Open Access

The influence of forest-forming tree species on diversity and spatial distribution of algae in forest litter


Cite

Ahtikoski, A., 2000. The profitability of Scots pine (Pinus sylvestris L.) and silver birch (Betula pendula Roth.) next-generation seed orchards in Finland. Academic dissertation. Helsinki: University of Helsinki. 148 p.Search in Google Scholar

Alves, L.F., Santos, F.A., 2002. Tree allometry and crown shape of four tree species in Atlantic rain forest, southeast Brazil. Journal of Tropical Ecology, 18 (2): 245–260.10.1017/S026646740200216XSearch in Google Scholar

Auty, D., Achim, A., Macdonald, E., Cameron, A.D., Gardiner, B.A., 2014. Models for predicting wood density variation in Scots pine. Forestry: An International Journal of Forest Research, 87 (3): 449–458.10.1093/forestry/cpu005Search in Google Scholar

Deng, X., Zhang, L., Lei, P., Xiang, W., Yan, W., 2014. Variations of wood basic density with tree age and social classes in the axial direction within Pinus massoniana stems in southern China. Annals of Forest Science, 71 (4): 505–516.10.1007/s13595-013-0356-ySearch in Google Scholar

Fajardo, А., 2016. Wood density is a poor predictor of competitive ability among individuals of the same species. Forest Ecology and Management, 372: 217–225.10.1016/j.foreco.2016.04.022Search in Google Scholar

Fischer, R., Lorenz, M., Granke, O., Mues, V., Iost, S., Van Dobben, H., Reinds, G.J., De Vries, W., 2010. Forest condition in Europe. 2010 Technical report of ICP Forests. Work report of the Institute for World Forestry 2010/1. Hamburg: ICP Forests. 175 p.Search in Google Scholar

Chen, L., Xiang, W., Wu, H., Lei, P., Zhang, S., Ouyang, S., Deng, X., Fang, X. 2017. Tree growth traits and social status affect the wood density of pioneer species in secondary subtropical forest. Ecology and Evolution, 7: 5366–5377.10.1002/ece3.3110Search in Google Scholar

Chmura, D., Rahman, M., Tjoelker, M., 2007. Crown structure and biomass allocation patterns modulate aboveground productivity in young loblolly pine and slash pine. Forest Ecology and Management, 243 (2–3): 219–230.10.1016/j.foreco.2007.02.027Search in Google Scholar

Choi, J., Lorimer, C.G., Vanderwerker, J., Cole, W.G., Martin, G.L., 2001. A crown model for simulating long-term stand and gap dynamics in northern hardwood forests. Forest Ecology and Management, 152 (1): 235–258.10.1016/S0378-1127(00)00606-XSearch in Google Scholar

Goussanou, C.A., Guendehou, S., Assogbadjo, A.E., Kaire, M., Sinsin, B., Cuni-Sanchez, A., 2016. Specific and generic stem biomass and volume models of tree species in a West African tropical semi-deciduous forest. Silva Fennica, 50 (2): article ID 1474, 22 p.10.14214/sf.1474Search in Google Scholar

Gargaglione, V., Luis, P., Gerardo, R., 2010. Allometric relations for biomass partitioning of Nothofagus antarctica trees of different crown classes over a site quality gradient. Forest Ecology and Management, 259 (6): 1118–1129.10.1016/j.foreco.2009.12.025Search in Google Scholar

Hakkila, P., 1979. Wood density survey and dry weight tables for pine, spruce and birch stems in Finland. Communicationes Instituti Forestalis Fenniae, 96, 3. Helsinki: [Metsäntutkimuslaitos]. 59 p.Search in Google Scholar

Hasenauer, H., Monserud, R.A., 1996. A crown ratio model for Austrian forests. Forest Ecology and Management, 84 (1–3): 49–60.10.1016/0378-1127(96)03768-1Search in Google Scholar

Hoffmann, C., Usoltsev, A., 2002. Tree-crown biomass estimation in forest species of the Ural and of Kazakhstan. Forest Ecology and Management, 158 (1–3): 59–69.10.1016/S0378-1127(00)00669-1Search in Google Scholar

Husmann, K., Möhring, B., 2017. Modelling the economically viable wood in the crown of European beech trees. Forest Policy and Economics, 78: 67–77.10.1016/j.forpol.2017.01.009Search in Google Scholar

Karenlamri, P.P., Riekkinen, M., 2004. Maturity and growth rate effects on Scots pine basic density. Wood Science Technology, 38 (6): 465–473.10.1007/s00226-004-0243-7Search in Google Scholar

