Magyar Tudomány, 2007/08



Darvas és mtsi (2007)

Kiegészítő irodalomjegyzék: az 1. táblázathoz és a 2. ábrához.


1. táblázat: Cry-toxint termelő kukorica szignifikáns hatása talajállatokra.

Arndt, Michael (2006): Monitoring der Umweltwirkungen von Bacillus-thuringiensis-Mais. Untersuchungen zu möglichen Effekten auf nematoden. Gesunde Pflanzen. 58, 67-74.

Escher, Natalie – Käch, B. – Nentwig, W. (2000): Decomposition of transgenic Bacillus thuringiensis maize by microorganisms and woodlice Porcellio scaber (Crustacea: Isopoda). Basic Appl. Ecol. 1, 161-169.

Griffiths, S. Brian – Caul, S. – Thompson, J. – Birch, A. N. E. – Scrimgeour, C. – Andersen, M. N. – Cortet, J. – Messéan, A. – Sausse, C. – Lacroiw, B. – Krogh, P. H. (2005): A comparison of soil microbial community structure, protozoa and nematodes in field plots of conventional and genetically modified maize expressing the Bacillus thuringiensis Gry1Ab toxin. Plant Soil. 275, 135-146.

Griffiths, S. Brian – Caul, S. – Thompson, J. – Birch, A. N. E. – Scrimgeour, C. – Cortet, J. – Foggo, A. – Hackett, C. A. – Krogh, P. H. (2006): Soil microbial and faunal community responses to Bt maize and insecticide in two soils. J. Environ. Qual. 35, 734-741.

Manachini, Barbara – Lozzia, G. C. (2002): First investigations into the effects if Bt-corn crop on Nematofauna. Boll. Zool. Agr. Bachic. Ser. II, 34, 85-96.

Vercesi, L. Maria – Krogh, P. H. – Holmstrup, M. (2006): Can Bacillus thuringiensis (Bt) corn residues and Bt-corn plants affect life-hystory traits in the earthworm Apporoctodea caliginosa? Appl. Soil Ecol. 32, 180-187.

Wandeler, Heiri – Bahylova, J. – Nentwig, W. (2002): Consumption of two Bt- and six non-Bt-corn varieties by the woodlouse Porcellio scaber. Basic Appl. Ecol. 3, 357-365.

Weber, Michael – Nentwig, W. (2006): Impact of Bt corn ont the diplopod Allajulus latestriatus. Pedobiologia. 50, 357-368.

Zwahlen, Claudia – Hilbeck, A. – Howald, R. – Nentwig, W. (2003): Effects of transgenic Bt-corn litter on the earthworm Lumbricus terrestris. Mol. Ecol. 12, 1077-1086.


2. ábra: A MON 810-ben mért Cry1-toxinmennyiségek

AGBIOS database; ANZFA TR (2000); CFIA DD (1997); EFSA (2004, 2006); EPA (2001) In. Lauber Éva (2008): A MON 810 Cry1-toxintartalma és pollenjének hatása a hazai védett lepkékre. PhD. dolgozat (in prep.)

Abel, Craig A. – Adamczyk Jr, J.J. (2004): Relative concentration of Cry1A in maize leaves and cotton bolls with diverse chlorophyll content and corresponding larval development of fall armyworm (Lepidoptera: Noctuidae) & southwestern corn borer (Lepidoptera: Crambidae) on maize whorl leaf profiles. J. Econ. Entomol. 97, 1737-1744.

Bruns, Herbert A. – Abel, C. A. (2003): Nitrogen fertility effect on Bt δ-endotoxin and nitrogen concentrations of maize during early growth. Agr. Jour. 95, 207-211.

Chilcutt, Charles F. – Tabashnik, B. E. (2004): Contamination of refuges by Bacillus thuringiensis toxin genes from transgenic maize. Proceedings of the Nat. Acad. Sci. USA. 101, 7526-7529.

Lang, Andreas – Ludy, C. – Vojtech, E. (2004): Dispersion and deposition of Bt maize pollen in field margins. J. Plant Dis. Prot. 111, 417-428.

Nguyen, Hang Thu 2004. Sicherheitsforschung und Monitoringmethoden zum Anbau von Bt-Mais: Expression, Nachweis und Wirkung von rekombinantem Cry1Ab in heterologen Expressionssystemen. Dissertation. Georg-August-Universität Göttingen.

Wraight, C. Lydia – Zangerl, A. R. – Carroll, M. J. – Berenbaum, M. R. (2000): Absence of toxicity of Bacillus thuringiensis pollen to black swallowtails under field conditions.Proc. Nat. Acad. Sci. USA. 97, 7700-7703.