J. For. Sci., 2007, 53(3):93-100 | DOI: 10.17221/2148-JFS
Mineral nutrition in relation to the Norway spruce forest decline in the region Horny Spis (Northern Slovakia)
- 1 Institute of Forest Ecology of the Slovak Academy of Sciences, Zvolen, Slovak Republic
- 2 Faculty of Forestry, Technical University Zvolen, Zvolen, Slovak Republic
In this contribution we present the results of analyses of selected mineral nutrients in assimilatory tissues of spruce trees at different developmental phases (plants, adult trees) in the region Horný Spiš. The very close connection between mineral nutrient cycling and other physiological processes in the plants has been well recognised. The presented analyses of mineral nutrient cycling were done within comprehensive eco-physiological research assessing the physiology and health status of spruce stands in the study area. The research was conducted directly in the stand (Hliníky locality, Horný Spiš - two research plots: 1. plot with spruce stand in advanced decline, 2. control plot - without visible decline symptoms) and, at the same time as a pot experiment. The objective of the pot experiment was to verify the supposed negative influence of soil environment (in the locality with advanced decline of spruce stands) on the growth of spruce trees and their mineral nutrient conditions. The analyses of the material sampled from the stands revealed high amounts of manganese (MnT) that were in the toxicity range on both examined plots. Another negative finding was high amounts of toxic aluminium, primarily in needles of adult trees growing on the plot with symptoms of acute stand decline. This reflects a very low value of pH/H2O - 3.7 (pH/KCl - 3 to 2.8) and total exhaustion of the soil suffering, moreover, from the lack of soil water. As for the differences in amounts of individual macronutrients between the plot with intensive decline and the control plot, no significant differences were found, with the exception of Fe. On the other hand, evident significant differences in risk elements Pb, Hg and Al were found. As for the differences in nutrient contents in spruce seedlings in the pot experiment (variants 1 to 6), we can see significant differences in macronutrient contents (N, P, Ca, K, Mn), in some cases also in risk element contents (Al).
Keywords: nutrition; Norway spruce; stress; spruce decline
Published: March 31, 2007 Show citation
References
- BERGMANN W., 1988. Ernährungsstörungen bei Kulturpflanzen. Enstehung, visuelle und analytische Diagnose. Jena, VEB Gustav Fischer Verlag: 762.
- BONAN G.B., VAN CLEVE K., 1992. Soil temperature, nitrogen mineralization, and carbon source-sink relationship in boreal forests. Canadian Journal of Forest Research, 22: 629-639.
Go to original source...
- EWALD J., 2005. Ecological background of crown condition, growth and nutritional status of Picea abies (L.) Karst. in the Bavarian Alps. European Journal of Forest Research, 124: 9-18.
Go to original source...
- FIEDLER H.J., HÖHNE H., 1985. Mengen und Spurenelementgehalt der Eibennadeln und Fichtennadeln in Abhängigkeit von biologischen und standortkundlichen Faktoren. In: Mikronährstofforschung. Pflanzenernährung Jena, Publishers Indy: 29-31.
- JOKELA A., SARJALA T., HUTTUNEN S., 1998. The structure and hardening status of Scots pine needles at different potassium availability levels. Trees, 12: 490-498.
Go to original source...
- KATZENSTEINER K., GLATZEL G., KAZDA M., STERBA H., 1992. Effects of air pollutants on mineral nutrition of Norway spruce and revitalization of declining stands in Austria. Water, Air, and Soil Pollution, 61: 309-322.
Go to original source...
- KE J., SKELLY J.M., 1994. Relationship between symptoms expressed by Norway spruce and foliar and soil elemental status. Water, Air, and Soil Pollution, 74: 289-305.
Go to original source...
- MAŇKOVSKÁ B., 1997. Concentrations of nutritional and trace elements in spruce and beech foliage as an environmental indicator in Slovakia. Lesnictví, 43: 117-124.
- MARKET B., HERPIN U., MAŇKOVSKÁ B., 1996. A comparison of heavy metal deposition in select Eastern European countries using the moss monitoring method, with special emphasis on the "Black triangle". Science Total Environment, 193: 85-100.
Go to original source...
- PFANZ H., VOLLRATH B., LOMSKÝ B., OPPMANN B., HYNEK V., BEYSCHLANG W., BILGER W., WHITE M. V., MATERNA J., 1994. Life expectancy of spruce needles under extremely high air pollution stress: performance of trees in the Ore Mountains. Trees, 8: 213-222.
Go to original source...
- TAUSZ M., ZELLNIG G., BERMADINGER-STABENTHEINER E., GRILL D., KATZENSTEINER K., GLATZEL G., 1996. Physiological, structural, and nutritional parameters of Norway spruce needles from declining forest stands in Austria. Canadian Journal of Forest Research, 26: 1769-1780.
Go to original source...
- TRIMBACHER C., WEISS P., 1999. Needle surface characteristics and element contents of Norway spruce in relation to the distance of emission sources. Environmental Pollution, 105: 111-119.
Go to original source...
- WEIKERT R.M., WEDLER M., LIPPERT M., SCHRAMEL P., LANGE O.L., 1989. Photosynthetic performance, chloroplast, pigments and mineral content of various needle age classes of spruce with and without the new flush: an experimental approach for analysing forest decline phenomena. Trees, 3: 161-172.
Go to original source...
- ZIMMERMANN F., OPFERMANN M., BAUCKER E., FIEBIG J., NEBE J., 2000. Nutrition-physiological responses of spruce to different levels of sulphur dioxide stress in the Erzgebirge Mountains and the Thuringian Forest, Germany. Forstwissenschaftliches Centralblatt, 119: 193-207.
Go to original source...
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