J. For. Sci., 2008, 54(6):255-261 | DOI: 10.17221/816-JFS

Can 13C stable isotope record of Norway spruce tree rings display the effect of environmental conditions?

L. Píšová1, M. Svoboda1, J. Šantrůček2, H. Šantrůčková2
1 Faculty of Forestry and Wood Sciences, Czech University of Life Sciences Prague, Prague, Czech Republic
2 Faculty of Science, University of South Bohemia in České Budějovice, České Budějovice, Czech Republic

The Bohemian Forest Mts. (Šumava) were exposed to heavy atmospheric pollution in the last century. A possible negative effect of atmospheric pollution on tree physiology has been studied using the isotopic composition, Δ13C, of tree rings. The wood is depleted of 13C relative to the air due to isotopic discrimination against 13C and preferred uptake of 12C during photosynthesis. The ratio 13C/12C (Δ13C) reflects the relative magnitudes of net assimilation and stomatal conductance that relate to demand and supply of CO2. Carbon-13 data are thus a useful index for assessing intrinsic water use efficiency (mark period of drought or root system damages) and also could indicate assimilation organ injure (needle damage caused due to acid rain etc.). A decrease in Δ13C implies a negative effect of environmental conditions on tree physiology. Presumably, changes in soil pH and aluminium content as an indirect effect of atmospheric pollution could have an impact on tree physiology. Our results showed that the isotopic signal varied around the average, but the Δ13C signal was decreasing from the 1950s to 1980s and then increasing again starting in the 1990s. This trend is in accordance with the monitored atmospheric pollution and soil solution pH changes.

Keywords: Δ13C; air pollution; tree physiology; Bohemian Forest Mts.; soil pH; aluminium; soil acidification

Published: June 30, 2008  Show citation

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Píšová L, Svoboda M, Šantrůček J, Šantrůčková H. Can 13C stable isotope record of Norway spruce tree rings display the effect of environmental conditions? J. For. Sci. 2008;54(6):255-261. doi: 10.17221/816-JFS.
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References

