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A Highly Efficient Transformation Protocol for Micro-Tom, a Model Cultivar for Tomato Functional Genomics

Plant and Cell Physiology · 2005 · Vol. 47(3) · pp. 426–431
Hyeon‐Jin SunSayaka UchiiShin WatanabeHiroshi Ezura

Abstract

We report a highly efficient protocol for the Agrobacterium-mediated genetic transformation of a miniature dwarf tomato (Lycopersicon esculentum), Micro-Tom, a model cultivar for tomato functional genomics. Cotyledon explants of tomato inoculated with Agrobacterium tumefaciens (Rhizobium radiobacter) C58C1Rif(R) harboring the binary vector pIG121Hm generated a mass of chimeric non-transgenic and transgenic adventitious buds. Repeated shoot elongation from the mass of adventitious buds on selection media resulted in the production of multiple transgenic plants that originated from independent transformation events. The transformation efficiency exceeded 40% of the explants. This protocol could become a powerful tool for functional genomics in tomato.

Plant tissue culture and regenerationTransgenic Plants and ApplicationsCRISPR and Genetic EngineeringTransformation (genetics)BiologyAgrobacterium tumefaciensAgrobacteriumFunctional genomicsGenetically modified cropsLycopersiconExplant cultureCultivarTransgene

MeSH terms

DNA, BacterialGenetic VectorsGlucuronidaseResearch DesignRhizobiumTransformation, GeneticPlant RootsPlant ShootsSolanum lycopersicumGenomicsPlants, Genetically Modified

Funding

  • Asahi Glass Foundation
  • Japan Society for the Promotion of Science
Citations
474
FWCI
2.65
field-weighted impact
References
31
Percentile
90%
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Citations per year
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