945 results on '"Mittler, Ron"'
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2. ROS are universal cell-to-cell stress signals
3. Propagation of a rapid cell-to-cell H2O2 signal over long distances in a monolayer of cardiomyocyte cells
4. Plant NADPH Oxidases
5. A combination of a cell penetrating peptide and a protein translation inhibitor kills metastatic breast cancer cells
6. Jasmonic acid is required for tomato acclimation to multifactorial stress combination
7. A VDAC1-mediated NEET protein chain transfers [2Fe-2S] clusters between the mitochondria and the cytosol and impacts mitochondrial dynamics
8. Reactive oxygen species signalling in plant stress responses
9. Live Whole-Plant Detection of Rapidly Accumulating Reactive Oxygen Species Following Applied Stress in Arabidopsis thaliana
10. Preface
11. Redox-dependent gating of VDAC by mitoNEET
12. ROS and redox regulation of cell-to-cell and systemic signaling in plants during stress
13. The impact of multifactorial stress combination on plant growth and survival
14. Systemic signaling during abiotic stress combination in plants
15. Disrupting CISD2 function in cancer cells primarily impacts mitochondrial labile iron levels and triggers TXNIP expression
16. The impact of stress combination on reproductive processes in crops
17. Structure of the human monomeric NEET protein MiNT and its role in regulating iron and reactive oxygen species in cancer cells
18. An anti-diabetic drug targets NEET (CISD) proteins through destabilization of their [2Fe-2S] clusters
19. Global Warming, Climate Change, and Environmental Pollution: Recipe for a Multifactorial Stress Combination Disaster
20. A multi‐omics approach reveals a link between ribosomal protein alterations and proteome rebalancing in Arabidopsis thaliana seeds.
21. Rapid plant-to-plant systemic signaling via a Cuscuta bridge.
22. The balancing act of NEET proteins: Iron, ROS, calcium and metabolism
23. CISD3/MiNT is required for complex I function, mitochondrial integrity, and skeletal muscle maintenance
24. Higher Intensity of Salt Stress Accompanied by Heat Inhibits Stomatal Conductance and Induces ROS Accumulation in Tomato Plants
25. Coordinated and rapid whole-plant systemic stomatal responses
26. Jasmonic Acid Is Required for Plant Acclimation to a Combination of High Light and Heat Stress
27. ABA Is Required for Plant Acclimation to a Combination of Salt and Heat Stress.
28. Synergistic regulation at physiological, transcriptional and metabolic levels in tomato plants subjected to a combination of salt and heat stress
29. Whole-Plant Live Imaging of Reactive Oxygen Species
30. The Fe-S cluster-containing NEET proteins mitoNEET and NAF-1 as chemotherapeutic targets in breast cancer
31. Stress combination: from genes to ecosystems
32. Benchmarking RNA-Seq Aligners at Base-Level and Junction Base-Level Resolution Using the Arabidopsis thaliana Genome
33. WRKY48 negatively regulates plant acclimation to a combination of high light and heat stress
34. Systemic stomatal responses in plants: Coordinating development, stress, and pathogen defense under a changing climate
35. The redox code of plants.
36. Rapid Responses to Abiotic Stress: Priming the Landscape for the Signal Transduction Network
37. NEET proteins as novel drug targets for mitochondrial dysfunction
38. Contributors
39. Local and Systemic Metabolic Responses during Light-Induced Rapid Systemic Signaling
40. ROS-induced ROS release in plant and animal cells
41. Enhanced Tolerance to Environmental Stress in Transgenic Plants Expressing the Transcriptional Coactivator Multiprotein Bridging Factor 1c
42. The Zinc-Finger Protein Zat12 Plays a Central Role in Reactive Oxygen and Abiotic Stress Signaling in Arabidopsis
43. Cytosolic Ascorbate Peroxidase 1 Is a Central Component of the Reactive Oxygen Gene Network of Arabidopsis
44. When Defense Pathways Collide. The Response of Arabidopsis to a Combination of Drought and Heat Stress
45. Propagation of a rapid cell-to-cell H2O2 signal over long distances in a monolayer of cardiomyocyte cells
46. The redox code of plants
47. Synergistic regulation at physiological, transcriptional and metabolic levels in tomato plants subjected to a combination of salt and heat stress
48. The impact of multifactorial stress combination on reproductive tissues and grain yield of a crop plant
49. The impact of multifactorial stress combination on plants, crops, and ecosystems: how should we prepare for what comes next?
50. The effects of multifactorial stress combination on rice and maize
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