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The effects of activated carbon and plants diversity ... - 华南农业大学

The effects of activated carbon and plants diversity ... - 华南农业大学

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华 南 农 业 大 学 农 学 院 第 三 届 综 述 大 赛 获 奖 作 品 论 文 集三 等 奖 作 品Brusetti L, Francia P, Bertolini C, et al. Bacterial communities associated with the rhizosphere<strong>of</strong> transgenic Bt 176 maize(Zeamays) <strong>and</strong> its non transgenic counterpart. Plant Soil,2004,266(1-2): 11-21Baumgarte S, Tebbe C C. Field studies on the environmental fate <strong>of</strong> the Cry1Ab Bt-toxinproduced by transgenic maize (MON810) <strong>and</strong> its effect on bacterial communities in themaize rhizosphere. Molecular Ecology, 2005, 14(8): 2539-2551Devare M H, Jones C M, Thies J E. Effect <strong>of</strong> Cry3Bb transgenic corn <strong>and</strong> tefluthrin on the soilmicrobial community. Journal <strong>of</strong> Environmental Quality, 2004, 33: 837-843Donegan K, Schaller D L, Stone J K, et al. Microbial populations, fungal species <strong>diversity</strong> <strong>and</strong>plant pathogen levels in field plots <strong>of</strong> potato <strong>plants</strong> expressing the Bacillus thuringiensisvar. tenbrionls endotoxin. Transgenic Research, 1996, 5: 25-35Devare M, Londoo R L M, Thies J E. Neither transgenic Bt maize (MON863) nor tefluthrininsecticide adversely affect soil microbial activity or biomass: A 3-year field analysis. SoilBiology <strong>and</strong> Biochemistry, 2007, 39: 2038-2047Fang M, Kremer R J, Motavalli P P, et al. Bacterial di-versity in rhizospheres <strong>of</strong> nontransgenic<strong>and</strong> transgenic corn. Applied <strong>and</strong> Environmental Microbiology, 2005, 71: 4132-4136Griffiths B S, Caul S, Thompson J, et al. Soilmicrobial <strong>and</strong> faunal community responses to Btmaize <strong>and</strong> insecticide in two soils. Journal <strong>of</strong> Environmental Quality, 2006, 35: 734-741Hopkins D W, Gregorich E G. Detection <strong>and</strong> decay <strong>of</strong> the Bt endotoxin in soil from a field trialwith genetically modified maize. European Journal <strong>of</strong> Soil Science, 2003, 54:793-800Hopkins D W, Gregorich E G. Decomposition <strong>of</strong> residues <strong>and</strong> loss <strong>of</strong> the d-endotoxin fromtransgenic (Bt) corn (Zeamays L.) in soil. Canadian Journal <strong>of</strong> Soil Science, 2005, 85:19-26Herman R A, Scherer P N, Wolt J D. Rapid degradation <strong>of</strong> a binay, PS149B1, endotoxin <strong>of</strong>Bacillus thuringiensis in soil, <strong>and</strong> a novel mathematical model for fitting curve-lineardecay. Environmental Entomology, 2002, 31(2): 208-214Honemann L, Zurbrugg C, Nentwig W. Effects <strong>of</strong> Bt corn decomposition on the composition <strong>of</strong>the soil meso <strong>and</strong> macr<strong>of</strong>auna. Appl Soil Ecol, 2008, 40(2): 203-209Icoz I, Saxena D, Andow D, et al. Microbial populations <strong>and</strong> enzyme activities in soil in situunder transgenic corn expressing Cry proteins from Bacillus thuringiensis. Journal <strong>of</strong>Environmental Quality, 2008, 37: 647-662Icoz I, Stotzky G. Fate <strong>and</strong> <strong>effects</strong> <strong>of</strong> insect-resistant Bt crops in soil ecosystems. Soil Biology<strong>and</strong> Biochemistry, 2008, 40: 559-586James C. Global status <strong>of</strong> commercialized biotech/GM crops: 2008, the first thirteen years,1996 to 2008. ISAAA Briefs, 2009197

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