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  • Impact of polluted environment on physiological reaction and energy accumulation of assimilatory organs of Fagus sylvatica L. and 3 dominant herb species was studied in the beech-fir stand and parallel clear-cut area on locality Hliníky situated in the buffer zone of the Slovenský raj National Park (eastern Slovakia). Significantly higher photosynthesis was observed in assimilatory organs of F. sylvatica, R. idaeus, D. filix mas and V. myrtillus species in the beech-fir stand (range 5.79 – 16.10 µmol CO2 m-2 s-1) compared to the clear-cut area (range 4.54 – 12.89 µmol CO2 m-2 s-1). Significantly lower stomatal conductance was found for V. myrtillus (0.24 mol m-2 s-1) and F. sylvatica species (0.26 mol m-2 s-1) in clear-cut area; R. idaeus and D. filix mas species showed significantly higher values of stomatal conductance (0.57, respectively 0.29 mol m-2 s-1) in the beech-fir stand. Reduction of the potential photochemical efficiency was the highest in the case of F. sylvatica species (29%), for other
  • Impact of polluted environment on physiological reaction and energy accumulation of assimilatory organs of Fagus sylvatica L. and 3 dominant herb species was studied in the beech-fir stand and parallel clear-cut area on locality Hliníky situated in the buffer zone of the Slovenský raj National Park (eastern Slovakia). Significantly higher photosynthesis was observed in assimilatory organs of F. sylvatica, R. idaeus, D. filix mas and V. myrtillus species in the beech-fir stand (range 5.79 – 16.10 µmol CO2 m-2 s-1) compared to the clear-cut area (range 4.54 – 12.89 µmol CO2 m-2 s-1). Significantly lower stomatal conductance was found for V. myrtillus (0.24 mol m-2 s-1) and F. sylvatica species (0.26 mol m-2 s-1) in clear-cut area; R. idaeus and D. filix mas species showed significantly higher values of stomatal conductance (0.57, respectively 0.29 mol m-2 s-1) in the beech-fir stand. Reduction of the potential photochemical efficiency was the highest in the case of F. sylvatica species (29%), for other (en)
Title
  • Physiological reaction and energy accumulation of dominant plant species in fir-beech ecosystems affected by air pollution
  • Physiological reaction and energy accumulation of dominant plant species in fir-beech ecosystems affected by air pollution (en)
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  • Physiological reaction and energy accumulation of dominant plant species in fir-beech ecosystems affected by air pollution
  • Physiological reaction and energy accumulation of dominant plant species in fir-beech ecosystems affected by air pollution (en)
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  • RIV/60460709:41210/14:65360!RIV15-MSM-41210___
http://linked.open...avai/riv/aktivita
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  • 36600
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  • RIV/60460709:41210/14:65360
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  • ash, chlorophyll fluorescence, energy, fir-beech ecosystems, photosynthesis, stomatal conductance (en)
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  • SK - Slovenská republika
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  • [EFC692AAA9A8]
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  • 11
http://linked.open...iv/tvurceVysledku
  • Hnilička, František
  • Hniličková, Helena
  • Kukla, Ján
  • Kuklová, Margita
http://linked.open...ain/vavai/riv/wos
  • 0
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  • 1336-5266
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  • 41210
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