forestry, Assistant; ResearcherID: ABA-2079-2021, ORCID: https://orcid.org/0000-0002-5940-3600
Srdan Bilić1, Assistant; ORCID: https://orcid.org/0000-0001-8120-9559

Affiliation

1University of Banja Luka, blv. Stepa Stepanović, 75, Banja Luka, 78000, Republic of Srpska; zoran.govedar@sf.unibl.org*, vojislav.dukic@sf.unibl.org, srdjan.bilic@sf.unibl.org
2Voronezh State University of Forestry and Technologies named after G.F. Morozov, ul. Timiryazeva, 8, Voronezh, 394087, Russian Federation; nadnov40@yandex.ru
3University of Belgrade, Kneza Višeslava, 1, Belgrade, 11000, Serbia; violeta.babic@sfb.bg.ac.rsbranko.kanjevac@sfb.bg.ac.rs

Keywords

downed deadwood, understory, seedlings, natural generation, primeval forests, old-growth forests, forest Janj, Republic of Srpska

For citation

Govedar Z., Prokhorova N., Babić V., Dukić V., Kanjevac B., Bilić S. Natural Regeneration on Deadwood in the Primeval Forest Janj. Lesnoy Zhurnal = Russian Forestry Journal, 2023, no. 5, pp. 90–102. (In Russ.). https://doi.org/10.37482/0536-1036-2023-5-90-102

References

  1. Allen C.D., Macalady A.K., Chenchouni H., Bachelet D., McDowell N., Vennetier M., Kitzberger T., Rigling A., Breshears D.D., Hogg E.H., Gonzalez P., Fensham R., Zhang Z., Castro J., Demidova N., Lim J.-H., Allard G., Running S.W., Semerci A., Cobb N. A Global Overview of Drought and Heat-induced Tree Mortality Reveals Emerging Climate Change Risks for Forests. For. Ecol. Manage., 2010, vol. 259, pp. 660–684. https://doi.org/10.1016/j.foreco.2009.09.001

  2. Bauhus J., Baber K., Müller J. Dead Wood in Forest Ecosystems. Oxford bibliographies, 2018, pp. 1–16. https://doi.org/10.1093/obo/9780199830060-0196

  3. Brang P. Ecological Niches of Seedling Establishment in High-elevation Forests. In Sicamous Creek Silvicultural Systems Project. Workshop Proceedings. April 24–25, 1996, Kamloops, British Columbia, Canada. Edited by Chris Hollstedt and Alan Vyse, Working Paper 24. Victoria, BC, Research Branch, British Columbia Ministry of Forests, 1997, pp. 144–153.

  4. Castellani C., Scrinzi G., Tabacchi G., Tosi V. Inventario Forestale Nazionale Italiano (IFNI). Tavole di Cubatura a Doppia Entrata. Trento, Italy, Istituto Sperimentale per l’Assestamento Forestale e per l’Alpicoltura, 1984, pp. 71–75. (In It.).

  5. Christensen M., Hahn K., Mountford E.P., Odor P., Standova´r T., Rozenbergar D., Diaci J., Wijdeven S., Meyer P., Winter S., Vrska T. Dead Wood in European Beech (Fagus Sylvatica) Forest Reserves. Forest Ecology and Management, 2005, vol. 210, pp. 267–282. https://doi.org/10.1016/j.foreco.2005.02.032

  6. Christie D.A., Armesto J.J. Regeneration Microsites and Tree Species Coexistence in Temperate Rain Forests of Chiloé Island, Chile. Journal of Ecology, 2003, vol. 91.5., pp. 776–784. https://doi.org/10.1046/j.1365-2745.2003.00813.x

  7. Govedar Z. Načini Prirodnog Obnavljanja Mešovitih Šuma Jele i Smrče (Abieti Piceetum Illyricum) na Području Zapadnog Dela Republike Srpske. Doktorska disertacija. Šumarski fakultet Univerziteta u Beogradu, Beograd, 2005, pp. 1–300. (In Serb.).

  8. Govedar Z., Vojislav D., Danijela P., Srđan K. Dinamika Nastajanja Otvora Sklopa Sastojina u Dinarskoj Prašumi «Lom». Glasnik Šumarskog fakulteta Univerziteta u Banjoj Luci, 2012, 16, str. 45–60. (In Serb.).

  9. Harmon M.E., Franklin J.F., Swanson F.J., Sollins P., Gregory S.V., Lattin J.D., Anderson N.H., Cline S.P., Aumen N.G., Sedell J.R., Lienkaemper G.W., Cromack K., Cummins K.W. Ecology of Coarse Woody Debris in Temperate Ecosystems. Adv. Ecol. Res., 1986, vol. 15, pp. 133–302. https://doi.org/10.1016/S0065-2504(08)60121-X

  10. Hartman T. Gozdni Rezervati Slovenije – Pragozd Rajhenavski Rog. Univerza Edvarda Kardelja v Ljubljani, Biotehnika fakulteta, Ljubljana, 1987, p. 99. (In Serb.).

  11. Jönsson A.M., Harding S., Bärring L., Ravn H.P. Impact of Climate Change on the Population Dynamics of Ips Typographus in Southern Sweden. Agric. For. Meteorol, 2007, vol. 146, pp. 70–81. https://doi.org/10.1016/j.agrformet.2007.05.006

  12. Kimmins J.P. Forest Ecology, Third edition. University of British Columbia, Vancouver, 2003, 720 p.

  13. Klinka K., Green R.N., Trowbridge R.L., Lowe L.E. Taxonomik Classification of Humus Forms in Ecosystems of British Columbia First Approximation. Province of British Columbia Ministry of Forests, 1981, pp. 1–54.

