Gene Targeting by Homologous Recombination as a Biotechnological Tool for Rice Functional Genomics1[W][OA]
Explore this paper's citation graph
Summary
An improved GT procedure is described whereby nine independent transformed calli having the alcohol dehydrogenase2 (Adh2) gene modified with a frequency of approximately 2% per surviving callus and subsequently isolated eight fertile transgenic plants without the concomitant occurrence of undesirable ectopic events.
- Type
- article
- Published
- 2007-04-20
- Cited by
- 117
- References
- 56
- Access
- Open access
- OpenAlex
- https://openalex.org/W17449652
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3259054
Keywords
Absorptive capacity, Spin offs, Business, Entrepreneurship, Psychology
References
- Highly efficient production and characterization of T-DNA plants for rice (Oryza sativa L.) functional genomics
- Homologous recombination and gene targeting in plant cells.
- Targeted disruption in Arabidopsis
- Maintenance of genomic methylation requires a SWI2/SNF2-like protein
- The cultural mouse
- Cloning of the Arabidopsis and rice formaldehyde dehydrogenase genes: implications for the origin of plant ADH enzymes.
- Transgene structures suggest that multiple mechanisms are involved in T-DNA integration in plants.
- A Point Mutation of Adh1 Gene is Involved in the Repression of Coleoptile Elongation under Submergence in Rice
- Modification of Endogenous Natural Genes by Gene Targeting in Rice and Other Higher Plants
- Efficient gene targeting by homologous recombination in rice
- The plant journal for cell and molecular biology: editor Irene Hames, Blackwell Scientific Publications Ltd. Europe £85.00, Overseas £91.00, US 165.00 (personal); Europe £340.00, Overseas £374.00, US 675.00(institutional)
- Plant genome modification by homologous recombination.
- Towards targeted mutagenesis and gene replacement in plants.
- A tale of two integrations, transgene and T-DNA: gene targeting by homologous recombination in rice.
- Physcomitrella and Arabidopsis: the David and Goliath of reverse genetics
- A large-scale Agrobacterium-mediated transformation procedure with a strong positive-negative selection for gene targeting in rice (Oryza sativa L.)
- Chloroplast-derived photo-oxidative stress causes changes in H2O2 and EGSH in other subcellular compartments
- The role of AtMSH2 in homologous recombination in Arabidopsis thaliana
- Agrobacterium-mediated genetic transformation of plants: biology and biotechnology.
- Rice alcohol dehydrogenase genes: anaerobic induction, organ specific expression and characterization of cDNA clones
Cited by
- Cereal breeding takes a walk on the wild side.
- Targeted meiotic recombination in Arabidopsis thaliana
- Targeted Mutagenesis, Precise Gene Editing, and Site-Specific Gene Insertion in Maize Using Cas9 and Guide RNA[OPEN]
- Genetics and Genomics of Rice
- Safety Assessment of GMO-derived Foods
- A null mutation of ROS1a for DNA demethylation in rice is not transmittable to progeny.
- BAC-recombineering for studying plant gene regulation: developmental control and cellular localization of SnRK1 kinase subunits.
- The application of transcriptomics in the comparative safety assessment of (GMO-derived) plant products
- Meiosis in cereal crops: the grasses are back.
- Rapid evaluation of the frequency of gene targeting in rice via a convenient positive-negative selection method
- Plant DNA repair and recombination on the French Mediterranean
- Genome modifications in plant cells by custom-made restriction enzymes.
- Spatio-temporal patterns of genome evolution in allotetraploid species of the genus Oryza.
- Targeted disruption of an orthologue of DOMAINS REARRANGED METHYLASE 2, OsDRM2, impairs the growth of rice plants by abnormal DNA methylation.
- Genetic approaches to crop improvement: responding to environmental and population changes
- Homologous recombination-mediated gene targeting in the liverwort Marchantia polymorpha L.
- Changes in Primary and Secondary Metabolite Levels in Response to Gene Targeting-Mediated Site-Directed Mutagenesis of the Anthranilate Synthase Gene in Rice
- Genetic technologies for the identification of plant genes controlling environmental stress responses.
- Highly efficient Agrobacterium-mediated transformation of suspension-cultured cell clusters of rice (Oryza sativa L.)
- Cre-loxP mediated marker elimination and gene reactivation at the waxy locus created in rice genome based on strong positive–negative selection
Related papers
- Entrepreneurial Origin, Technological Knowledge and the Growth of Spin-off Companies
- Customers Involvement and Firm Absorptive Capacity in Radical Innovation: The Case of Technological Spin-Offs
- How Do Organizational Absorptive Capacity and Entrepreneurial Social Networks Enhance Revenue Growth
- An Empirical Analysis on the Relationship between University Spin-offs' Entrepreneurial Orientation and Performance the Perspective of Industrial Network Embeddedness
- Combined Influence of Absorptive Capacity and Corporate Entrepreneurship on Performance
- Review and Extension on Ambidexterity: A Theoretical Model Integrating Networks and Absorptive Capacity