Otwarty dostęp

Forest Transformation Urgency for Topsoil Diversity Optimization During Environmental Change


Zacytuj

Ali, A. (2019). Forest stand structure and functioning: Current knowledge and future challenges. Forest Ecology & Management 98: 665–677. Search in Google Scholar

Anderson, T.-H. (2003). Microbial eco-physiological indicators to asses soil quality. Agriculture, Ecosystems & Environment 98: 285–293. Search in Google Scholar

Aubert, M., Alard, D., Bureau, F. (2003). Diversity of plant assemblages in managed temperate forests: a case study in Normandy (France). Forest Ecology & Management 175: 321–337. Search in Google Scholar

Augusto, L., Turpault, M.-P., Ranger, J. (2000). Impact of forest tree species on feldspar weathering rates. Geoderma 96: 215–237. Search in Google Scholar

Bellard, C., Bertelsmeier, C., Leadley, P., Thusller, W., Courchamp, F. (2012). Impacts of climate change on the future of biodiversity. Ecology Letters 15: 365–377. Search in Google Scholar

Blakemore, L. C., Metson, A. J. (1960). Micro-Determination of Cation-Exchange Capacity and Total Exchangeable Bases. Soil Science 89: 202–208. Search in Google Scholar

Bremner, J.M. (1996). Nitrogen–Total. In: Sparks D.L., Page A.L., Helmke P.A., Loeppert R.H., Soltanpour P.N., Tabatabai M.A., Johnston C.T., Sumner M.E. (eds.), Methods of Soil Analysis. Part 3. Chemical Methods (pp. 1085–1122). Soil Science Society of America, American Society of Agronomy, Madison. Search in Google Scholar

Buckee, G.K. (1994). Determination of total nitrogen in barley, malt and beer by Kjeldahl procedures and the Dumas combustion method – Collaborative trial. Journal of the Institute of Brewing 100: 57–64. Search in Google Scholar

Büntgen, U., Tegel, W., Nicolussi, K., McCormick, M., Frank, D., Trouet, V., Kaplan, J.O., Herzig, F., Heussner, K.-U., Wanner, H., Luterbacher, J., Esper, J. (2011). 2500 Years of European Climate Variability and Human Susceptibility. Science 331: 578–582. Search in Google Scholar

Chapin, III F.S., Zavaleta, E.S., Eviner, V.T., Naylor, R.L., Vitousek, P.M., Reynolds, H.L., Hooper, D.U., Lavorel, S., Sala, O.E., Hobbie, S.E., Mack, M.C., Díaz, S. (2000). Consequences of changing biodiversity. Nature 405: 234–242. Search in Google Scholar

Chisholm, R.A., Muller-Landau, H.C., Rahman, K.A., Bebber, D.P., Bin, Y., Bohlman, S.A., Bourg, N.A., Brinks, J., Bunyavejchewin, S., Butt N., Cao, H., Cao, M., Cárdenas, D., Chang, L.-W., Chiang, J.-M., Chuyong, G., Condit, R., Dattaraja, H.S., Davies, S., Duque, A., Fletcher, Ch., Gunatilleke, N., Gunatilleke, S., Hao, Z., Harrison, R.D., Howe, R., Hsieh, Ch.-F., Hubbell, S.P., Itoh, A., Kenfack, D., Kiratiprayoon, S., Larson, A.J., Lian, J., Lin, D., Liu, H., Lutz, J.A., Ma, K., Malhi, Y., McMahon, S., McShea, W., Meegaskumbura, M., Razman, S.M., Morecroft, M.D., Nytch, Ch.J., Oliveira, A., Parker, G.G., Pulla, S., Punchi-Manage, R., Romero-Saltos, H., Sang, W., Schurman, J., Su, S.-H., Sukumar, R., Sun, I-F., Suresh, H.S., Tan, S., Thomas, D., Thomas, S., Thompson, J., Valencia, R., Wolf, A., Yap, S., Ye, W., Yuan, Z., Zimmerman, J.K. (2013). Scale-dependent relationships between tree species richness and ecosystem function in forests. Journal of Ecology 101: 1214–1224. Search in Google Scholar

Cools, N., Vesterdal, L., De Vos, B., Vanguelova, E., Hansen, K. (2014). Tree species is the major factor explaining C:N ratios in European forest soils. Forest Ecology & Management 311: 3–16. Search in Google Scholar

Culek, M. (2007). Biogeographical division of the Czech Republic. In: Dreslerová J. (ed.), Ekologie krajiny (pp. 50–57). Lesnická práce, Kostelec nad Černými lesy. Search in Google Scholar

