Title
Environmental biosafety and transgenic potato in a centre of diversity for this crop
Date Issued
11 November 2004
Access level
metadata only access
Resource Type
journal article
Author(s)
Celis C.
Cowgill S.
Chumbiauca S.
Green J.
Franco J.
Main G.
Klezebrink D.
Visser R.G.F.
Atkinson H.J.
Abstract
The Nuffield Council on Bioethics1,2 suggests that introgression of genetic material into related species in centres of crop bio-diversity is an insufficient justification to bar the use of genetically modified crops in the developing world. They consider that a precautionary approach to forgo the possible benefits invokes the fallacy of thinking that doing nothing is itself without risk to the poor. Here we report findings relevant to this and other aspects of environmental biosafety for genetically modified potato in its main centre of biodiversity, the central Andes. We studied genetically modified potato clones that provide resistance to nematodes, principal pests of Andean potato crops. We show that there is no harm to many non-target organisms, but gene flow occurs to wild relatives growing near potato crops. If stable introgression were to result, the fitness of these wild species could be altered. We therefore transformed the male sterile cultivar Revolucion to provide a genetically modified nematode-resistant potato to evaluate the benefits that this provides until the possibility of stable introgression to wild relatives is determined. Thus, scientific progress is possible without compromise to the precautionary principle.
Start page
222
End page
225
Volume
432
Issue
7014
Language
English
OCDE Knowledge area
Agricultura Conservación de la Biodiversidad
Scopus EID
2-s2.0-9144234940
PubMed ID
Source
Nature
ISSN of the container
00280836
Sponsor(s)
Acknowledgements We thank A. Salas, J. Arcos and R. Ccanto for assistance with crossing and field experiments; and C. Rasmussen for insect identification. We are grateful to the International Potato Centre and PROINPA for access to their facilities in Peru and Bolivia, respectively. The project was funded by a grant from the European Union. Acknowledgements Thanks to M. Andrade, P. Buston, B. Daley, C. Gilbert, A. Houde, D. Lank, K. McGraw, H. K. Reeve, T. Seeley, P. Sherman, W. Gronenberg and the FAB evolution group (S.F.U.) for helpful comments on the manuscript, D. Lank for assistance with the statistical analysis, W. Gronenberg and H. K. Reeve for research support and L. Marakon for research assistance. E.A.T. was supported by a NSF graduate fellowship and NIH Training Grant. J.D. was supported by a N.S.E.R.C. post-doctoral fellowship.
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