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Effects of enhanced UV-B radiation and elevated carbon dioxide concentrations on a sub-arctic forest heath ecosystem

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UV-B and Biosphere

Part of the book series: Advances in vegetation science ((AIVS,volume 17))

Abstract

An experiment is described which studies the effects of enhanced UV-B radiation (simulating a 15% reduction in the Ozone layer) and elevated atmospheric concentrations of CO2 (600 ppm) on the dwarf shrub layer of a sub-arctic forest heath ecosystem at Abisko, North Sweden. The experimental treatments were first applied in 1993, and have covered most of the snow-free season (late May to early September) 1993–1995. Effects of the treatments on the four dwarf shrub species have been recorded largely using non-destructive measures (Vaccinium uliginosum, Vaccinium myrtillus — deciduous species and Vaccinium vitis-idaea and Empetrum hermaphroditum — evergreen species). Effects of the treatments on stem growth and leaf thickness have so far been small, although CO2 treatments initially stimulated stem extension in Vaccinium myrtillus 1993 and depressed growth in V. vitis idaea in 1994 and E. hermaphroditum during 1995. UV-B treatments stimulated fruit production in V. myrtillus in both 1994 and 1995, but there was no effect on reproductive phenology. There were also marked effects of UV-B treatments on insect herbivory in the deciduous dwarf shrubs; with leaf area loss being greater than the control in the UV-B treatment in V. myrtillus and less in V. uliginosum. The results point to the possibility of important effects of the treatments on physiological and chemical processes within the plants. The ecological results of such effects may not be immediately apparent, but may be far reaching, pointing to the need for long-term in situ experimentation in predicting the effects of these global change variables.

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References

  • Anderson, M. 1985. The Saami reindeer-breeders of Norwegian Lapland. Am. Sci. 73: 524–532.

    Google Scholar 

  • Arp, W. J. & Drake, B. G. 1991. Increased photosynthetic capacity of Scirpus olneyi after 4 years of exposure to elevated CO2. Plant Cell Environ. 14: 1003–1006.

    Article  CAS  Google Scholar 

  • Barnes, P. W., Hint, S. D. & Caldwell, M. M. 1990. Morphological responses of crop and weed species of different growth forms to ultraviolet-B radiation. Am. J. Bot. 77: 1354–1360.

    Article  Google Scholar 

  • Besford, R. T., Ludwig, L. J. & Withers, A. C. 1990. The greenhouse effect: acclimation of tomato plants growing in high CO2, photosynthesis and ribulose-1,5-bisphosphate carboxylase protein. J. Exp. Bot. 41: 925–931.

    Article  CAS  Google Scholar 

  • Björn, L. O. & Murphy, T. M. 1985. Computer calculations of solar ultraviolet radiation at ground level. Phys. Véget. 23: 555–561.

    Google Scholar 

  • Björn, L. O. & Teramura, A. H. 1993. Simulation of daylight ultraviolet radiation and effects of ozone depletion, pp. 41–71. In: Young, A. R. et al. (eds) Plenum Press, New York.

    Google Scholar 

  • Bornman, J. F. & Teramura, A. H. 1993. Effects of ultraviolet-B radiation on terrestrial plants, pp. 427–471. In: Young, J. (ed) Environmental Photobiology. Plenum Press, New York.

    Google Scholar 

  • Fajer, E. D., Bowers, M. D. & Bazzaz, F. A. 1989. The effects of enriched carbon dioxide atmospheres on plant herbivore interactions. Science 243: 1198–1200.

    Article  PubMed  CAS  Google Scholar 

  • Frederick, J. E. & Snell, H. E. 1988. Ultraviolet radiation levels during the Antarctic Spring. Science 241: 438–440.

    Article  PubMed  CAS  Google Scholar 

  • Gleason, J. F., Bhartia, P. K., Herman, J. R., McPeters, R., Newman, P., Stolarski, R. S., Flynn, L., Labow, G., Larko, D., Seftor, C., Wellemeyer, C., Komhyr, W. D., Miller, A. J. & Planet, W. 1993. Record low global ozone in 1992. Science 290: 523–526.

    Article  Google Scholar 

  • Gwynn-Jones, D. & Johanson, U. 1996. Growth and pigmentation in two subarctic grass species under four different UV-B irradiation levels. Physiol. Plant. (In press).

    Google Scholar 

  • Hatcher, P. E. & Paul, N. D. 1994. The effect of elevated UV-B radiation on herbivory of pea by Autographa gamma. Entomol. Exp. Applic. 71: 227–233.

    Article  Google Scholar 

  • He, J., Huang, L.-K., Chow, W. S., Whitecross, M. I. & Anderson, J. M. 1993. Effects of supplementary ultraviolet-B radiation on rice and pea plants. Aust. J. Plant Physiol. 20: 129–142.