  1. BORELLA S., LEUENBERGER M., SAURER M., SIEGWOLF R., 1998. Reducing uncertainties in delta C-13 analysis of tree rings: Pooling, milling, and cellulose extraction. Journal of Geophysical Research - Atmospheres, 103 (D16): 19519-19526. Go to original source...
  2. DAWSON T.E., MAMBELLI S., PLAMBOECK A.H., TEMPLER P.H., TU K.P., 2002. Stable isotopes in plant ecology. Annual Review of Ecology Systematics, 33: 507-59. Go to original source...
  3. ELHANI S., GUEHL J.M., NYS C., PICARD J.F., DUPOUEY J.L., 2005. Impact of fertilization on tree-ring δ15N and δ13C in beech stands: a retrospective analysis. Tree Physiology, 25: 1437-1446. Go to original source... Go to PubMed...
  4. FARQUHAR G.D., O,LEARY M.H., BERRY J.A., 1982. On the relationship between carbon isotope discrimination and intercellular carbon dioxide concentration in leaves. Australian Journal of Plant Physiology, 9: 121-137. Go to original source...
  5. FARQUHAR G.D., EHLERINGER J.R., HUBICK K.T., 1989. Carbon isotope discrimination and photosynthesis. Annual Reviews of Plant Physiology and Plant Molecular Biology, 40: 503-537. Go to original source...
  6. GUYETTE R.P., CUTTER B.E., 1994. Barium and manganese trends in tree-rings as monitors of sulfur deposition. Water, Air, and Soil Pollution, 73: 213-223. Go to original source...
  7. HARLOW B.A., MARSHALL J.D., ROBINSON A.P., 2006. A multi-species comparison of delta C-13 from whole wood, extractive-free wood and holocellulose. Tree Physiology, 26: 767-774. Go to original source... Go to PubMed...
  8. Helle G., Schlesser G.H., 2004. Interpreting climate proxies from tree-rings. In: Fischer H., Floeser G., Kumke T., Lohmann G., Miller H., Negendank J.F.W., von Storch H. (eds), The KIHZ Project: Towards a Synthesis of Holocene Proxy Data and Climate Models: 129-148. Go to original source...
  9. HERBAUTS J., DE BUYL E., 1981. The relation between spruce monoculture and incipient podzolisation in ochreous brown earths of the Belgian Ardennes. Plant and Soil, 59: 33-49. Go to original source...
  10. HILL S.A., WATERHOUSE J.S., FIELD E.M., SWITSUR V.R., APREES T., 1995. Rapid recycling of triose phosphate in oak stem tissue. Plant, Cell and Environment, 18: 931-936. Go to original source...
  11. KETTLE H., KOPÁČEK J., HEJZLAR J., 2003. Modelling air temperature at Čertovo lake back to 1781. Silva Gabreta, 9: 15-32.
  12. KOPÁČEK J., VESELÝ J., STUCHLÍK E., 2001. Sulphur and nitrogen fluxes and budgets in the Bohemian Forest and Tatra Mountains during the Industrial Revolution (1850-2000). Hydrology and Earth System Sciences, 5: 391-406. Go to original source...
  13. KOPÁČEK J., STUCHLÍK E., VESELÝ J., SCHAUMBURG J., ANDERSON I.C., FOTT J., HEJZLAR J., VRBA J., 2002a. Hysteresis in reversal of Central European mountain lakes from atmospheric acidification. Water, Air, and Soil Pollution, 2: 91-114. Go to original source...
  14. KOPÁČEK J., KAŇA J., ŠANTRŮČKOVÁ H., PORCAL P., HEJZLAR J., PICEK T., ŠIMEK M., VESELÝ J., 2002b. Physical, chemical, and biochemical characteristics of soils in watersheds of the Bohemian Forest lakes: II Čertovo and Černé lakes. Silva Gabreta, 8: 63-93.
  15. KROUPOVá M., 2002. Dendroecological study of spruce growth in regions under long-term air pollution load. Journal of Forest Science, 48: 536-548. Go to original source...
  16. LEAVITT S.W., LONG A., 1985. Stable-carbon isotopic composition of maple sap and foliage. Plant Physiology, 78: 427-429. Go to original source... Go to PubMed...
  17. LIU Y., MA L., LEAVITT S.W., CAI Q., LIU W., 2004. A preliminary seasonal precipitation reconstruction from tree-ring stable carbon isotopes at Mt. Helan, China since AD 1804. Global Planet Change, 41: 229-239. Go to original source...
  18. LOADER N.J., ROBERTSON I., McCARROLL D., 2003. Comparison of stable isotope ratios in the whole wood, cellulose and lignin of oak tree-rings. Palaeography, Palaeoclimatology, Palaeoecology, 196: 395-407. Go to original source...
  19. MA J.V., 2005. Plant root responses to three abundant soil minerals: silicon, aluminium and iron. Critical Reviews in Plant Sciences, 24: 267-281. Go to original source...
