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Organisme vivant modifié
(LMO)
L’image ci-dessous identifie l’OVM par son identificateur unique, son nom commercial et un lien vers cette page du Centre d’échange Cliquer dessus pour télécharger une plus grande image sur votre ordinateur Pour du soutien sur comment utiliser, aller dans la page de liens rapides OVM.
Agrisure™ RW Rootworm-Protected maize
EN
MIR604
Oui
SYN-IR6Ø4-5
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Organisation :Syngenta ()Téléphone :Télécopieur :E-mail :Site Web : http://www.syngentaseeds.com,
MIR604 is a genetically modified maize developed to confer field protection against corn root worms.
The cry3A gene from Bacillus thuringiensis codes for a Bt-toxin (Cry3A), which confers resistance to western corn rootworm (Diabrotica virgifera virgifera), northern corn rootworm (Diabrotica longicornis barberi) and other related coleopteran species.
Expression of the pmi gene from the bacterium Escherichia coli allows the plant to use mannose as a carbon source through production of the PMI protein, and is used as a selectable marker.
EN
The cry3A gene from Bacillus thuringiensis codes for a Bt-toxin (Cry3A), which confers resistance to western corn rootworm (Diabrotica virgifera virgifera), northern corn rootworm (Diabrotica longicornis barberi) and other related coleopteran species.
Expression of the pmi gene from the bacterium Escherichia coli allows the plant to use mannose as a carbon source through production of the PMI protein, and is used as a selectable marker.
Le terme « organisme récepteur » désigne un organisme (non modifié ou déjà modifié) ayant fait l'objet d'une modification génétique, tandis que les « organismes parentaux » désignent les organismes impliqués dans un croisement ou une fusion cellulaire pour générer un organisme modifié.
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BCH-ORGA-SCBD-246-6 Organisme Zea mays (Maize, Corn, MAIZE)Cultures
FR
pZM26
EN
- Transgénèse par agrobacterium
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Certains de ces éléments génétiques peuvent être présents sous forme de fragments ou sous forme tronquée. Veuillez consulter les notes ci-dessous, s’il y a lieu.
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BCH-GENE-SCBD-15003-7 Phosphomannose Isomerase gene | Escherichia coli (ECOLX)Séquence codante de protéines | Mannose tolerance,Gènes marqueurs et gènes rapporteurs sélectables
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BCH-GENE-SCBD-103881-2 Metallothionein-like gene promoter | Zea mays (Maize, Corn, MAIZE)Promoteur
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BCH-GENE-SCBD-100269-8 Nopaline Synthase Gene Terminator | Agrobacterium tumefaciens (Agrobacterium)Terminateur
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BCH-GENE-SCBD-100362-7 Ubiquitin gene promoter | Zea mays (Maize, Corn, MAIZE)Promoteur
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BCH-GENE-SCBD-103627-5 Ubiquitin Intron 1 | Zea mays (Maize, Corn, MAIZE)Intron
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BCH-GENE-SCBD-43634-3 mCry3A | Bacillus thuringiensis (Bt, Bacillus, BACTU)Séquence codante de protéines | Résistance aux maladies et aux parasites (Insectes, Coléoptères, Chrysomèle occidentale des racines du maïs (Diabrotica virgifera))
Cry3A gene obtained from Bacillus thuringiensis. The gene was modified for enhanced expression in maize and such that the amino acid sequence of the synthetic version of Cry3A is the same as the native protein, except for the modified serine-protease recognition site.
The pmi gene encodes the enzyme phosphomannose isomerase (PMI) that allows the plants to utilise mannose as a carbon source and is used as a selectable marker.
Truncations at the left and right border junctions of the T-DNA insert as well as nucleotide changes were identified relative to the intended DNA sequence. These substitutions have not resulted in any apparent functional change in PMI as expressed in MIR604.
Southern hybridization data provide confirmatory evidence to support the Taqman PCR analysis that Corn MIR604 contains a single copy of mcry3A gene and the pmi gene.
Corn MIR604 contains a single copy of the MTL and ZmUbilnt promoters, without any vector backbone sequences present in pZM26. Sequence analysis revealed that truncations and deletions occurred but have no effect on the efficacy of the T-DNA insert. Three base pair changes were noted; one occurred in the regulatory region and does not encode for a protein; two other base pair changes occurred within the coding region but these amino acid changes did not result in any apparent functional change in the new insert.
As expected for the mcry3A, pmi, MTL and ZmUbilnt probes the Kpn1 digest resulted in a single hybridization band demonstrating that a single copy of each element is present in Corn MIR604. Additionally, for the full length backbone probe, lack of hybridization demonstrates the absence of any pZM26 vector backbone sequences being incorporated into corn MIR604 during the transformation process.
EN
The pmi gene encodes the enzyme phosphomannose isomerase (PMI) that allows the plants to utilise mannose as a carbon source and is used as a selectable marker.
Truncations at the left and right border junctions of the T-DNA insert as well as nucleotide changes were identified relative to the intended DNA sequence. These substitutions have not resulted in any apparent functional change in PMI as expressed in MIR604.
Southern hybridization data provide confirmatory evidence to support the Taqman PCR analysis that Corn MIR604 contains a single copy of mcry3A gene and the pmi gene.
Corn MIR604 contains a single copy of the MTL and ZmUbilnt promoters, without any vector backbone sequences present in pZM26. Sequence analysis revealed that truncations and deletions occurred but have no effect on the efficacy of the T-DNA insert. Three base pair changes were noted; one occurred in the regulatory region and does not encode for a protein; two other base pair changes occurred within the coding region but these amino acid changes did not result in any apparent functional change in the new insert.
As expected for the mcry3A, pmi, MTL and ZmUbilnt probes the Kpn1 digest resulted in a single hybridization band demonstrating that a single copy of each element is present in Corn MIR604. Additionally, for the full length backbone probe, lack of hybridization demonstrates the absence of any pZM26 vector backbone sequences being incorporated into corn MIR604 during the transformation process.
FR
- SYN-IR6Ø4-5 - EU Reference Laboratory for GM Food and Feed (EURL-GMFF) [ English ]
- SYN-IR6Ø4-5 - CropLife International Detection Methods Database [ English ]
- SYN-IR6Ø4-5 - EU Reference Laboratory for GM Food and Feed (EURL-GMFF) ( JRC ) [ English ]
- SYN-IR6Ø4-5 - CropLife International Detection Methods Database ( CropLife ) [ English ]
FR
FR
- GMO Compass [ English ]
- BioTrack Product Database [ English ]
- CERA GM Database [ English ]
- MIR604 Syngenta.pdf [ English ]
| Type de fichier | Champs | Fichier(s) : | |
|---|---|---|---|
| Évaluation des risques générée par un processus de réglementation | Organisme(s) vivant(s) modifié(s) | 34 | |
| Décision de pays ou tout autre communication | Identification de l'OVM | 28 | |
| Laboratoire pour la détection et d'identification des OVM | OVM(s) détectable(s) par le laboratoire | 27 | |
| Organisme vivant modifié | Organisme récepteur ou organismes parentaux | 74 | |
| Évaluations des risques générées par un processus indépendant ou non réglementaire | Organisme(s) vivant(s) modifié(s) | 1 | |