Kovalska, S.S., 2017. Shchil’nist’ derevyny stovburiv sosny zvychaynoyi v umovakh Pivdennoho prydniprovs’koho Polissya [Trunk wood density of Scots pine in the Southern Dnieper Polissya]. Scientific Bulletin of UNFU. 27 (3): 45–48. (In Ukrainian).10.15421/40270309Search in Google Scholar

Lakyda, P.I., 2002. Fitomasa lisiv Ukrainy [Phytomass of forests of Ukraine]. Ternopil: Zbruch. 256 p.Search in Google Scholar

Lakyda, P.I., Petrenko, M.M., Vasylyshyn, R.D., 2007. Bioehnergeticheskij potencial lesosyr’evyh resursov v Ukraine [Bioenergetic potential of forest raw material resources in Ukraine]. Forest Taxation and Forestry Management, 1: 180–185. (In Russian).Search in Google Scholar

Lakyda, P.I., Vasilishin, R.D., Blishchik, V.I., Terentyev, A.Yu., Lakyda, I.P., Domoshavets, G.S, Volodymyrenko, V.M., Belous A.M, Matushevich, L.M., Melnyk, O. M.M., Lakyda, M.O., Aleksiyuk, I.L., Lovynska, V.М., Stratiy, N.V., 2016. Khvoyni derevostany Ukrayiny: fitomasa ta eksperymental’ni dani [Coniferous stands of Ukraine: phytomass and experimental dates]. Korsun-Shevchenkivsky: FOP Gavryshenko V.M. 480 p. (In Ukrainian).Search in Google Scholar

Lakyda, P.I., Vasilishin, R.D., Laschenko, A.G., Terentyev, A.Yu., 2011. Normatyvy otsinky komponentiv nadzemnoyi fitomasy derev holovnykh lisotvirnykh porid Ukrayiny [Standard evaluation components of aboveground trees biomass of the main forestforming species of Ukraine]. Kyiv: EKO-inform. 192 p. (In Ukrainian).Search in Google Scholar

Lindström, H., 1996. Basic density in Norway spruce. Part I. A literature review. Wood and Fiber Science, 28: 15–27.Search in Google Scholar

Lokhmatov, N.A., Gladun, G.B., 2004. Lesnye melioracii v Ukraine: istoriya, sostoyanie, perspektivy [Forest reclamation in Ukraine: history, conditions, prospect]. Kharkov: Novoe slovo. 256 p.Search in Google Scholar

Lovinska, V.M., Sytnyk, S.A., 2016. The structure of Scots pine and Black locust forests in the Northern Steppe of Ukraine. Journal of Forest Science, 62 (7): 329–336.10.17221/120/2015-JFSSearch in Google Scholar

Mateyko, І.М., 2013. Modelyuvannya parametriv krony derev yasena zvychaynoho v umovakh Pravoberezhnoho Lisostepu Ukrayiny [Simulation of cross-sections of crowns of trees in plantations of common ash in conditions of Right-bank forest-steppe of Ukraine]. Scientific Bulletin of UNFU, 23 (2): 77–83. (In Ukrainian).Search in Google Scholar

Mykolenko, S., Liedienov, V., Kharytonov, M., Makieieva, N., Kuliusha, T., Queralt, I., Marguí, E., Hidalgo, M., Pardini, G., Gispert, M., 2018. Presence, mobility and bioavailability of toxic metal (oids) in soil, vegetation and water around a Pb-Sb recycling factory (Barcelona, Spain). Environmental Pollution, 237: 569–580.10.1016/j.envpol.2018.02.05329525624Search in Google Scholar

Pasternak, V. P., Nazarenko, V. V., Karpets, Iu. V., 2014. Yakisni kharakterystyky derevyny sosny zvychainoi ta fitomasa sosniakiv lisostepu Kharkivshchyny [Qualitative characteristics of Scots pine wood and phytomass of pine forests of the forest-steppe of Kharkiv region]. Lisivnytstvo i Ahrolisomelioratsiya [Forestry & Forest Melioration], 125: 38–45. (In Ukrainian).Search in Google Scholar

Pretzsch, H., Biber, P., Uhl, E., Dahlhausen, J., Rötzer, T., Caldentey, J., Koike, T., Con, T., Chavanne, A., Seifert, T., Toit, B., Farnden, G., Pauleit, S., 2015. Crown size and growing space requirement of common tree species in urban centres, parks, and forests. Urban Forestry & Urban Greening, 14: 466–479.10.1016/j.ufug.2015.04.006Search in Google Scholar

