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Future perspectives of in vitro culture and plant breeding
Katarzyna Kuligowska,
Henrik Vlk Lütken
, Josefine Nymark Hegelund,
Renate Müller
Afgrødevidenskab
1
Citationer (Scopus)
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Keyphrases
Genetic Transformation
100%
In Vitro Culture
100%
Plant Breeding
100%
Genetic Variation
66%
Conventional Breeding
66%
Breeding Methods
66%
Europe
66%
Recombinant DNA Technology
66%
Genetic Relationship
33%
Natural Transformation
33%
Plant Breeders
33%
In Vitro Embryo Production
33%
Genetic Modification
33%
Agroinfiltration
33%
In Vitro Techniques
33%
Induced mutagenesis
33%
Micropropagation
33%
Embryo Rescue
33%
Transgenic Approaches
33%
Biotechnological Processes
33%
Specific Genes
33%
Post-transcriptional Gene Silencing
33%
Hybrid Plants
33%
Plant Improvement
33%
Methylation
33%
Closely Related Species
33%
Crossing Barriers
33%
Rootstock
33%
Rescue Procedure
33%
Plant Species
33%
Ornamental Plants
33%
Commercial Cultivars
33%
Hybrid Method
33%
Cisgenic
33%
Plant Genes
33%
Reverse Breeding
33%
Breeding Improvement
33%
Bread
33%
Wide Hybridization
33%
Marker-assisted Breeding
33%
Site-directed mutagenesis
33%
Gene Function
33%
Public Acceptance
33%
Chemically Induced
33%
Desired Characteristics
33%
Biotechnological Tools
33%
Culture Method
33%
Phylogeny
33%
Conventional Plants
33%
Radiation Effects
33%
DNA Fragments
33%
Investment Cost
33%
Promoter Sequence
33%
New Genetics
33%
Keep up
33%
Target Selection
33%
Biochemistry, Genetics and Molecular Biology
Genetic Transformation
100%
Recombinant DNA Technology
66%
Genetic Divergence
66%
Genetic Variation
66%
Cladistics
33%
Cell Culture Technique
33%
Pribnow Box
33%
Ornamental Plant
33%
Cultivar
33%
Marker Assisted Breeding
33%
RNA
33%
Site-Directed Mutagenesis
33%
Plant Gene
33%
Methylation
33%
Mutagenesis
33%
Inbreeding
33%
Offspring
33%
Genetically Modified Organism
33%
Transgenics
33%
DNA Methylation
33%
Gene Inactivation
33%
Gene Function
33%
Wild Type
33%
Agroinfiltration
33%
Breeding Method
33%
Molecular Phylogeny
33%
Agricultural and Biological Sciences
Genetic Transformation
100%
Plant Genetics
100%
in Vitro Culture
100%
Recombinant DNA
66%
Genetic Divergence
66%
Mutagenesis
33%
Gene Inactivation
33%
Site-Directed Mutagenesis
33%
Scions
33%
Agroinfiltration
33%
Ornamental Tree
33%
Pribnow Box
33%
Wide Hybridization
33%
Rootstock
33%
Cultivar
33%
Genetic Relationships
33%
Breeding Method
33%
Offspring
33%
Cladistics
33%
Inbreeding
33%
Micropropagation
33%
Ornamental Plant
33%