Français
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)
Plant Molecular Biology 1986-Jul

Clones from a shooty tobacco crown gall tumor II: irregular T-DNA structures and organization, T-DNA methylation and conditional expression of opine genes.

Seuls les utilisateurs enregistrés peuvent traduire des articles
Se connecter S'inscrire
Le lien est enregistré dans le presse-papiers
R Peerbolte
K Leenhouts
G M Hooykaas-van Slogteren
G J Wullems
R A Schilperoort

Mots clés

Abstrait

Transformed clones from a shooty tobacco crown gall tumor, induced byAgrobacterium tumefaciens strain LBA1501, having the auxin locus of the TL-region inactivated by a Tn1831 insertion, were investigated for their T-DNA structure and expression. It has been described previously (28) that in addition to clones with an expected phenotype (phytohormone independent growth in tissue culture (Aut(+)), shoot regeneration (Reg(+)) and octopine synthesis (Ocs(+))), clones were obtained with an aberrant phenotype. One of these clones, TSO38, is Aut(+)Reg(+) but shows little or no octopine synthesis activity (Ocs(-)). Subclones of TSO38, however, are either Ocs(-) or Ocs(+). Ocs(-) shoots become Ocs(+) under certain states of differentiation, indicating that the octopine synthase gene is present. The fact that in the Ocs(-) subclones the octopine synthase gene is not expressed, is probably due to DNA methylation (29). The present paper describes that shoots derived from both an Ocs(+) and an Ocs(-) subclone of TSO38, which were negative for the presence of mannopine (Mas(-)) and agropine (Ags(-)), became Mas(+)Ags(+) after culturing on medium containing the hypomethylating agent 5-azacytidine. This means that both in the Ocs(-) line and in the Ocs(+) line expression of TR-DNA opine genes most likely was hampered by DNA methylation. The T-DNA structures of an Ocs(-) and an Ocs(+) TSO38 subclone proved to be identical and surprisingly complex. No intact copy of Tn1831 was present. TL-DNA and TR-DNA segments, present in high copy numbers, were truncated; several T-DNA segments existed in tandem arrangements. When DNA from an Ocs(+) and an Ocs(-) subclone of TSO38 were compared for cleavability by the methylation sensitive restriction enzymes HpaII and MspII, differences were detected, but it became also clear that both lines contained methylated T-DNA segments. This indicates that the Ocs(-) and the Ocs(+) TSO38 subclones differ only quantitatively in respect to degree of T-DNA methylation.

Rejoignez notre
page facebook

La base de données d'herbes médicinales la plus complète soutenue par la science

  • Fonctionne en 55 langues
  • Cures à base de plantes soutenues par la science
  • Reconnaissance des herbes par image
  • Carte GPS interactive - étiquetez les herbes sur place (à venir)
  • Lisez les publications scientifiques liées à votre recherche
  • Rechercher les herbes médicinales par leurs effets
  • Organisez vos intérêts et restez à jour avec les nouvelles recherches, essais cliniques et brevets

Tapez un symptôme ou une maladie et lisez des informations sur les herbes qui pourraient aider, tapez une herbe et voyez les maladies et symptômes contre lesquels elle est utilisée.
* Toutes les informations sont basées sur des recherches scientifiques publiées

Google Play badgeApp Store badge