  14. Korpel S. Die Urwalder der Westkarpaten. Gustav Fischer Verlag, Stuttgart, 1995, Germany. (In Ger.).

  15. Korpel S. Razvoj i Struktura Bukovo-jelovih Prašuma i Njihova Primjena Kod Gospodarenja Prebornom Šumom. Šumarski list, 1996, vol. 119, CXX (3 - 4), pp. 203–208. (In Serb.).

  16. Krehan H. Das Tannensterben in Europa. Eine Literaturstudie mit Ktitischer Stellungnahme. FBVA Berichte, 1989, p. 39. (In Germ.).

  17. Luyssaert S., Detlef Schulze E., Börner A., Knohl A., Hessenmöller D., Law B.E., Ciais P., Grace J. Old-growth Forests as Global Carbon Sinks. Nature, 2008, vol. 455, pp. 213-215. https://doi.org/10.1038/nature07276

  18. Martin M., Fenton N.J., Morin H. Tree-related Microhabitats and Deadwood Dynamics Form a Diverse and Constantly Changing Mosaic of Habitats in Boreal Old-growth Forests. Ecol. Indic., 2021, vol. 128, pp. 107–813. https://doi.org/10.1016/j.ecolind.2021.107813

  19. Mason F. Dinamica di una Foresta della Pianura Padana, Bosco della Fontana. Seconda edizione con linee di gestione forestale. Rapporti scientifici 1. Centro Nazionale Biodiversità Forestale “Bosco Fontana”, Verona. Arcari Editore, Mantova, 2004, p 224. (In It.).

  20. Meier E.S., Lischke H., Schmatz D.R., Zimmermann N.E. Climate, Competition, and Connectivity Affect Future Migration and Ranges of European Trees. Glob Ecol Biogeogr, 2012, 21, pp. 164–178.

  21. Merganičová K., Merganič J., Svoboda M., Bače R., Šebeň V. Deadwood in Forest Ecosystems. Blanco J.A., Lo Y.H. (eds.). Forest Ecosystems – More than Just Trees. 2012, Rijeka, InTech, pp. 81–108. https://doi.org/10.5772/31003

  22. Milin Ž. Istraživanje Elemenata Strukture u Bukovoj Sastojini Karaktera Prašume u Južnom Kučaju. Research of Structure of Virgin European Beech Stand at Južni Kučaj. Glasnik Šumarskog fakulteta, 1954, vol, 7, pp. 37–72. (In Serb.).

  23. Motta R., Garbarino M., Berretti R., Meloni F., Nosenzo A., Vacchiano G. Development of Old-growth Characteristics in Uneven-aged Forests of the Italian Alps. European Journal of Forest Research, vol. 134 (1), 19–31. https://doi.org/10.1007/s10342-014-0830-6

  24. Narukawa Y., Iida S., Tanouchi H., Abe Sh., Yamamoto Sh-Ich. State of Fallen Logs and the Occurrence of Conifer Seedlings and Saplings in Boreal and Subalpine Old-growth Forests in Japan. Ecological Research, 2003, vol. 18.3., pp. 267–277. https://doi.org/10.1046/j.1440-1703.2003.00553.x

  25. Seibold S., Bässler C., Brandl R., et al. Microclimate and Habitat Heterogeneity as the Major Drivers of Beetle Diversity in Dead Wood. Journal of Applied Ecology, 2016, vol. 53.3., pp. 934–943. https://doi.org/10.1111/1365-2664.12607

  26. Siitonen J. Forest Management, Coarse Woody Debris and Saproxylic Organisms: Fennoscandian Boreal Forests as an Example. Ecological Bulletins, 2001, vol. 49, pp. 11–41.

  27. Söderström L. Sequence of Bryophytes and Lichens in Relation to Substrate Variables of Decaying Coniferous Wood in Northern Sweden. Nordic Journal of Botany, 1988, vol. 8.1., pp. 89–97. https://doi.org/10.1111/j.1756-1051.1988.tb01709.x

  28. Stefanović V., Beus V., Burlica Č., Dizdarević H., Vukorep I. Ekološko – Vegetacijska Rejonizacija Bosne i Hercegovine. Radovi Šumarskog Fakulteta Univerziteta U Sarajevu, 1983, vol. 17, no. 1, pp. 1–83. (In Serb.). https://doi.org/10.54652/rsf.1983.v1.i17.275

  29. Takahashi M., Sakai Y., Ootomo R., Shiozaki M. Establishment of Tree Seedlings and Water-soluble Nutrients in Coarse Woody Debris in an Old-growth Picea-Abies Forest in Hokkaido, Northern Japan. Canadian Journal of Forest Research, 2000, vol. 30.7., pp. 1148–1155. https://doi.org/10.1139/x00-042

  30. Tyrrell L.E., Crow T.R. Dynamics of Dead Wood in Old-growth Hemlockhardwood Forests of Northern Wisconsin and Northern Michigan. Canadian Journal of Forest Research, 1994, vol. 24.8., pp. 1672–1683. https://doi.org/10.1139/x94-216

  31. Zanellaa A., Ponge J.Ph., Gobat J.M., Juilleret J., Blouin M., Aubert M., Chertov O., Rubio J.L. Humusica 1, Article 1. Essential Bases – Vocabulary. Applied Soil Ecology, 2018, vol. 122, pp. 10–21. https://doi.org/10.1016/j.apsoil.2017.07.004

  32. Караџић Д. Улога и Значај Патогених Гљива у Сушењу Букве у Србији // Шумарство. 2012. № 1–2. С. 1–16. (In Serb.).



 

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