Comprehensive metabolic profiling and phenotyping of interspecific introgression lines for tomato improvement
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Summary
A cartographic network based on correlation analysis that reveals whole-plant phenotype associated and independent metabolic associations, including links with metabolites of nutritional and organoleptic importance is generated.
- Type
- article
- Published
- 2006-04-01
- Cited by
- 759
- References
- 51
- OpenAlex
- https://openalex.org/W16531992
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18584236
Keywords
Emulation, Computer science, Computer security, Psychology
References
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- A functional genomics strategy that uses metabolome data to reveal the phenotype of silent mutations
- An introgression line population of Lycopersicon pennellii in the cultivated tomato enables the identification and fine mapping of yield-associated QTL.
- Zooming In on a Quantitative Trait for Tomato Yield Using Interspecific Introgressions
- A recombination hotspot delimits a wild-species quantitative trait locus for tomato sugar content to 484 bp within an invertase gene.
- Preventing leaf identity theft with hormones.
- Integration of Spatial and Temporal Information During Floral Induction in Arabidopsis
- Two tightly linked QTLs modify tomato sugar content via different physiological pathways
- Real Time QTL of complex phenotypes in tomato interspecific introgression lines.
- The mRNA of the Arabidopsis Gene FT Moves from Leaf to Shoot Apex and Induces Flowering
- A Robot-Based Platform to Measure Multiple Enzyme Activities in Arabidopsis Using a Set of Cycling Assays: Comparison of Changes of Enzyme Activities and Transcript Levels during Diurnal Cycles and in Prolonged Darknessw⃞
- Functional cartography of complex metabolic networks
- Genetic control of natural variation in Arabidopsis glucosinolate accumulation.
- Regulation of the Amount of Starch in Plant Tissues by ADP Glucose Pyrophosphorylase
- Seed banks and molecular maps: unlocking genetic potential from the wild.
- Yield penalties of disease resistance in crops.
- QTL analysis of fruit antioxidants in tomato using Lycopersicon pennellii introgression lines
Cited by
- Seed dormancy in domesticated and wild sunflowers (Helianthus annuus L.) :types, longevity and QTL discovery
- Fruit ripening mutants yield insights into ripening control.
- Regulatory Features Underlying Pollination-Dependent and -Independent Tomato Fruit Set Revealed by Transcript and Primary Metabolite Profiling[W]
- Drought, metabolites, and Arabidopsis natural variation: a promising combination for understanding adaptation to water-limited environments.
- Use of the metabolomics approach to characterize Chinese medicinal material Huangqi.
- Dissection of genotype-phenotype associations in rice grains using metabolome quantitative trait loci analysis.
- An integrated multi‐layered analysis of the metabolic networks of different tissues uncovers key genetic components of primary metabolism in maize
- Metabolic GWAS-based dissection of genetic bases underlying the diversity of plant metabolism.
- Genetic Variation for Seed Metabolite Levels in Brachypodium distachyon
- Natural and artificially induced genetic variability in crop and model plant species for plant systems biology.
- Natural variation of respiration-related traits in plants
- Exploration du polymorphisme moléculaire et protéique de la tomate pour l’identification de QTL de qualité du fruit
- Seed Development: OMICS Technologies toward Improvement of Seed Quality and Crop Yield
- Genomics-based strategies for the use of natural variation in the improvement of crop metabolism.
- A Process-Based Model of TCA Cycle Functioning to Analyze Citrate Accumulation in Pre- and Post-Harvest Fruits
- L’endoréduplication dans le développement du fruit de tomate : de la structure à la croissance cellulaire
- Genome-wide identification, phylogeny, and expression analysis of the SWEET gene family in tomato.
- Genetic dissection of the (poly)phenol profile of diploid strawberry (Fragaria vesca) fruits using a NIL collection.
- Logic programs as declarative and procedural bias in inductive logic programming
- Identification of metabolic and biomass QTL in Arabidopsis thaliana in a parallel analysis of RIL and IL populations
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