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dc.contributor.authorRimachi Gamarra, Luis Fernando-
dc.contributor.authorAlcántara Delgado, Jorge Enrique-
dc.contributor.authorAquino Villasante, Yeny Natali-
dc.contributor.authorOrtiz Rios, Rodomiro Octavio-
dc.coverage.spatialPerúes_PE
dc.date.accessioned2020-11-05T04:59:35Z-
dc.date.available2020-11-05T04:59:35Z-
dc.date.issued2011-07-15-
dc.identifier.citationRimachi, L.; Alcántara, J.; Aquino, Y.; Ortiz, R. (2011). Detecting adventitious transgenic events in a maize center of diversity. Electronic Journal of Biotechnology Vol. 14 No. 4, Issue of July 15. doi: 10.2225/vol14-issue4-fulltext-12es_PE
dc.identifier.urihttp://repositorio.inia.gob.pe/handle/20.500.12955/1172-
dc.description.abstractBackground: The genetic diversity of maize in Peru includes several landraces (within race clusters) and modern open pollinated and hybrid cultivars that are grown by farmers across various regions, thereby making this country a secondary center of diversity for this crop. A main topic of controversy in recent years refers to the unintended presence of transgenic events in locally grown cultivars at main centers of crop diversity. Peru does not yet have biosafety regulations to control or permit the growing of genetically modified crops. Hence, the aim of this research was to undertake a survey in the valley of Barranca, where there were recent claims of authorized transgenic maize grown in farmers fields as well as in samples taken from feed storage and grain or seed trade centers. Results: A total of 162 maize samples (134 from fields, 15 from local markets, eight from the collecting centers of poultry companies, from the local trading center and four samples from seed markets) were included for a qualitative detection by the polymerase chain reaction (PCR) of Cauliflower Mosaic Virus (CaMV) 35S promoter (P35S) and nopaline synthase terminator (Tnos) sequences, as well as for six transgenic events, namely BT11, NK603, T25, 176, TC1507 and MON810. The 134 maize samples from farmers fields were negative for Cry1Ab delta-endotoxin insecticidal protein and enzyme 5 enolpyruvylshikimate-3-phosphate synthase (EPSPS) using lateral flow strips. The PCR analysis did not detect any of the six transgenic events in samples from farmers fields, local markets, seed trading shops and the local collecting center. There were four transgenic events (T25, NK603, MON810 and TC1507) in grain samples from the barns of poultry companies. Conclusions: This research could not detect, at the 95% probability level, transgenes in farmers' fields in the valley of Barranca. The four transgenic events in grain samples from barns of poultry companies were not surprising because Peru imports maize, mainly for animal feed, from Argentina and the United States that are known for growing transgenic maize.es_PE
dc.description.tableofcontentsAbstract. Introduction. Materials and Methods. Results. Discussion. Acknowledgments. References.es_PE
dc.formatapplication/pdfes_PE
dc.language.isoenges_PE
dc.publisherPontificia Universidad Católica de Valparaísoes_PE
dc.relation.ispartofElectronic Journal of Biotechnology Vol. 14 No. 4, Issue of July 15, 2011es_PE
dc.rightsinfo:eu-repo/semantics/openAccesses_PE
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/es_PE
dc.sourceInstituto Nacional de Innovación Agrariaes_PE
dc.source.uriRepositorio Institucional - INIAes_PE
dc.subjectBiosafetyes_PE
dc.subjectCornes_PE
dc.subjectSampinges_PE
dc.subjectTransgeneses_PE
dc.subjectTransgeneses_PE
dc.titleDetecting adventitious transgenic events in a maize center of diversityes_PE
dc.typeinfo:eu-repo/semantics/articlees_PE
dc.subject.ocdeBiotecnología agrícola, Biotecnología alimentariaes_PE
dc.identifier.journalElectronic Journal of Biotechnologyes_PE
dc.relation.publisherversionhttp://www.ejbiotechnology.info/index.php/ejbiotechnology/article/view/ v14n4-12/1337es_PE
dc.publisher.countryChilees_PE
dc.identifier.doihttps://doi.org/10.2225/vol14-issue4-fulltext-12-
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