Abstract
In relation to the question which DNA form (single- or double-stranded) is transferred by Agrobacterium tumefaciens to plant cells, we studied the behaviour of single-stranded DNA, as compared to double-stranded DNA, when it is introduced into plant protoplasts by electroporation. To this end, we cloned a construct with a plant NPTII gene as well as a CAT gene in the M13 vectors tg130 and tg131. We found that both complementary single-stranded molecules gave rise to substantial CAT activity in plant protoplasts, suggesting that single-stranded DNA is converted into double-stranded DNA by the plant cell replication machinery. Unexpectedly, we found that single-stranded DNA leads to a 3-10-fold higher frequency of stable transformation (selection for kanamycin resistance) than double-stranded DNA. These results indicate that the use of single-stranded DNA might be considered in experiments in which optimal transformation frequencies are needed, e.g. with protoplasts from recalcitrant plant species.
MeSH Terms
Cloning, Molecular
DNA/genetics
DNA, Single-Stranded/genetics
Electricity
Genetic Techniques
Genetic Vectors
Plants/genetics
Protoplasts
Rhizobium/genetics
Transformation, Genetic
Chemicals
DNA, Single-Stranded
DNA
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rodenburg K W
Department of Plant Molecular Biology, Leiden University, Netherlands.
de Groot M J
Schilperoort R A
Hooykaas P J
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