Culek, M., Grulich, V. (2009). Biogeographical division. 1:500 000. In: Hrčianová, T., Mackovčin, P. Zvara, I. (eds.), Landscape Atlas of the Czech Republic (pp. 150–151). Prague: Ministry of Environment, The Silva Tarouca Research Institute for Landscape and Ornamental Gardering. Search in Google Scholar

De Deyn, G.B., Cornelissen, J.H.C., Bardgett, R.D. (2008). Plant functional traits and soil carbon sequestration in contrasting biomes. Ecology Letters 11: 516–531. Search in Google Scholar

Đurský, J., Škvarenina, J., Mindáš, J., Miková, A. (2006). Regional analysis of climate change impact on Norway spruce (Picea abies L. Karst) growth in Slovak mountain forests. Journal of Forest Science 51: 306–315. Search in Google Scholar

Erisman, J. W., Vermeulen, A., Hensen, A., Flechard, C., Dämmgen, U., Fowler, D., Sutton, M., Grünhage, L., Tuovinen, J.-P. (2005). Monitoring and modelling of biosphere/atmosphere exchange of gases and aerosols in Europe. Environmental Pollution 133: 403–413. Search in Google Scholar

Faddy, M.J., Smith, D.M. (2011). Analysis of count data with covariate dependence in both mean and variance. Journal of Applied Statistics 38: 2683–2694. Search in Google Scholar

Fotheringham, A.S., Brunsdon, C., Charlton, M. (2002). Geographically Weighted Regression: the Analysis of Spatially Varying relationships. John Wiley & Sons, Chichester. Search in Google Scholar

Galloway, J.N., Townsend, A.R., Erisman, J.W., Bekunda, M., Cai, Z., Freney, J.R., Martinelli, L.A., Seitzinger, S.P., Sutton, M.A. (2008). Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions. Science 320: 889–892. Search in Google Scholar

Gill, R.M.A., Beardall, V. (2001). The impact of deer on woodlands: the effects of browsing and seed dispersal on vegetation structure and composition. Forestry 74: 209–2018. Search in Google Scholar

Gollini, I., Lu B., Charlton, M., Brundson, C., Harris, P. (2015). GWmodel: an R Package for Exploring Spatial Heterogeneity using Geographically Weighted Models. Journal of Statistical Software 63: 1–52. Search in Google Scholar

Guo, Y., Gong, P., Amundson, R. (2003). Pedodiversity in the United States of America. Geoderma 117: 99–115. Search in Google Scholar

Hopkins, F., Gonzalez-Meler, M.A., Flower, C.F., Lynch, D.J., Czimczik, C., Tang, J., Subke, J.-A. (2013). Ecosystem-level controls on root-rhizosphere respiration. New Phytologist 199: 339–351. Search in Google Scholar

Houba, V.G.J., van der Lee, J.J., Novozamsky, I., Walinga, I. (1989). Soil Analysis Procedures. Soil and Plant Analysis, Part 5. Wageningen Agricultural University. Search in Google Scholar

Houba, V.G.J., Chardon, W.J., Roelse, K. (1993). Influence of Grinding of Soil on Apparent Chemical Composition. Communication in Soil Science and Plant Analysis, 24: 1591–1602. Search in Google Scholar

Ibañez, J.J., Feoli, E. (2013). Global relationships of pedodiversity and biodiversity. Vadose Zone Journal 12: vzj2012.0186. Search in Google Scholar

Kennedy, A.C., Smith, K.L. (1998). Soil microbial diversity and the sustainability of agricultural soils. Plant and Soil 170: 75-86. Search in Google Scholar

Kikkilä, O., Kitunen, V., Smolander, A. (2005). Degradability of dissolved soil organic carbon and nitrogen in relation to tree species. FEMS Microbiology Ecology 53: 33–40. Search in Google Scholar

Klimo, E., Hager, H., Matić, S., Anić, I., Kulhavý, J. (eds.) (2008). Floodplain forests of the temperate zone of Europe. Lesnická práce, Kostelec nad Černými lesy. Search in Google Scholar

Kooch, Y., Jalilvand, H., Bahmanyar, M.A., Pormajidian, M.R. (2008). The Use of Principal Component Analysis in Studying Physical, Chemical and Biological Soil Properties in Southern Caspian Forests (North of Iran). Pakistan Journal of Biological Sciences 11: 366–372. Search in Google Scholar

Kučera, M. (2016). Czech Republic. In: Vidal, C., Alberdi, I., Hernández, L., Redmond, J. (eds.), National Forest Inventories: Assessment of Wood Availability and Use (pp. 307–326). Springer International Publishing Switzerland, Cham. Search in Google Scholar

