APIS Bibliography

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Mansfield PJ, Bell JNB, McLeod AR, Wheeler BEJ. Effects of sulphur dioxide on the development of fungal diseases of winter barley in an open-air fumigation system. Agriculture, Ecosystems and Environment. 1991 ;33:215-232.
Lorenzini G, Farina R, Guidi L. The effects of sulphur dioxide on the parasitism of the rust fungus Uromyces viciae-fabae on Vicia faba. Environmental Pollution. 1990 ;68:1-14.
Cocker PD. The effects of sulphur dioxide pollution on bark epiphytes. 1967 ;5.
Ferguson NP, Lee JA, Bell JNB. Effects of sulphur pollutants on the growth of Sphagnum species. Environmental Pollution. 1978 ;16:151-162.
Thwaites RH, Asmore MR, Morton AJ, Pakeman RJ. The effects of tropospheric ozone on the species dynamics of calcareous grassland. Environmental Pollution. 2006 ;144:500-509.
Mansfield TA, Freer-Smith PH. Effects of urban air pollution on plant growth. Riological Reviews. 1981 ;56:343-368.
Biesinger KE, Christensen GM. Effects of various metals on survival, growth, reporduction, and metabolism of Daphnia magna. Journal of the Fisheries Research Board of Canada. 1972 ;(29):1691-1700.
Biesinger KE, Christensen GM. Effects of various metals on survival, growth, reproduction, and metabolism of Daphnia magna. Journal of the Fisheries Research Board of Canada. 1972 ;(29):1691-1700.
Farago ME, Parsons PJ. The effects of various platinum metal species on the water plant Eichhornia crassipes (MART.). Solms. Chemical Speciation & Bioavailability. 1994 ;(6):1-12.
Dirilgen N, Inel Y. Effects of zinc and copper on growth and metal accumulation in duckweed, Lemna minor. Bulletin of Environmental Contamination and Toxicology. 1994 ;(53):442-449.
Van Der Heijden E, Verbeek SJ, Kuiper PJC. Elevated atmospheric CO2 and increased nitrogen deposition: effects on C and N metabolism and growth of the peat moss Sphagnum recurvum P. Beauv. var. mucronatum (Russ.) Warnst. . Global Change Biology. 2000 :201-212.
Holmes WE, Zak DR, Pregitzer KS, King JS. Elevated CO2 and O3 alter soil nitrogen transformations beneath trembling aspen, paper birch, and sugar maple. Ecosystems. 2006 ;9:1354-1363.
Toet S, Ineson P, Peacock S, Ashmore M. Elevated ozone reduces methane emissions from peatland mesocosms. Global Change Biology. 2011 ;17(1):288-296.
Jefferies RL. The embarrassment of riches: Atmospheric deposition of nitrogen and community and ecosystem processes. . Trends in Ecology and Evolution. 1997 ;12:74-78.
Hornung M, Bull KR, Cresser MS, Hall J, Langan SJ, Loveland PJ, Smith C. An empirical map of acidity for soils in Great Britain. Environmental Pollution. 1995 ;90:301-310.
Salminen J, Tan-Anh B, Van-Gestel CAM. Encyyrtraeids and microbes in Zn polluted soil: No link between organism-level stress response and ecosystem functioning. Ecotoxicology. 2001 ;(10): 351-361.
Spiers RB, Frost CA. The enhanced acidification of a field soil by very low concentrations of atmospheric ammonia. Research and Development in Agriculture . 1987 ;4:83-86.
Hartman WH, Richardson CJ, Vilgalys VR, Bruland GL. Environmental and anthropogenic controls over bacterial communities in wetland soils. Proceedings of the National Academy of Sciences of the United States of America. 2008 ;105(46):17842-17847.
Beebee TJC. Environmental change as a cause of natterjack toad (Bufo calamita) declines in Britain. Biological Conservation. 1977 ;11:87-102.