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Your search keyword '"Martine Lemaire-Chamley"' showing total 20 results

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20 results on '"Martine Lemaire-Chamley"'

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1. A Chimeric TGA Repressor Slows Down Fruit Maturation and Ripening in Tomato

2. The conserved brassinosteroid-related transcription factor BIM1a negatively regulates fruit growth in tomato

3. The Tomato Guanylate-Binding Protein SlGBP1 Enables Fruit Tissue Differentiation by Maintaining Endopolyploid Cells in a Non-proliferative State

4. NMR-Based Tissular and Developmental Metabolomics of Tomato Fruit

5. Identification of Two New Mechanisms That Regulate Fruit Growth by Cell Expansion in Tomato

6. Culture of the tomato micro-tom cultivar in greenhouse

7. Two tomato GDP-D-mannose epimerase isoforms involve in ascorbate biosynthesis play specific roles in cell wall biosynthesis and development

8. Changes in Transcriptional Profiles Are Associated with Early Fruit Tissue Specialization in Tomato

9. Micro-Tom mutants for functional analysis of target genes and discovery of new alleles in tomato

10. Comparative analysis of common genes involved in early fruit development in tomato and grape

11. Regulation of the fruit-specific PEP Carboxylase SlPPC2 promoter at early stages of tomato fruit development

12. Down-regulation of a single auxin efflux transport protein in tomato induces precocious fruit development

13. Tomato GDSL1 is required for cutin deposition in the fruit cuticle

14. Flexible Tools for Gene Expression and Silencing in Tomato

15. An integrative genomics approach for deciphering the complex interactions between ascorbate metabolism and fruit growth and composition in tomato

16. Gene and Metabolite Regulatory Network Analysis of Early Developing Fruit Tissues Highlights New Candidate Genes for the Control of Tomato Fruit Composition and Development

17. Quantitative metabolic profiles of tomato flesh and seeds during fruit development: complementary analysis with ANN and PCA

18. A genetic map of candidate genes and QTLs involved in tomato fruit size and composition

19. Structural basis for light activation of a chloroplast enzyme: the structure of sorghum NADP-malate dehydrogenase in its oxidized form

20. An Internal Cysteine Is Involved in the Thioredoxin-dependent Activation of Sorghum Leaf NADP-malate Dehydrogenase

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