266 results on '"Zandalinas, Sara I."'
Search Results
2. Comparison of metabolomic reconfiguration between Columbia and Landsberg ecotypes subjected to the combination of high salinity and increased irradiance
3. Jasmonic acid is required for tomato acclimation to multifactorial stress combination
4. Reactive oxygen species signalling in plant stress responses
5. Live Whole-Plant Detection of Rapidly Accumulating Reactive Oxygen Species Following Applied Stress in Arabidopsis thaliana
6. ROS and redox regulation of cell-to-cell and systemic signaling in plants during stress
7. Climate change-associated multifactorial stress combination: A present challenge for our ecosystems
8. The impact of multifactorial stress combination on plant growth and survival
9. Disrupting CISD2 function in cancer cells primarily impacts mitochondrial labile iron levels and triggers TXNIP expression
10. Systemic signaling during abiotic stress combination in plants
11. The impact of stress combination on reproductive processes in crops
12. Global Warming, Climate Change, and Environmental Pollution: Recipe for a Multifactorial Stress Combination Disaster
13. The balancing act of NEET proteins: Iron, ROS, calcium and metabolism
14. Stress combination: from genes to ecosystems
15. WRKY48 negatively regulates plant acclimation to a combination of high light and heat stress
16. Jasmonic Acid Is Required for Plant Acclimation to a Combination of High Light and Heat Stress
17. Systemic stomatal responses in plants: Coordinating development, stress, and pathogen defense under a changing climate
18. Rapid Responses to Abiotic Stress: Priming the Landscape for the Signal Transduction Network
19. The impact of multifactorial stress combination on reproductive tissues and grain yield of a crop plant
20. The impact of multifactorial stress combination on plants, crops, and ecosystems: how should we prepare for what comes next?
21. ROS-induced ROS release in plant and animal cells
22. Physiological, Metabolic, and Molecular Responses of Plants to Abiotic Stress
23. The effects of multifactorial stress combination on rice and maize
24. Abscisic acid promotes plant acclimation to the combination of salinity and high light stress
25. Integrative phenotypic-transcriptomic analysis of soybean plants subjected to multifactorial stress combination
26. The impact of multifactorial stress combination on plants, crops, and ecosystems: how should we prepare for what comes next?
27. The impact of multifactorial stress combination on reproductive tissues and grain yield of a crop plant.
28. The effects of multifactorial stress combination on rice and maize.
29. Editorial: Rising stars in plant ROS/redox biology under abiotic stress conditions
30. Omics analyses in citrus reveal a possible role of RNA translation pathways and UPR regulators in the tolerance to combined drought, high irradiance and heat stress
31. Exogenous spermine alleviates the negative effects of combined salinity and paraquat in tomato plants by decreasing stress-induced oxidative damage
32. The transcriptome of soybean reproductive tissues subjected to water deficit, heat stress, and a combination of water deficit and heat stress.
33. Differential transpiration between pods and leaves during stress combination in soybean
34. ABA is required for the accumulation of APX1 and MBF1c during a combination of water deficit and heat stress
35. Depletion of abscisic acid levels in roots of flooded Carrizo citrange (Poncirus trifoliata L. Raf. × Citrus sinensis L. Osb.) plants is a stress-specific response associated to the differential expression of PYR/PYL/RCAR receptors
36. The transcriptome of soybean reproductive tissues subjected to water deficit, heat stress, and a combination of water deficit and heat stress
37. The effects of multifactorial stress combination on rice and maize
38. Differential transpiration between pods and leaves during stress combination in soybean
39. Reduction of heat stress pressure and activation of photosystem II repairing system are crucial for citrus tolerance to multiple abiotic stress combination
40. Jasmonic acid and salicylic acid modulate systemic reactive oxygen species signaling during stress responses
41. The Cluster Transfer Function of AtNEET Supports the Ferredoxin–Thioredoxin Network of Plant Cells
42. HPCA1 is required for systemic reactive oxygen species and calcium cell-to-cell signaling and plant acclimation to stress
43. Differential regulation of flower transpiration during abiotic stress in annual plants
44. Physiological, Metabolic, and Molecular Responses of Plants to Abiotic Stress
45. Developing climate-resilient crops: improving plant tolerance to stress combination
46. HPCA1 is required for systemic ROS and calcium cell-to-cell signaling and plant acclimation to stress
47. Plant responses to multifactorial stress combination
48. Plant responses to climate change: metabolic changes under combined abiotic stresses
49. Jasmonic acid and salicylic acid modulate systemic reactive oxygen species signaling during stress responses.
50. γ-Aminobutyric acid plays a key role in plant acclimation to a combination of high light and heat stress
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