  20. MAJER V., COSBY B.J., KOPÁČEK J., VESELÝ J., 2003. Modelling reversibility of Central European mountain lakes from acidification: Part I - the Bohemian Forest. Hydrology and Earth System Sciences, 7: 494-509. Go to original source...
  21. MARTIN B., SUTHERLAND E.K., 1990. Air pollution in the past recorded in with and stable carbon isotope composition of annual growth rings of Douglas-fir. Plant, Cell and Environment, 13: 839-844. Go to original source...
  22. MATZNER E., MURACH D., 1995. Soil changes induced by air pollutant deposition and their implication for forests in Central Europe. Water, Air and Soil Pollution, 85: 63-76. Go to original source...
  23. McCARROLL D., LOADER N.J., 2004. Stable isotopes in tree rings. Quaternary Science Reviews, 23: 771-801. Go to original source...
  24. OSTONEN I., LOHMUS K., PAJUSTE K., 2005. Fine root biomass, production and its proportion of NPP in a fertile middle-aged Norway spruce forest: Comparison of soil core and ingrowth core methods. Forest Ecology and Management, 212: 264-277. Go to original source...
  25. PSENNER R., CATALAN J., 1994. Chemical composition of lakes in crystalline basins: A combination of atmospheric deposition, geological background, biological activity, and human action. In: MARGALEF R. (ed.), Limnology Now: A Paradigm of Planetary Problems. New York, Elsevier: 255-314.
  26. PUHE J., 2003. Growth and development of the root system of Norway spruce (Picea abies) in forest stands - a review. Forest Ecology and Management, 175: 253-273. Go to original source...
  27. SÉGUIN V., GAGNON CH., COURCHESNE F., 2004. Changes in water extractable metals, pH and organic carbon concentrations at the soil-root interface of forested soils. Plant and Soil, 260: 1-17. Go to original source...
  28. SCHLESSER G.H., HELLE G., LÜCKE A., VOS H., 1999. Isotopes signals as climate proxies: the role of transfer functions in the study of terrestrial archives. Quaternary Science Reviews, 18: 927-943. Go to original source...
  29. SCHWEINGRUBER F.H., 1996. Tree Rings and Environment. Dendroecology. Birmensdorf, Swiss Federal Institute for Forest, Snow and Landscape Research. Berne, Stuttgart, Vienna, Haupt: 609.
  30. SOLBERG S., TORSETH K., 1997. Crown condition of Norway spruce in relation to sulphur and nitrogen deposition and soil properties in southeast Norway. Environmental Pollution, 96: 19-27. Go to original source... Go to PubMed...
  31. SOLBERG S., ANDREASSEN K., CLARKE N., TORSETH K., TVEITO O.E., STRAND G.H., TOMTER S., 2004. The possible influence of nitrogen and acid deposition on forest growth in Norway. Forest Ecology and Management, 192: 241-249. Go to original source...
  32. SUTINEN S., LUMME I., MÄENPÄÄ M., ARKHIPOV V., 1998. Light microscopic structure of needles of Scots pine (Pinus sylvestris L.) in relation to air pollution and needle element concentrations in S.E. Finland and the Karelian Isthmus, N.W. Russia. Trees, 12: 281-288. Go to original source...
  33. SWITSUR V.R., WATERHOUSE J.S., FIELD E.M., CARTER A.H.C., LOADER N.J., 1995. Stable isotopes studies in tree rings from oak-techniques and some preliminary results. Paläoklimaforschung, 15: 129-140.
  34. ŠANTRŮČKOVÁ H., VRBA J., PICEK T., KOPÁČEK J., 2004. Soil biochemical activity and P transformations and losses from acidified forest soils. Soil Biology & Biochemistry, 36: 1569-1576. Go to original source...
  35. ŠANTRŮČKOVÁ H., ŠANTRŮČEK J., ŠETLÍK J., SVOBODA M., KOPÁČEK J., 2007. Carbon isotopes in tree ring of Norway spruce exposed to atmospheric pollution. Environmental Science & Technology, 41: 5778-5782. Go to original source... Go to PubMed...
  36. VESELÝ J., 1994. Investigation of the nature of the Šumava lakes: a review. Časopis Národního Muzea, Řada přírodovědná, 163: 103-120.
  37. WEST J.B., BOWEN G.J., CERLING T.E., EHLERINGER J.R., 2006. Stable isotopes as one of nature,s ecological recorders. Trends in Ecology and Evolution, 21: 408-414. Go to original source... Go to PubMed...
  38. WILSON R.J.S., ELLING W., 2004. Temporal instability in tree growth/climate response in the Lower Bavarian Forest region: Implications for dendroclimatic reconstruction. Trees, 18: 19-28. Go to original source...

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