APIS Bibliography

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M
Meharg AA, Macnair MR. The mechanisms of arsenate tolerance in Deschampsia cespitosa (L.) Beauv. and Agrostis capillaris L. Adaptation of the arsenate uptake system. New Phytologist. 1991 ;(119).
Marschner H. Mechansims of adaptions of plants to acid soils. Plant and Soil. 1991 ;134:1-20.
Hayes F, Jones MLM, Mills G, Ashmore M. Meta-analysis of the relative sensitivity of semi-natural vegetation species to ozone. Environmental Pollution. 2007 ;146:754-762.
McCabe OM, Baldwin JL, Otte ML. Metal tolerance in wetland plants. Minerva Biotecnologica. 2001 ;(13):141-149.
Eaton JG, McKim JM, Holcombe GW. Metal toxicity to embryos and larvae of seven freshwater fish species - 1.Cadmium. Bulletin of Environmental Contamination and Toxicology. 1978 ;(19):95-103.
Marschner H. Mineral Nutrition of Higher Plants. Acadmic Press Inc; 2005 p. 672.
Marschner H. Mineral nutrition of higher plants. Second Edition. Academic Press Ltd.; 1995.
Teien HC, Standring WJF, Salbu B, Marskar M, Kroglund F, Hindar A. Mobilization of aluminium and deposition on fish gills during sea salt episodes - catchment liming as countermeasure. Journal of Environmental Monitoring. 2004 ;6:196-200.
Dore AJ, Mousavi-Baygi M, Smith RI, Hall J, Fowler D, Choularton TW. A model of annual orographic precipitation and acid deposition and its application to Snowdonia. Atmospheric Environment. 2006 ;40(18):3316-3326.
Moolenaar SW, Temminghoff EJM, De Haan FAM. Modelling dynamic copper balances for a contaminated sandy soil following land use change from agriculture to forestry. Environmental Pollution. 1998 ;(103): 117-125.
Forget J, Pavillon JF, Menasria MR, Bocquené G. Mortality and LC50 values for several stages of the marine copepod Trigriopus brevicornis (Müller) exposed to the metals arsenic and cadmium and the pesticides atrazine, carbofuran, dichlorovos and malathion. Ecotoxicology and Environmental Safety . 1988 ;(40):239-244.
Mason PA, Wilson J, Last FT. Mycorrhizal fungi of Betula spp.: factors affecting their occurrence. Proceedings of the Royal Society of Edinburgh. 1984 ;85B:141-151.
N
Carroll JA, Caporn SJM, Morecrof MD, Lee JA, Johnson D, Taylor A, Leake JR, Campbell CD, Cawley L, Lei Y, et al. Natural vegetation responses to atmospheric nitrogen deposition - critical levels and loads of nitrogen for vegetation growing on contrasting native soils. Sheneld: University of Sheneld; 1997.
Takaoki T, Mitani K. A new fumigation method for measuring the effects of sulphur dioxide on photosynthisis of bryophytes and lichens. Lindbergia. 1986 ;12:60-66.
Mills G, Pleijel H, Braun S, Buker P, Bermejo V, Calvo E, Danielsson H, Emberson L, I. Fernandez G, Grunhage L, et al. New stomatal flux-based critical levels for ozone effects on vegetation. Atmospheric Environment. 2011 ;45:5064-5068.
Mizutani H, Wada E. Nitrogen and carbon isotope ratios in seabird rookeries and their ecological implications. Ecology. 1988 ;69:340-349.
Harmens H, Norris DA, Cooper DM, Mills G, Steinnes E, Kubin E, Thoni L, Aboal JR, Alber R, Carballeira A, et al. Nitrogen concentrations in mosses indicate the spatial distribution of atmospheric nitrogen deposition in Europe. Environmental Pollution. 2011 ;159:2852-2860.
Harmens H, Norris DA, Cooper DM, Mills G, Steinnes E, Kubin E, Thoni L, Aboal JR, Alber R, Carballeira A, et al. Nitrogen concentrations in mosses indicate the spatial distribution of atmospheric nitrogen deposition in Europe. Environmental Pollution. 2011 ;159:2852-2860.
Goulding KWT, Bailey NJ, Bradbury NJ, Hargreaves P, Howe M, Murphy DV, Poulton PR, Willison TW. Nitrogen deposition and its contribution to nitrogen cycling and associated soil processes. New Phytologist. 1998 ;139:49-58.
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.
Tipping E, Henrys PA, Maskell LC, Smart SM. Nitrogen deposition effects on plant species diversity; threshold loads. Environmental Pollution. 2013 ;179:218-223.

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