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Tomato protoplast DNA transformation: physical linkage and recombination of exogenous DNA sequences
Authors:Maarten Jongsma  Maarten Koornneef  Pim Zabel  Jacques Hille
Institution:(1) Agricultural University, De Dreijen 11, 6703 BC Wageningen;(2) The Departments of Molecular Biology, De Dreijen 11, 6703 BC Wageningen;(3) Present address: Dept. of Genetics, Vrije Universiteit, de Boelelaan 1087, 1081 HV Amsterdam, The Netherlands
Abstract:Tomato protoplasts have been transformed with plasmid DNA's, containing a chimeric kanamycin resistance gene and putative tomato origins of replication. A calcium phosphate-DNA mediated transformation procedure was employed in combination with either polyethylene glycol or polyvinyl alcohol. There were no indications that the tomato DNA inserts conferred autonomous replication on the plasmids. Instead, Southern blot hybridization analysis of seven kanamycin resistant calli revealed the presence of at least one kanamycin resistance locus per transformant integrated in the tomato nuclear DNA. Generally one to three truncated plasmid copies were found integrated into the tomato nuclear DNA, often physically linked to each other. For one transformant we have been able to use the bacterial ampicillin resistance marker of the vector plasmid pUC9 to lsquorescuersquo a recombinant plasmid from the tomato genome. Analysis of the foreign sequences included in the rescued plasmid showed that integration had occurred in a non-repetitive DNA region. Calf-thymus DNA, used as a carrier in transformation procedure, was found to be covalently linked to plasmid DNA sequences in the genomic DNA of one transformant. A model is presented describing the fate of exogenously added DNA during the transformation of a plant cell. The results are discussed in reference to the possibility of isolating DNA sequences responsible for autonomous replication in tomato.
Keywords:Autonomous replication  protoplast  recombination  tomato  DNA transformation
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