Abstract
• A field experiment was established at 2000 m above sea level (asl) in the central Swiss Alps with the aim of investigating the effects of elevated ozone (O3) and nitrogen deposition (N), and of their combination, on above-ground productivity and species composition of subalpine grassland. • One hundred and eighty monoliths were extracted from a species-rich Geo-Montani-Nardetum pasture and exposed in a free-air O3-fumigation system to one of three concentrations of O3 (ambient, 1.2 × ambient, 1.6 × ambient) and five concentrations of additional N. Above-ground biomass, proportion of functional groups and normalized difference vegetation index (NDVI) were measured annually. • After 3 yr of treatment, the vegetation responded to the N input with an increase in above-ground productivity and altered species composition, but without changes resulting from elevated O3. N input > 10 kg N ha-1 yr-1 was sufficient to affect the composition of functional groups, with sedges benefiting over-proportionally. No interaction of O3 × N was observed, except for NDVI; positive effects of N addition on canopy greenness were counteracted by accelerated leaf senescence in the highest O3 treatment. • The results suggest that effects of elevated O3 on the productivity and floristic composition of subalpine grassland may develop slowly, regardless of the sensitive response to increasing N. © The Authors (2007).
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Bassin, S., Volk, M., Suter, M., Buchmann, N., & Fuhrer, J. (2007). Nitrogen deposition but not ozone affects productivity and community composition of subalpine grassland after 3 yr of treatment. New Phytologist, 175(3), 523–534. https://doi.org/10.1111/j.1469-8137.2007.02140.x
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