Pretzsch, H., Dieler, J., 2011. Evidence of variant intra- and interspecific scaling of tree crown structure and relevance for allometric theory. Oecologia, 169: 637–649.10.1007/s00442-011-2240-5337508522237660Search in Google Scholar

Polláková, N., Šimanský, V., Jonczak, J., 2017. Characteristics of physical properties in soil profiles under selected introduced trees in the Nature Reserve Arboretum Mlyňany, Slovakia. Folia Oecologica, 44 (2), 78–86.10.1515/foecol-2017-0010Search in Google Scholar

Rautiainen, M., Mõttus, M., Stenberg, P., Ervasti, S., 2008. Crown envelope shape measurements and models. Silva Fennica, 42 (1): 19–33.10.14214/sf.261Search in Google Scholar

Repola, J., 2006. Models for vertical wood density of Scots pine, Norway spruce and birch stems, and their application to determine average wood density. Silva Fennica, 40 (4): 673–685.10.14214/sf.322Search in Google Scholar

Roaki, I., Sillett, S., Carroll, A., 2017. Crown dynamics and wood production of Douglas-fir trees in an old-growth forest. Forest Ecology and Management, 384: 157–168.10.1016/j.foreco.2016.10.047Search in Google Scholar

Schneider, J., Vyskot, I., Redlichová, R., 2015. The influence of age on the functional effect of forest stands with simplified spatial structure. Folia Oecologica, 42 (2): 122–129.Search in Google Scholar

Sytnyk, S., Lovynska, V., Lakyda, I., 2017. Foliage biomass qualitative indices of selected forest forming tree species in Ukrainian Steppe. Folia Oecologica, 44 (1): 38-45.10.1515/foecol-2017-0005Search in Google Scholar

Tahvanainen, T., Forss, E., 2008. Individual tree models for the crown biomass distribution of Scots pine, Norway spruce and birch in Finland. Forest Ecology and Management, 255 (3–4): 455–467.10.1016/j.foreco.2007.09.035Search in Google Scholar

Tomczak, A., 2013. Selected technical parameters of juvenile wood in Scots pine (Pinus sylvestris L.) – variation between social classes of tree position in the dominant stand. Acta Scientarum Polonorum, Silvarum Colendarum Ratio et Industria Lignaria, 12 (4): 43–53.Search in Google Scholar

Viana, H., Aranha, J., Lopes, D., Cohen, W., 2012. Estimation of crown biomass of Pinus pinaster stands and shrubland above-ground biomass using forest inventory data, remotely sensed imagery and spatial prediction models. Ecological Modelling, 22 (6): 22–35.10.1016/j.ecolmodel.2011.11.027Search in Google Scholar

Viherä-Aarnio A., Velling, P., 2017. Growth, wood density and bark thickness of silver birch originating from the Baltic countries and Finland in two Finnish provenance trials. Silva Fennica, 51 (4): article ID 7731, 18 p.10.14214/sf.7731Search in Google Scholar

Vítková, M., Müllerová, J, Sádlo, J, Pergl, J., Pyšek, P., 2017. Black locust (Robinia pseudoacacia L.) beloved and despised: a story of an invasive tree in Central Europe. Forest Ecology and Management, 32: 287–302.10.1016/j.foreco.2016.10.057614316730237654Search in Google Scholar

Yantsev, A.V., 2012. Vybor statističeskikh kriteriev [Selection of statistical criteria]. Simferopol’: Tavričeskii nacional’nyi universitet imeni V. I. Vernadskogo. 183 p.Search in Google Scholar

Zhang, L.Y., Deng, X.W., Lei, X.D., Xing, W.H., Peng, C.H., Lei, P.H., Yan, W.D., 2012. Determining stem biomass of Pinus massoniana L. through variations in basic density. Forestry, 85 (5): 601–609.10.1093/forestry/cps069Search in Google Scholar

Zeller, L.,Ammer, C.,Annighöfer, P., Biber, P., Marshall, J., Schütze, G., Gaztelurrutia, M, Pretzsch, H., 2017. Tree ring wood density of Scots pine and European beech lower in mixed-species stands compared with monocultures. Forest Ecology and Management, 400: 363–374.10.1016/j.foreco.2017.06.018Search in Google Scholar

eISSN:
1338-7014
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, other, Plant Science, Zoology, Ecology