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Original Articles

Responses of four Sphagnum species to acute ozone fumigation

Pages 19-32 | Published online: 18 Jul 2013

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Zoltán Tuba, Zsolt Csintalan, András Badacsonyi & Michael C. F. Proctor. (1997) Chlorophyll fluorescence as an exploratory tool for ecophysiological studies on mosses and other small poikilohydric plants. Journal of Bryology 19:3, pages 401-407.
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Articles from other publishers (14)

A. H. W. Koks, C. Fritz, A. J. P. Smolders, K. Rehlmeyer, J. T. M. Elzenga, S. Krosse, L. P. M. Lamers & G. van Dijk. (2022) Sphagnum bleaching: Bicarbonate ‘toxicity’ and tolerance for seven Sphagnum species . Plant Biology 24:5, pages 780-790.
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Andrea Vannini, Giulia Canali, Mario Pica, Cristina Nali & Stefano Loppi. (2020) The Water Content Drives the Susceptibility of the Lichen Evernia prunastri and the Moss Brachythecium sp. to High Ozone Concentrations. Biology 9:5, pages 90.
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Jennifer L. Williamson, Gina Mills, Felicity Hayes, Timothy Jones & Chris Freeman. (2016) How do increasing background concentrations of tropospheric ozone affect peatland plant growth and carbon gas exchange?. Atmospheric Environment 127, pages 133-138.
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Vítězslav Plášek, Arkadiusz Nowak, Marcin Nobis, Grzegorz Kusza & Katarzyna Kochanowska. (2014) Effect of 30 years of road traffic abandonment on epiphytic moss diversity. Environmental Monitoring and Assessment 186:12, pages 8943-8959.
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Riikka Rinnan, Sanna Saarnio, Jaana K. Haapala, Sami K. Mörsky, Pertti J. Martikainen, Jouko Silvola & Toini Holopainen. (2013) Boreal peatland ecosystems under enhanced UV-B radiation and elevated tropospheric ozone concentration. Environmental and Experimental Botany 90, pages 43-52.
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Sami K. Mörsky, Jaana K. Haapala, Riikka Rinnan, Sanna Saarnio, Jouko Silvola, Pertti J. Martikainen & Toini Holopainen. (2011) Minor effects of long-term ozone exposure on boreal peatland species Eriophorum vaginatum and Sphagnum papillosum. Environmental and Experimental Botany 72:3, pages 455-463.
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SYLVIA TOET, PHIL INESON, SIMON PEACOCK & MIKE ASHMORE. (2011) Elevated ozone reduces methane emissions from peatland mesocosms. Global Change Biology 17:1, pages 288-296.
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Gustaf Granath, Joachim Strengbom, Angela Breeuwer, Monique M. P. D. Heijmans, Frank Berendse & Håkan Rydin. (2009) Photosynthetic performance in Sphagnum transplanted along a latitudinal nitrogen deposition gradient. Oecologia 159:4, pages 705-715.
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Keeley L. Bignal, Mike R. Ashmore & Alistair D. Headley. (2008) Effects of air pollution from road transport on growth and physiology of six transplanted bryophyte species. Environmental Pollution 156:2, pages 332-340.
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SAMI K. MÖRSKY, JAANA K. HAAPALA, RIIKKA RINNAN, PÄIVI TIIVA, SANNA SAARNIO, JOUKO SILVOLA, TOINI HOLOPAINEN & PERTTI J. MARTIKAINEN. (2008) Long-term ozone effects on vegetation, microbial community and methane dynamics of boreal peatland microcosms in open-field conditions. Global Change Biology 14:8, pages 1891-1903.
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Radovan Popovic, David Dewez & Philippe Juneau. 2003. Practical Applications of Chlorophyll Fluorescence in Plant Biology. Practical Applications of Chlorophyll Fluorescence in Plant Biology 151 184 .
Riikka Niemi, Pertti J. Martikainen, Jouko Silvola & Toini Holopainen. (2002) Ozone effects on Sphagnum mosses, carbon dioxide exchange and methane emission in boreal peatland microcosms. Science of The Total Environment 289:1-3, pages 1-12.
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J. P. FOOT, S. J. M. CAPORN, J. A. LEE & T. W. ASHENDEN. (2008) Evidence that ozone exposure increases the susceptibility of plants to natural frosting episodes. New Phytologist 135:2, pages 369-374.
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L. POTTER, J. P. FOOT, S. J. M. CAPORN & J. A. Lee. (2006) The effects of long‐term elevated ozone concentrations on the growth and photosynthesis of Sphagnum recurvum and Polytrichum commune . New Phytologist 134:4, pages 649-656.
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