Cargando…

A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe

Genetically modified (GM) maize MON810 expresses a Cry1Ab insecticidal protein, derived from Bacillus thuringiensis (Bt), toxic to lepidopteran target pests such as Ostrinia nubilalis. An environmental risk to non-target Lepidoptera from this GM crop is exposure to harmful amounts of Bt-containing p...

Descripción completa

Detalles Bibliográficos
Autores principales: Perry, J. N., Devos, Y., Arpaia, S., Bartsch, D., Gathmann, A., Hails, R. S., Kiss, J., Lheureux, K., Manachini, B., Mestdagh, S., Neemann, G., Ortego, F., Schiemann, J., Sweet, J. B.
Formato: Texto
Lenguaje:English
Publicado: The Royal Society 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2871945/
https://www.ncbi.nlm.nih.gov/pubmed/20053648
http://dx.doi.org/10.1098/rspb.2009.2091
_version_ 1782181191536869376
author Perry, J. N.
Devos, Y.
Arpaia, S.
Bartsch, D.
Gathmann, A.
Hails, R. S.
Kiss, J.
Lheureux, K.
Manachini, B.
Mestdagh, S.
Neemann, G.
Ortego, F.
Schiemann, J.
Sweet, J. B.
author_facet Perry, J. N.
Devos, Y.
Arpaia, S.
Bartsch, D.
Gathmann, A.
Hails, R. S.
Kiss, J.
Lheureux, K.
Manachini, B.
Mestdagh, S.
Neemann, G.
Ortego, F.
Schiemann, J.
Sweet, J. B.
author_sort Perry, J. N.
collection PubMed
description Genetically modified (GM) maize MON810 expresses a Cry1Ab insecticidal protein, derived from Bacillus thuringiensis (Bt), toxic to lepidopteran target pests such as Ostrinia nubilalis. An environmental risk to non-target Lepidoptera from this GM crop is exposure to harmful amounts of Bt-containing pollen deposited on host plants in or near MON810 fields. An 11-parameter mathematical model analysed exposure of larvae of three non-target species: the butterflies Inachis io (L.), Vanessa atalanta (L.) and moth Plutella xylostella (L.), in 11 representative maize cultivation regions in four European countries. A mortality–dose relationship was integrated with a dose–distance relationship to estimate mortality both within the maize MON810 crop and within the field margin at varying distances from the crop edge. Mortality estimates were adjusted to allow for physical effects; the lack of temporal coincidence between the susceptible larval stage concerned and the period over which maize MON810 pollen is shed; and seven further parameters concerned with maize agronomy and host-plant ecology. Sublethal effects were estimated and allowance made for aggregated pollen deposition. Estimated environmental impact was low: in all regions, the calculated mortality rate for worst-case scenarios was less than one individual in every 1572 for the butterflies and one in 392 for the moth.
format Text
id pubmed-2871945
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher The Royal Society
record_format MEDLINE/PubMed
spelling pubmed-28719452010-05-18 A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe Perry, J. N. Devos, Y. Arpaia, S. Bartsch, D. Gathmann, A. Hails, R. S. Kiss, J. Lheureux, K. Manachini, B. Mestdagh, S. Neemann, G. Ortego, F. Schiemann, J. Sweet, J. B. Proc Biol Sci Research articles Genetically modified (GM) maize MON810 expresses a Cry1Ab insecticidal protein, derived from Bacillus thuringiensis (Bt), toxic to lepidopteran target pests such as Ostrinia nubilalis. An environmental risk to non-target Lepidoptera from this GM crop is exposure to harmful amounts of Bt-containing pollen deposited on host plants in or near MON810 fields. An 11-parameter mathematical model analysed exposure of larvae of three non-target species: the butterflies Inachis io (L.), Vanessa atalanta (L.) and moth Plutella xylostella (L.), in 11 representative maize cultivation regions in four European countries. A mortality–dose relationship was integrated with a dose–distance relationship to estimate mortality both within the maize MON810 crop and within the field margin at varying distances from the crop edge. Mortality estimates were adjusted to allow for physical effects; the lack of temporal coincidence between the susceptible larval stage concerned and the period over which maize MON810 pollen is shed; and seven further parameters concerned with maize agronomy and host-plant ecology. Sublethal effects were estimated and allowance made for aggregated pollen deposition. Estimated environmental impact was low: in all regions, the calculated mortality rate for worst-case scenarios was less than one individual in every 1572 for the butterflies and one in 392 for the moth. The Royal Society 2010-05-07 2010-01-06 /pmc/articles/PMC2871945/ /pubmed/20053648 http://dx.doi.org/10.1098/rspb.2009.2091 Text en © 2010 The Royal Society http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research articles
Perry, J. N.
Devos, Y.
Arpaia, S.
Bartsch, D.
Gathmann, A.
Hails, R. S.
Kiss, J.
Lheureux, K.
Manachini, B.
Mestdagh, S.
Neemann, G.
Ortego, F.
Schiemann, J.
Sweet, J. B.
A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title_full A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title_fullStr A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title_full_unstemmed A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title_short A mathematical model of exposure of non-target Lepidoptera to Bt-maize pollen expressing Cry1Ab within Europe
title_sort mathematical model of exposure of non-target lepidoptera to bt-maize pollen expressing cry1ab within europe
topic Research articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2871945/
https://www.ncbi.nlm.nih.gov/pubmed/20053648
http://dx.doi.org/10.1098/rspb.2009.2091
work_keys_str_mv AT perryjn amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT devosy amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT arpaias amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT bartschd amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT gathmanna amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT hailsrs amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT kissj amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT lheureuxk amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT manachinib amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT mestdaghs amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT neemanng amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT ortegof amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT schiemannj amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT sweetjb amathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT perryjn mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT devosy mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT arpaias mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT bartschd mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT gathmanna mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT hailsrs mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT kissj mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT lheureuxk mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT manachinib mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT mestdaghs mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT neemanng mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT ortegof mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT schiemannj mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope
AT sweetjb mathematicalmodelofexposureofnontargetlepidopteratobtmaizepollenexpressingcry1abwithineurope