    Article  Google Scholar 

  • Hoffman, D. J. & Deshler, T. 1991. Evidence from balloon measurements for chemical depletion of stratospheric ozone in the Arctic winter of 1989-1990. Nature 349: 300–305

    Article  Google Scholar 

  • Hunt, R., Hand, D. W., Hannah, M. A. & Neal, A. M. 1991. Response to CO2 enrichment in 27 herbaceous species. Funct. Ecol. 5: 410–421.

    Article  Google Scholar 

  • IPCC. 1990. Climate change: the intergovernmental panel on climate change scientific assessment. In: Houghton, J. T. et al. (eds) Cambridge University Press, Cambridge.

    Google Scholar 

  • Johanson, U., Gehrke, C., Björn, L. O., Callaghan, T. V. and Son-esson, M. 1995a. The effects of enhanced UV-B radiation on a sub-arctic heath ecosystem. Ambio 24: 106–111.

    Google Scholar 

  • Johanson, U., Gehrke, C., Björn, L. O. & Callaghan, T. V. 1995b. The effects of enhanced UV-B radiation on the growth of dwarf shrubs in a subarctic heathland. Funct. Ecol. 9: 713–719.

    Article  Google Scholar 

  • Killick, H. J. & Warden, S. J. 1991. Ultraviolet penetration of pine trees and insect virus survival. Entomphaga 36: 87–94.

    Article  Google Scholar 

  • McCloud, E. S. & Berenbaum, M. R. 1994. Stratospheric ozone depletion and plant-insect interactions: Effects of UVB radiation on foliage quality of jambhiri for Trichoplusia ni.

    Google Scholar 

  • Parsons, A. N., Welker, J. M., Wookey, P. R., Press, M. C., Callaghan, T. V. & Lee, J. A. 1994. Growth responses of four sub-arctic dwarf shrubs to simulated climate change. J. Ecol. 82: 307–318.

    Article  Google Scholar 

  • Proffitt, M. H., Margitan, J. J., Kelly, K. K., Loewenstein, M., Podolske, J. R., Jones, M. & Chan, K. R. 1990. Ozone loss in the Arctic polar vortex inferred from high-altitude aircraft measurement. Nature 347: 31–36.

    Article  CAS  Google Scholar 

  • Sonesson, M. & Lundberg, B. 1974. Late quaternary forest development of the Torneträsk area, North Sweden. 1. Structure of modern forest ecosystems. Oikos 25: 121–133.

    Google Scholar 

  • Tenow, O. 1972. The outbreaks of Oporinia autmunata Bkh. and Operopthera ssp. (Lep., Geometridae) in Scandinavian mountain chain and Northern Finland 1862-1968. Zool. Bidrag Uppsala Supplement 2, 107 pp.

    Google Scholar 

  • Teramura, A. H., Tevini, M. & Iwanzik, W. 1983. Effects of UV-B radiation on plants during mild water stress. 1. Effects on diurnal stomatal resistance. Physiol. Plant. 57: 175–180.

    Google Scholar 

  • Tevini, M., Mark, U. & Saile-Mark, M. 1991. Effects of enhanced solar UV-B radiation on growth and function of crop plant seedlings. Current Topics Plant Biochem. Physiol. 10: 13–31.

    Google Scholar 

  • Tevini, M. 1993. Effects of UV-B radiation on terrestrial plants, pp. 125–153. In: M. Tevini (ed) UV-B radiation and ozone depletion: effects on humans, animals, plants, micro-organisms and materials. Lewis Publishers, London.

    Google Scholar 

  • Tissue, D. T. & Oechel, W. C. 1987. Response of Eriophorum vaginatum to elevated CO2 and temperature in the Alaskan tussock tundra. Ecology 68: 401–410.

    Article  Google Scholar 

  • Witztum, A., Keren, O. & Even-Chen, Z. 1978. The effect of ultraviolet radiation and sucrose on IAA levels in Spirodela oligorhiza. Ann. Bot. 42: 595–598

    CAS  Google Scholar 

  • Ziska, L. H., Teramura, A. H., Sullivan, J. H. & McCoy, A. 1993. Influence of ultraviolet-B (UV-B) radiation on photosynthetis and growth characteristics in field-grown cassava (Manihot esculentum Crantz). Plant Cell Environ. 16: 73–79.

    Article  Google Scholar 

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© 1997 Springer Science+Business Media Dordrecht

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Gwynn-Jones, D., Lee, J.A., Callaghan, T.V. (1997). Effects of enhanced UV-B radiation and elevated carbon dioxide concentrations on a sub-arctic forest heath ecosystem. In: Rozema, J., Gieskes, W.W.C., Van De Geijn, S.C., Nolan, C., De Boois, H. (eds) UV-B and Biosphere. Advances in vegetation science, vol 17. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-5718-6_22

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  • DOI: https://doi.org/10.1007/978-94-011-5718-6_22

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-6411-8

  • Online ISBN: 978-94-011-5718-6

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