APIS Bibliography

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Balaguer M, Valladares F, Ascaso C, Barnes JD, DelosRios A, Manrique E, Smith EC. Potential effects of rising tropospheric concentrations of CO2 and O-3 on green-algal lichens. New Phytologist . 1996 ;132:132, 641-652.
Carfrae JA, Sheppard LJ, Raven JA, Leith ID, Crossley A. Potassium and phosphorus additions modify the response of Sphagnum capillifolium growing on a Scottish ombrotrophic bog to enhanced nitrogen deposition. Applied Geochemistry. 2007 ;22:1111–1121.
Sheppard LJ, Leith ID, van Dijk N, Leeson S, Mizunuma T, De Bakker R, Elustando DEV, Gomez HG. PK additions modify the effects of N dose and form on species composition, species litter chemistry and peat chemistry in a Scottish peatland. Biogeochemistry. 2013 ;116:39-53.
Kaplan D, Sajwan K, Adriano D, Gettier S. Phytoavailability and toxicity of beryllium and vanadium. Water, Air, and Soil Pollution. 1990 ;(53):203-212.
Manninen S, Woods C, Leith ID, Sheppard LJ. Physiological and morphological effects of long-term ammonium or nitrate deposition on green and red (shade and open grown) Sphagnum capillifolium. Environmental and Experimental Botany. 2011 ;72:140-148.
Stoughton JA, Marcus WA. Persistent impacts of trace metals from mining on floodplain grass communities along soda butte creek, Yellowstone National Park. Environmental Management. 2000 ;(25):305-320.
Skiba U, Cresser MS, Derwent RG, Futty DW. Peat acidification in Scotland. Nature. 1989 ;337:68-69.
Derwent RG, Witham C, Redington A, Jenkin ME, Stedman JR, Yardley R, Hayman G. Particulate matter at a rural location in southern England during 2006: Model sensitivities to precursor emissions. Atmospheric Environment. 2009 ; 43(3):689-696.
Stengbom J, Nordin A, Näsholm T, Ericson L. Parasitic fungus mediates change in nitrogen-exposed boreal forest vegetation. Journal of Ecology . 2002 ;90:61.
Calvo E, Martin C, Sanz MJ. Ozone sensitivity differences in five tomato cultivars: visible injury and effects on biomass and fruits. Water Air and Soil Pollution. 2007 ;186:167-181.
VanderHayden D, Skelly J, Innes J, Hug C, Zhang J, Landolt W, Bleuler P. Ozone exposure thresholds and foliar injury on forest plants in Switzerland. Environmental Pollution. 2001 ;111(2):321-331.
Niemi R, Martikainen PJ, Silvola J, Holopainen T. Ozone effects on Sphagnum mosses, carbon dioxide exchange and methane emission in boreal peatland microcosms. Science of The Total Environment. 2002 ;289:1-12.
Gauslaa Y, Kopperud C, Solhaug KA. Optimal quantum yield of photosystem II and chlorophyll degradation of Lobaria pulmonaria in relation to pH Lichenologist. 1996 ;28:267-278.
Termoshuizen AJ, Schaffers AP. Occurrence of carpophores of ectomycorrhizal fungi in selected stands of Pinus sylvestris in the Netherlands in relation to stand vitality and air pollution. Plant Soil . 1987 ;104:209-217.
Tyburk K, Strandberg B. Oak forest development as a result of historical land-use patterns and present N deposition. Forest Ecology and Management . 1999 ;114:97-106.
Kooijman AM, Dopheide JCR, Sevink J, Takken I, Verstraten JM. Nutrient limitations and their implications on the effects of atmospheric deposition in coastal dunes; lime-poor and lime- rich sites in the Netherlands. Journal of Ecology . 1998 ;86(3):511-526.
Smidt RE, Whitton JS. Note on boron toxicity in a stand of radiata pine in Hawkes Bay. New Zealand Journal of Science. 1975 ;(18):109-113.
Curtis CJ, Emmett BA, Grant H, Kernan M, Reynolds B, Shilland E. Nitrogen saturation in UK moorlands: the critical role of bryophytes and lichens in determining retention of atmospheric N deposition. Journal of Applied Ecology. 2005 ;42:507-517.
Nadelhoffer, Emmett BA, Gundersen P, Kjonaas OJ, Koopmans CJ, Schleppi P, Tietema A, Wright RF. Nitrogen deposition makes a minor contribution to carbon sequestration in temperate forests. Nature. 1999 ;398:145-148.
Tipping E, Henrys PA, Maskell LC, Smart SM. Nitrogen deposition effects on plant species diversity; threshold loads. Environmental Pollution. 2013 ;179:218-223.
Maskell LC, Smart SM, Bullock JM, Thompson K, Stevens CJ. Nitrogen deposition causes widespread species loss in British Habitats. Global Change Biology. 2010 ;16: 671-679.
Maskell LC, Smart SM, Bullock JM, Thompson K, Stevens CJ. Nitrogen deposition causes widespread species loss in British Habitats. Global Change Biology. 2010 ;16: 671-679.
Gibson CE, Smith RV, Stewart DA. nitrogen cycle in Lough Neagh, N. Ireland, 1975 to 1987. Int. Revue ges. Hydrobiol. 1992 ;77:73-83.
Gibson CE, Smith RV, Stewart DA. nitrogen cycle in Lough Neagh, N. Ireland, 1975 to 1987. Int. Revue ges. Hydrobiol. 1992 ;77:73-83.
Solga A, Burkhardt J, Zechmeister HG, Frahm JP. Nitrogen content, 15N natural abundance and biomass of the two pleurocarpous mosses Pleurozium schreberi (Brid.) Mitt.and Scleropodium purum (Hedw.) Limpr. in relation to atmospheric nitrogen deposition. Environmental Pollution. 2005 ;134:465-473.

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