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2. Multi-scale characterisation of cold response reveals immediate and long-term impacts on cell physiology up to seed composition in sunflower.

3. Genetic control of abiotic stress-related specialized metabolites in sunflower.

4. Sunflower Hybrids and Inbred Lines Adopt Different Physiological Strategies and Proteome Responses to Cope with Water Deficit.

5. Similar Transcriptomic Responses to Early and Late Drought Stresses Produce Divergent Phenotypes in Sunflower ( Helianthus annuus L.).

6. Expression complementation of gene presence/absence polymorphisms in hybrids contributes importantly to heterosis in sunflower.

7. Optimized cultivar deployment improves the efficiency and stability of sunflower crop production at national scale.

8. Gene regulatory network inference methodology for genomic and transcriptomic data acquired in genetically related heterozygote individuals.

10. Genome-wide and comparative phylogenetic analysis of senescence-associated NAC transcription factors in sunflower (Helianthus annuus).

11. Exploring gene networks in two sunflower lines with contrasting leaf senescence phenotype using a system biology approach.

12. Metabolomic characterization of sunflower leaf allows discriminating genotype groups or stress levels with a minimal set of metabolic markers.

13. Sunflower pan-genome analysis shows that hybridization altered gene content and disease resistance.

14. Data describing the eco-physiological responses of twenty-four sunflower genotypes to water deficit.

15. Different genetic architectures underlie crop responses to the same pathogen: the {Helianthus annuus * Phoma macdonaldii} interaction case for black stem disease and premature ripening.

16. Genetic control of plasticity of oil yield for combined abiotic stresses using a joint approach of crop modelling and genome-wide association.

17. Genomic Prediction of Sunflower Hybrids Oil Content.

18. The sunflower genome provides insights into oil metabolism, flowering and Asterid evolution.

19. Molecular diversity of sunflower populations maintained as genetic resources is affected by multiplication processes and breeding for major traits.

20. Genetic control of water use efficiency and leaf carbon isotope discrimination in sunflower (Helianthus annuus L.) subjected to two drought scenarios.

21. Bridging physiological and evolutionary time-scales in a gene regulatory network.

22. Is gene transcription involved in seed dry after-ripening?

23. A biomarker based on gene expression indicates plant water status in controlled and natural environments.

24. Consensus mapping of major resistance genes and independent QTL for quantitative resistance to sunflower downy mildew.

25. A gene-phenotype network based on genetic variability for drought responses reveals key physiological processes in controlled and natural environments.

26. Tinkering with the C-function: a molecular frame for the selection of double flowers in cultivated roses.

27. Mutational spaces for leaf shape and size.

28. Evolutionary paths underlying flower color variation in Antirrhinum.

29. Isoflavonoid exudation from white lupin roots is influenced by phosphate supply, root type and cluster-root stage.

30. Evolution through genetically controlled allometry space.

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