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34 results on '"MartÍnez-AndÚjar, Cristina"'

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1. Bumblebees sense rootstock-mediated nutrition and fertilization regime in tomato.

2. Overproduction of ABA in rootstocks alleviates salinity stress in tomato shoots.

3. The interaction between foliar GA3 application and arbuscular mycorrhizal fungi inoculation improves growth in salinized tomato (Solanum lycopersicum L.) plants by modifying the hormonal balance.

4. Unravelling rootstockxscion interactions to improve food security.

5. Hormonal and metabolic regulation of source–sink relations under salinity and drought: From plant survival to crop yield stability.

6. Response to nitrate/ammonium nutrition of tomato (Solanum lycopersicum L.) plants overexpressing a prokaryotic NH4 +-dependent asparagine synthetase

7. Mechanisms of hormonal regulation of endosperm cap-specific gene expression in tomato seeds.

8. Seed Traits and Genes Important for Translational Biology—Highlights from Recent Discoveries.

9. Induction of 9-cis-epoxycarotenoid dioxygenase in Arabidopsis thaliana seeds enhances seed dormancyk.

10. Rootstock-mediated changes in xylem ionic and hormonal status are correlated with delayed leaf senescence, and increased leaf area and crop productivity in salinized tomato.

11. Overexpression of TgERF1 , a Transcription Factor from Tectona grandis , Increases Tolerance to Drought and Salt Stress in Tobacco.

12. Impact of overexpression of 9-cis-epoxycarotenoid dioxygenase on growth and gene expression under salinity stress.

13. Hydrogen Peroxide Imbibition Following Cold Stratification Promotes Seed Germination Rate and Uniformity in Peach cv. GF305.

14. Attenuated total reflection Fourier-transform infrared spectroscopy for the prediction of hormone concentrations in plants.

15. The growth impairment of salinized fenugreek (Trigonella foenum-graecum L.) plants is associated to changes in the hormonal balance.

16. Identification of novel stress-responsive biomarkers from gene expression datasets in tomato roots.

17. Response of nitrogen fixation in relation to nodule carbohydrate metabolism in Medicago ciliaris lines subjected to salt stress

18. Hormonal changes in relation to biomass partitioning and shoot growth impairment in salinized tomato (Solanum lycopersicum L.) plants.

19. Hormonal changes during salinity-induced leaf senescence in tomato (Solanum lycopersicum L.).

20. Increasing plant vigour and tomato fruit yield under salinity by inducing plant adaptation at the earliest seedling stage

21. Tissue-Specific Metabolic Reprogramming during Wound-Induced Organ Formation in Tomato Hypocotyl Explants.

22. Contrasting Rootstock-Mediated Growth and Yield Responses in Salinized Pepper Plants (Capsicum annuum L.) Are Associated with Changes in the Hormonal Balance.

23. Genetic Analysis of Root-to-Shoot Signaling and Rootstock-Mediated Tolerance to Water Deficit in Tomato.

24. Exploring the use of recombinant inbred lines in combination with beneficial microbial inoculants (AM fungus and PGPR) to improve drought stress tolerance in tomato.

25. Improving agronomic water use efficiency in tomato by rootstock-mediated hormonal regulation of leaf biomass.

26. Ectopic overexpression of the cell wall invertase gene CIN1 leads to dehydration avoidance in tomato.

27. Hormonal and metabolic regulation of tomato fruit sink activity and yield under salinity.

28. Hormonal responses of nodulated Medicago ciliaris lines differing in salt tolerance

29. Root-synthesized cytokinins improve shoot growth and fruit yield in salinized tomato (Solanum lycopersicum L.) plants.

30. The regulation of post-germinative transition from the cotyledonto vegetative-leaf stages by microRNA-targeted SQUAMOSA PROMOTER-BINDING PROTEIN LIKE13 in Arabidopsis.

31. The microRNA156 and microRNA172 gene regulation cascades at post-germinative stages in Arabidopsis.

32. Impact of salinity on early reproductive physiology of tomato (Solanum lycopersicum) in relation to a heterogeneous distribution of toxic ions in flower organs.

33. Dynamic Hormone Gradients Regulate Wound-Induced de novo Organ Formation in Tomato Hypocotyl Explants.

34. Ectopic overexpression of the cell wall invertase gene CIN1 leads to dehydration avoidance in tomato.

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