APIS Bibliography

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Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki S, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to 9 years' realistic perturbation by wet deposition of nitrogen, separated by form. Global Change Biology. 2014 ;20(2):566-580.
Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki S, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to 9 years' realistic perturbation by wet deposition of nitrogen, separated by form. Global Change Biology. 2014 ;20(2):566-580.
Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki S, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to 9 years' realistic perturbation by wet deposition of nitrogen, separated by form. Global Change Biology. 2014 ;20(2):566-580.
Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki SK, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to nine years’ realistic perturbation by wet deposition of nitrogen, separated by form. Global change Biology . 2013 .
L.J. S, Leith ID, Mizunuma T, Leeson S, Kivimaki S, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to nine years’ realistic perturbation by wet deposition of nitrogen, separated by form. Global Change Biology. 2014 ;20(2):566-580.
Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki SK, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to nine years’ realistic perturbation by wet deposition of nitrogen, separated by form. Global change Biology . 2013 .
Sheppard LJ, Leith ID, Mizunuma T, Leeson S, Kivimaki SK, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to nine years’ realistic perturbation by wet deposition of nitrogen, separated by form. Global change Biology . 2013 .
L.J. S, Leith ID, Mizunuma T, Leeson S, Kivimaki S, Cape JN, van Dijk N, Leaver D, Sutton MA, Fowler D, et al. Inertia in an ombrotrophic bog ecosystem in response to nine years’ realistic perturbation by wet deposition of nitrogen, separated by form. Global Change Biology. 2014 ;20(2):566-580.
Deans JD, Leith ID, Sheppard LJ, Cape JN, D. F, Murry MB, Mason PA. The influence of acid rain mists on growth, dry matter partitioning, nutrient concentrations and mycorrhizal fruiting bodies in red spruce seedlings. New Phytologist . 1994 ;115:459-464.
Lepisto A, Andersson L, Arheimer B, Sundblad K. Influence of catchment characteristics, forestry activities and deposition on nitrogen export from small forested catchments. Water Air and Soil Pollution. 1995 ;84:81-102.
Schumann A, Mills HA. Injury of leatherleaf fern and tomato from volatilized ammonia after fertilizer application. Journal of Plant Nutrition. 1995 ;19:573-593.
McLaughlin SB, Wullschleger SD, Sun G, Nosal M. Interactive effects of ozone and climate on water use, soil moisture content and streamflow in a southern Appalachian forest in the USA. New Phytologist. 2007 ;174:125-136.
Van der Wal R, Pearce I, Brooker R, Scott D, Welch D, Woodin S. Interplay between nitrogen deposition and grazing causes habitat degradation. Ecology Letters. 2003 ;6:141-146.
Emmett BA, Rowe EC, Stevens CJ, Gowing DJ, Henrys PA, Maskell LC, Smart SM. Interpretation of evidence of nitrogen impacts on vegetation in relation to UK biodiversity objectives. JNCC; 2011.
Emmett BA, Rowe EC, Stevens CJ, Gowing DJ, Henrys PA, Maskell LC, Smart SM. Interpretation of evidence of nitrogen impacts on vegetation in relation to UK biodiversity objectives. JNCC; 2011.
L
Battarbee RW, Anderson NJ, Appleby PG, Flower RJ, Fritz SC, Haworth EY, Higgitt S, Jones VJ, Kreiser A, Munro MAR, et al. Lake Acidification in the United Kingdom 1800-1986. London: ENSIS Publishing; 1988.
Kilham SS, Tilzer (E)MM, Serruya (E)C. Large Lakes: ecological structure and function. In: New York: Springer-Verlag; 1990. pp. 403-414.
Seaward MRD. Large-scale air pollution monitoring using lichens. GeoJournal . 1992 ;28:403-411.
Silim S, Nash R, Reynard D, White B, Schroeder W. Leaf gas exchange and water potential responses to drought in nine poplar (Populus spp.) clones with contrasting drought tolerance. Trees. 2009 ;23(5):959-969.
Silim S, Nash R, Reynard D, White B, Schroeder W. Leaf gas exchange and water potential responses to drought in nine poplar (Populus spp.) clones with contrasting drought tolerance. Trees. 2009 ;23(5):959-969.
Guerrieri R, Mencuccini M, Sheppard LJ, Saurer M, Perks MP, Levy P, Sutton MA, Borghetti M, Grace J. The legacy of enhanced N and S deposition as revealed by the combined analysis of δ13C, δ18O and δ15N in tree rings. Global Change Biology. 2011 ;17(5):1946-1962.
Guerrieri R, Mencuccini M, Sheppard LJ, Saurer M, Perks MP, Levy P, Sutton MA, Borghetti M, Grace J. The legacy of enhanced N and S deposition as revealed by the combined analysis of δ13C, δ18O and δ15N in tree rings. Global Change Biology. 2011 ;17(5):1946-1962.
Guerrieri R, Mencuccini M, Sheppard LJ, Saurer M, Perks MP, Levy P, Sutton MA, Borghetti M, Grace J. The legacy of enhanced N and S deposition as revealed by the combined analysis of δ13C, δ18O and δ15N in tree rings. Global Change Biology. 2011 ;17(5):1946-1962.
Guerrieri R, Mencuccini M, Sheppard LJ, Saurer M, Perks MP, Levy P, Sutton MA, Borghetti M, Grace J. The legacy of enhanced N and S deposition as revealed by thecombined analysis of delta 13C, delta 18O and delta 15N in treerings. Global Change Biology. 2011 ;17:1946–1962.
Guerrieri R, Mencuccini M, Sheppard LJ, Saurer M, Perks MP, Levy P, Sutton MA, Borghetti M, Grace J. The legacy of enhanced N and S deposition as revealed by thecombined analysis of delta 13C, delta 18O and delta 15N in treerings. Global Change Biology. 2011 ;17:1946–1962.

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