Kuuluvainen, T. (2002). Natural variability of forests as a reference for restoring and managing biological diversity in boreal Fennoscandinavia. Silva Fennica 36: 97–125. Search in Google Scholar

Langan, S.J., Wilson, M.J. (1994). Critical loads of acid deposition on Scottish soils. Water, Air, and Soil Pollution 75: 177–191. Search in Google Scholar

Legout, A., Nys, C., Picard, J.-F., Turpault, M.-P., Dambrine, E. (2009). Effects of storm Lothar (1999) on the chemical composition of soil solutions and on herbaceous cover, humus and soils (Fougères, France). Forest Ecology & Management 257: 800–811. Search in Google Scholar

Luterbacher, J., Dietrich, D., Xoplaki, E., Grosjean, M., Wanner, H. (2004). European Seasonal and Annual Temperature Variability Trends and Extremes Since 1500. Science 303: 1499–1503. Search in Google Scholar

Mauer, O., Rozmánek, M., Houšková, K. (2018). Drought spells and their impact on the growth of young plantations established with the containerized planting stock. Acta Universitatis agriculturae et silviculturae Mendelianae Brunensis 66: 89–99. Search in Google Scholar

Meloun, M., Militký, J., Hill, M., Brereton, R.G. (2002). Crucial problems in regression modelling and their solutions. Analyst 127: 433–450. Search in Google Scholar

Modrý, M., Hubený, D., Rejšek, K. (2004). Differential response of naturally regenerated European tree species to soil type and light availability. Forest Ecology & Management 188: 185–195. Search in Google Scholar

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). Map of Potential Natural Vegetation of the Czech Republic /Text part/. Academia, Praha. Search in Google Scholar

Oulehle, F., Evans, C.D., Hofmeister, J., Krejčí, R., Tahovská, K., Persson, T., Cudlín, P., Hruška, J. (2011). Major changes in forest carbon and nitrogen cycling caused by declining sulphur deposition. Global Change Biology 17: 3115–3129. Search in Google Scholar

Phillips, J.D., Marion, D.A. (2004). Pedological memory in forest soil development. Forest Ecology & Management 188: 363–380. Search in Google Scholar

Podrázský, V., Remeš, J., Hart, V., Moser, W.K. (2009). Production and humus form development in forest stands established on agricultural lands – Kostelec nad Černými lesy region. Journal of Forest Science 55: 299–305. Search in Google Scholar

Ponge, J.-F., André, J., Zackrisson, O., Bernier, N., Nilsson, M.-C., Gollet, C. (1998). The forest regeneration puzzle. Bioscience 48: 523–530. Search in Google Scholar

Ponge, J.-F., Chevalier, R. (2006). Humus Index as an indicator of forest stand and soil properties. Forest Ecology & Management 233: 165–175. Search in Google Scholar

Pretzsch, H., Biber, P., Schütze, G., Uhl, E., Rötzer, T. (2014). Forest stand growth dynamics in Central Europe have accelerated since 1870. Nature Communications 5: #4967. Search in Google Scholar

Rejšek, K., Samec, P. (2004). Pedogenesis variability effects in relationship to natural tree composition on selected forest sites. In: Rohošková, M. (ed.): Pedologické dny 2004 (pp. 63–64). Pedodiverzita. ČZU v Praze. Search in Google Scholar

Rejšek, K., Haveraaen, O., Sandnes, A., Somerlíková, K. (2010). Soil characteristics under selected broadleaved tree species in East Norway. Journal of Forest Science 56: 295–306. Search in Google Scholar

Římanová, V., Menafoglio, A., Pini, A., Pechanec, V., Fišerová, E. (2020). A permutation approach to the analysis of spatiotemporal geochemical data in the presence of heteroscedasticity. Environmetrics 31: e2611. Search in Google Scholar

Samec, P., Rychtecká, P., Tuček, P., Bojko, J., Zapletal, M., Cudlín, P. (2016). A static model of abiotic predictors and forest ecosystem receptor designed using dimensionality reduction and regression analysis. Baltic Forestry 22: 259–274. Search in Google Scholar

Samec, P., Voženílek, V., Vondráková, A., Macků, J. (2018). Diversity of forest soils and bedrock in soil regions of the Central-European Highlands (Czech Republic). Catena 160: 95–102. Search in Google Scholar

Sedláček, J., Janderková, J., Šefrna, L. (2009) Soil associations. 1:500 000. In: Hrčianová, T., Mackovčin, P. Zvara, I. (eds.), Landscape Atlas of the Czech Republic (pp. 134–135), Prague: Ministry of Environment, The Silva Tarouca Research Institute for Landscape and Ornamental Gardering. Search in Google Scholar

