Effect of climate change relative to ozone depletion on UV exposure in subarctic lakes

被引:0
作者
Reinhard Pienitz
Warwick F. Vincent
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[1] Centre d'Études Nordiques,
[2] Université Laval,undefined
来源
Nature | 2000年 / 404卷
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摘要
The effect of stratospheric ozone depletion on increases in ambient levels of solar ultraviolet (UV) radiation in high-latitude regions1 has raised concerns about the response of northern ecosystems to environmental change. The concentration of coloured dissolved organic material, which is derived from terrestrial vegetation and acts as a screen for ultraviolet radiation, is low in high-latitude lakes2. The underwater light environment in these lakes is therefore likely to be sensitive to small variations in the supply of this material, in addition to the effects of ozone depletion2,3,4,5. Here we use fossil diatom assemblages in combination with bio-optical models to estimate the magnitude of past variations in the underwater light regime of a lake at the boreal tree line. We find large shifts in underwater UV-B, UV-A and photosynthetically available radiation associated with changes in the input of coloured dissolved organic material into subarctic lakes during the Holocene. The inferred changes in biological exposure to UV radiation were at least two orders of magnitude greater than those associated with moderate (30%) ozone depletion. Our findings indicate that freshwater ecosystems at present located across vegetation gradients will experience significant shifts in underwater spectral irradiance through the effects of climate change on catchment vegetation and the export of coloured dissolved organic material.
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页码:484 / 487
页数:3
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  • [1] Laurion, I. WF(1997)Underwater ultraviolet radiation: development of spectral models for northern high latitude lakes. Photochem. Photobiol. 65 107-114
  • [2] Vincent DR S(1996)Sensitivity of high latitude freshwater ecosystems to global change: temperature and solar ultraviolet radiation. Geosci. Can. 23 231-236
  • [3] Lean WF(1996)Consequences of climate warming and lake acidification for UV-B penetration in North American boreal lakes. Nature 379 705-708
  • [4] Vincent R(1996)Ultraviolet radiation in North American lakes: Attenuation estimates from DOC measurements and implications for plankton communities. Limnol. Oceanogr. 41 1024-1034
  • [5] Pienitz DW(1999)Paleolimnological reconstruction of Holocene climatic trends from two boreal treeline lakes, Northwest Territories, Canada. Arct. Antarct. Alp. Res. 31 82-93
  • [6] Schindler PJ(1993)Diatom assemblages and their relationship to environmental variables in lakes from the boreal forest-tundra ecotone near Yellowknife, Northwest Territories, Canada. Hydrobiologia 269/270 391-404
  • [7] Curtis B R(1997)The relationship between diatoms and surface water quality in the Høylandet area of Nord-Trøndelag, Norway. Hydrobiologia 348 69- 80
  • [8] Parker MP(1999)Diatomées lacustres de Jamésie-Hudsonie (Québec) et modèle de reconstitution des concentrations de carbone organique dissous. Écoscience 6 603-620
  • [9] Stainton CE(1994)A palaeolimnological test of the influence of Norway spruce ( Holocene 4 132-140
  • [10] Williamson RS(1993)) immigration on lake-water acidity. Nature 361 243-246