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1.
Plant J ; 16(6): 673-80, 1998 Dec.
Article in English | MEDLINE | ID: mdl-10069074

ABSTRACT

Plant transformation via Agrobacterium frequently results in formation of multiple copy T-DNA arrays at one target site of the chromosome. The T-DNA copies are arranged in repeats, direct or inverted around one of the T-DNA borders. A Ti plasmid-derived transformation vector has been constructed enabling direct selection of transformants carrying at least two linked copies of T-DNA in the same orientation. The selection is based on expression of a promoterless neomycin phosphotransferase gene on one T-DNA copy from a promoter located on the other T-DNA copy. After co-cultivation of tobacco protoplasts with Agrobacterium, as many as 30% of regenerated transformed plants carried directly repeated T-DNA copies. The junction regions between two T-DNAs were amplified and 13 amplified fragments were cloned and sequenced. The involvement of T-DNA left and right border sequences in direct repeat junctions was determined. In some junctions, additional filler DNA was detected. The length of filler DNA varied from a few up to almost 300 bp. The longer filler DNAs from two clones were found to be T-DNA fragments in direct or reverse orientation. We discuss the recently suggested models for T-DNA integration and propose that the formation of direct repeats in genomes does not necessarily result from ligation of intermediates (i.e. T-strands), but more likely from the co-integration of several intermediates into one target site.


Subject(s)
DNA, Bacterial/genetics , Nicotiana/genetics , Plants, Toxic , Rhizobium/genetics , Base Sequence , DNA, Bacterial/chemistry , DNA, Plant/genetics , DNA, Single-Stranded/genetics , Models, Genetic , Nucleic Acid Conformation , Repetitive Sequences, Nucleic Acid , Transformation, Genetic
2.
Transgenic Res ; 3(5): 317-25, 1994 Sep.
Article in English | MEDLINE | ID: mdl-7951334

ABSTRACT

Transformation frequencies were determined for 1n, 2n, and 4n Nicotiana plumbaginifolia protoplast cultures in Agrobacterium-mediated gene transfer experiments. An unexpected large drop (50%) in plating efficiencies was observed in the non-selected (control) 1n populations after transformation treatment with virulent strains. This effect was not observed in the 2n or 4n cultures or in the 1n cultures when treated with avirulent bacteria. The mortality was disproportionally high and could not be explained by the low (0.1-0.5%) transformation efficiency in the 1n population, indicating mutagenesis of the cell populations independently from the T-DNA insertions. Mutagenesis was also indicated in gene tagging experiments where nitrate reductase-deficient (NR-) mutants were selected from haploid Nicotiana plumbaginifolia protoplasts, as well as from leaf disc cultures or protoplasts of diploid plants that were heterozygotic for a mutation either in the NR apoenzyme gene (nia/wt) or one of the molybdenum-containing cofactor genes (cnxA/wt), after Agrobacterium co-cultivation. The chlorate-resistant isolates were tested for the T-DNA-specific kanamycin resistance trait only after NR-deficiency had been established. Thirty-nine independent NR-deficient mutants were analysed further by Southern blot hybridization. There was no indication of integrated T-DNA sequences in the mutated NR genes, despite the fact that NR-deficient cells were found more frequently in cell populations which became transformed during the treatment than in the populations which did not.(ABSTRACT TRUNCATED AT 250 WORDS)


Subject(s)
DNA, Bacterial/metabolism , Nicotiana/metabolism , Plants, Toxic , Rhizobium/physiology , Amino Acid Oxidoreductases/analysis , Amino Acid Oxidoreductases/biosynthesis , Apoenzymes/genetics , Cells, Cultured , DNA, Bacterial/genetics , Escherichia coli , Gene Transfer Techniques , Genetic Vectors , Genotype , Mutagenesis, Insertional , Nitrate Reductases/genetics , Plants, Genetically Modified , Protoplasts/physiology , Rhizobium/genetics , Nicotiana/genetics , Xanthine Dehydrogenase/biosynthesis , Xanthine Dehydrogenase/metabolism
3.
Mol Gen Genet ; 243(1): 106-11, 1994 Apr.
Article in English | MEDLINE | ID: mdl-8190063

ABSTRACT

The precision of extrachromosomal homologous recombination and gene targeting in plant cells was investigated. Recombination was directed to introns of selectable marker genes where potential changes could persist without affecting the function and therefore the selectability of the genes. Approximately 9 kb of crossover regions was rescued and sequenced. Changes were detected at a frequency below one point mutation per 1000 bp, indicating that extrachromosomal recombination and gene targeting both appear to occur with high fidelity.


Subject(s)
Plants/genetics , Recombination, Genetic , Crossing Over, Genetic , Genetic Markers , Plant Cells , Protoplasts
4.
Folia Microbiol (Praha) ; 31(2): 86-93, 1986.
Article in English | MEDLINE | ID: mdl-3519390

ABSTRACT

The chloramphenicol resistance gene from pSa was introduced into T-DNA of pTi T37 of Agrobacterium tumefaciens by cointegration with intermediary plasmid based on pBR322. The resulting intermediary vector was mobilized to A. tumefaciens T37 by conjugative plasmid pRK2. The RK2 plasmid also forms contegrates with pTi due to the Tn3 transposon which was used for the mobilization of modified pTi into plasmid-less A. tumefaciens strain. Transconjugants were selected on the basis of their antibiotic resistance markers and tested for agrocin sensitivity as proof of Ti plasmid transfer. Agrocin sensitivity of tranconjugants together with chloramphenicol resistance was shown to be a sufficient and simple criterion of transfer of modified Ti plasmids. Agrobacterium strains with modified Ti plasmids showed decreased virulence in consequence of the presence of additional borderline sequence inside their T-DNA.


Subject(s)
Adenine Nucleotides/pharmacology , Conjugation, Genetic , DNA, Bacterial/genetics , Plasmids , Rhizobium/genetics , Amino Acid Oxidoreductases/analysis , Anti-Bacterial Agents/pharmacology , Arginine/analogs & derivatives , Chloramphenicol/pharmacology , Drug Resistance, Microbial , Escherichia coli/drug effects , Genetic Vectors , Plants/microbiology , Plants, Toxic , Rhizobium/drug effects , Rhizobium/enzymology , Nicotiana/microbiology
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