Schad, P., van Huysteen, C., Michéli, E., Vargas, R. (eds.) (2014). World Reference Base for Soil Resources 2014. International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106. FAO, Rome. Search in Google Scholar

Schröder, W., Nickel, S., Jenssen, M., Riediger, J. (2015). Methodology to assess and map the potential development of forest ecosystems exposed to climate change and atmospheric nitrogen deposition: A pilot study in Germany. Science of the Total Environment 521–522: 108–122. Search in Google Scholar

Seppälä, R., Buck, A., Katila, P. (2009). Adaptation of Forests and People to Climate Change – A Global Assessment Report. IUFRO, Vienna – Helsinki. Search in Google Scholar

Shi, Z., Ji, W., Viscarra, Rossel, R.A., Chen, S., Zhou, Y. (2015). Prediction of soil organic matter using a spatially constrained local partial least squares regression and the Chinese vis-NIR spectral library. European Journal of Soil Science 66: 679–687. Search in Google Scholar

Stępień, M., Samborski, S., Gozdowski, D., Dobers, E.S., Chormańaki, J., Szatyłowicz, J. (2015). Assessment of soil texture class on agricultural fields using ECa, Amber NDVI, and topographic properties. Journal of Plant Nutrition and Soil Science 178: 523–536. Search in Google Scholar

Šindelář, J. (1995). A preliminary report on autochthonous species composition of forests in the territory of the Czech Republic. Lesnictví-Forestry 41: 293–299. Search in Google Scholar

Šindelář, J., Frýdl, J., Novotný, P. (2007). Towards a forest stands species composition in consideration of soil-improving and reinforcement forest tree species. Reports of Forestry Research 52: 160–165. Search in Google Scholar

Tinya, F., Márialigeti, S. Bidló, A., Ódor, P. (2019). Environmental drivers of the forest regeneration in temperate mixed forests. Forest Ecology & Management 433: 720–728. Search in Google Scholar

Tomášková, I. (2004). Evaluation of changes in the tree species composition of Czech forests. Journal of Forest Science 50: 31–37. Search in Google Scholar

Tuovinen, J.-P., Hakola, H., Karlsson, P.E., Simpson, D. (2013). Air Pollution Risks to Northern European Forests in a Changing Climate. In: Matyssek, R., Clarke, N., Cudlín, P., Mikkelsen, T.N., Tuovinen, J.-P., Wieser, G., Paoletti, E. (eds.), Climate Change, Air Pollution and Global Challenges: Understanding and Perspectives from Forest Research (pp. 77–99). Developments in Environmental Science 13. Search in Google Scholar

Vacek, S., Bílek, L., Schwarz, O., Hejcmanová, P., Mikeska, M. (2013). Effect of Air Pollution on the Health Status of Spruce Stands. A Case Study in the Krkonoše Mountains, Czech Republic. Mountain Research and Development 33: 40–50. Search in Google Scholar

Vacek, S., Matějka, K., Simon, J., Malík, V., Schwarz, O., Podrázský, V., Minx, T., Tesař, V., Anděl, P., Jankovský, L., Mikeska, M. (2007). Healt status and dynamics of forest ecosystems under air pollution stress in the Giant Mts. Folia Forestalia Bohemica 4: 1–216. Search in Google Scholar

Valtera, M., Šamonil, P., Boublík, K. (2013). Soil variability in naturally disturbed Norway spruce forests in the Carpathians: bridging spatial scales. Forest Ecology & Management 310: 134–146. Search in Google Scholar

Vanmechelen, L., Groenemans, R., Van Ranst, E. (1997). Forest Soil Condition in Europe. Results of a Large-Scale Soil Survey. EC-UN/ECE, Brussels – Geneva. Search in Google Scholar

Whittaker, R.J., Willis, K.J., Field, R. (2001). Scale and species richness: towards a general hierarchical theory of species diversity. Journal of Biogeography 28: 453–470. Search in Google Scholar

White, R.E. (1987). Introduction to the Principles and Practice of Soil Science. Blackwell Scientific Publications, Oxford. Search in Google Scholar

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. Search in Google Scholar

Zar, J.H. (1994). Biostatistical Analysis. Prentice-Hall Int., New Jersey. Search in Google Scholar

Zeng, C., Yang, L., Zhu, A.-X., Rossiter, D.G., Liu, J., Liu, J., Qin, C., Wang, D. (2016). Mapping soil organic matter concentration at different scales using a mixed geographically weighted regression method. Geoderma 281: 69–82. Search in Google Scholar

eISSN:
1805-4196
Język:
Angielski
Częstotliwość wydawania:
3 razy w roku
Dziedziny czasopisma:
Geosciences, other, Life Sciences, Ecology