Natural and artificially induced genetic variability in crop and model plant species for plant systems biology.
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Summary
This chapter introduces and discusses means of generating and identifying genetic diversity, i.e., means to genetically perturb a biological system and to subsequently analyse the systems response, e.g., the changes in plant morphology and chemical composition.
- Type
- review
- Published
- 2007-06-24
- Cited by
- 12
- References
- 139
- OpenAlex
- https://openalex.org/W34482407
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5728325
Keywords
Biology, Genome, Computational biology, Arabidopsis thaliana, Oryza sativa
References
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- Nucleotide diversity of the ZmPox3 maize peroxidase gene: Relationships between a MITE insertion in exon 2 and variation in forage maize digestibility
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Cited by
- Breeding for Fruit Quality in Tomato
- Gene and Metabolite Regulatory Network Analysis of Early Developing Fruit Tissues Highlights New Candidate Genes for the Control of Tomato Fruit Composition and Development1[C][W][OA]
- Micro-Tom mutants for functional analysis of target genes and discovery of new alleles in tomato
- An integrative genomics approach for deciphering the complex interactions between ascorbate metabolism and fruit growth and composition in tomato.
- Analyses of Tomato Fruit Brightness Mutants Uncover Both Cutin-Deficient and Cutin-Abundant Mutants and a New Hypomorphic Allele of GDSL Lipase[C][W][OPEN]
- TOMATOMA Update: Phenotypic and Metabolite Information in the Micro-Tom Mutant Resource.
- 1 H-NMR metabolomics: Profiling method for a rapid and efficient screening of transgenic plants
- Green revolution to genome revolution: driving better resilient crops against environmental instability
- H-NMR metabolomics: Profiling method for a rapid and efficient screening of transgenic plants
- OP-PCPJ150199 1..10
- Enhancing Abiotic Stress Tolerance in Cereals Through Breeding and Transgenic Interventions
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