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1. ROS and redox regulation of cell-to-cell and systemic signaling in plants during stress

2. Peptide Permeation across a Phosphocholine Membrane: An Atomically Detailed Mechanism Determined through Simulations and Supported by Experimentation

3. Aboveground plant-to-plant electrical signaling mediates network acquired acclimation

4. Differential regulation of flower transpiration during abiotic stress in annual plants

6. Rapid systemic responses of Arabidopsis to waterlogging stress

9. Disrupting CISD2 function in cancer cells primarily impacts mitochondrial labile iron levels and triggers TXNIP expression

10. The effects of multifactorial stress combination on rice and maize

11. Differential transpiration between pods and leaves during stress combination in soybean

12. Cadmium interference with iron sensing reveals transcriptional programs sensitive and insensitive to reactive oxygen species

13. Phytochrome B regulates reactive oxygen signaling during abiotic and biotic stress in plants

14. Multi-omic characterization of bifunctional peroxidase 4-coumarate 3-hydroxylase knockdown in Brachypodium distachyon provides insights into lignin modification-associated pleiotropic effects

15. ROS are evolutionary conserved cell-to-cell signals

16. A systemic whole-plant change in redox levels accompanies the rapid systemic response to wounding

17. Reactive oxygen species signalling in plant stress responses

18. Jasmonic acid and salicylic acid modulate systemic reactive oxygen species signaling during stress responses

20. An interplay between JA and SA modulates rapid systemic ROS signaling during responses to high light stress or wounding

21. A peptide-derived strategy for specifically targeting the mitochondria and ER of cancer cells: a new approach in fighting cancer

22. The Arabidopsis gene co‐expression network

23. The impact of water deficit and heat stress combination on the molecular response, physiology, and seed production of soybean

24. Vascular Bundles Mediate Systemic Reactive Oxygen Signaling during Light Stress

25. Phytochrome B Is Required for Systemic Stomatal Responses and Reactive Oxygen Species Signaling during Light Stress

26. High temperatures modify plant responses to abiotic stress conditions

27. MYB30 Orchestrates Systemic Reactive Oxygen Signaling and Plant Acclimation

28. Systemic signaling during abiotic stress combination in plants

29. Multi-omic characterization of bifunctional peroxidase 4-coumarate 3-hydroxylase knockdown in

30. Endothelial cells promote smooth muscle cell resilience to H

31. HPCA1 is required for systemic ROS and calcium cell-to-cell signaling and plant acclimation to stress

32. A VDAC1-mediated NEET protein chain transfers [2Fe-2S] clusters between the mitochondria and the cytosol and impacts mitochondrial dynamics

33. The Cluster Transfer Function of AtNEET Supports the Ferredoxin–Thioredoxin Network of Plant Cells

34. The [2Fe-2S] protein CISD2 plays a key role in preventing iron accumulation in cardiomyocytes

35. Differential regulation of flower transpiration during abiotic stress in plants

36. The

37. Combination of Antioxidant Enzyme Overexpression and N-Acetylcysteine Treatment Enhances the Survival of Bone Marrow Mesenchymal Stromal Cells in Ischemic Limb in Mice With Type 2 Diabetes

39. Signal transduction networks during stress combination

41. Identification and characterization of a core set of ROS wave‐associated transcripts involved in the systemic acquired acclimation response of Arabidopsis to excess light

43. Phytochrome B regulates reactive oxygen signaling during abiotic and biotic stress in plants

44. A Combined Drug Treatment That Reduces Mitochondrial Iron and Reactive Oxygen Levels Recovers Insulin Secretion in NAF-1-Deficient Pancreatic Cells

45. Integration of electric, calcium, reactive oxygen species and hydraulic signals during rapid systemic signaling in plants

46. The impact of stress combination on reproductive processes in crops

47. Past and Future Milestones of Plant Breeding

48. Plasmodesmata-localized proteins and ROS orchestrate light-induced rapid systemic signaling in

49. Plasmodesmata-localized proteins and ROS orchestrate light-induced rapid systemic signaling in Arabidopsis

50. GABA plays a key role in plant acclimation to a combination of high light and heat stress

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