Optimization of Brassica napus (canola) explant regeneration for genetic transformation

From National Research Council Canada

DOIResolve DOI: https://doi.org/10.1016/j.nbt.2011.06.014
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Affiliation
  1. National Research Council of Canada. NRC Plant Biotechnology Institute
FormatText, Article
SubjectAgrobacterium; Benzyladenine; Binary vectors; Brassica napus; Commercial productions; Dinitrophenylhydrazine; Donor plants; Firefly luciferase; Genetic transformation; Genetically modified; Hypocotyl explants; Luciferase assays; Microspore culture; Oil seed crops; Plantlets; Regeneration capacity; Regeneration medium; Reporter gene; Somatic embryo; Transgenesis; Cell culture; Crops; Cultivation; Genes; Nucleic acids; Plants (botany); 2,4 dinitrophenylhydrazine; 6 n benzyladenine; luciferase; bacterial strain; genetic transformation; plant regeneration; rapeseed; Rhizobium radiobacter; somatic embryogenesis; Agriculture; Agrobacterium tumefaciens; Brassica napus; Crops, Agricultural; Gene Transfer Techniques; Genetic Engineering; Hypocotyl; Plant Shoots; Regeneration; Transformation, Genetic; Agrobacterium; Brassica napus; Brassica napus var. napus
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LanguageEnglish
Peer reviewedYes
NPARC number21271390
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Record created2014-03-24
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