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2. Atmospheric nitrogen oxides (NO x ), hydrogen sulphide (H 2 S) and carbon monoxide (CO): Boon or Bane for plant metabolism and development?

3. Exploring the complex information processes underlying plant behavior.

4. Pure biochemicals and nanomaterials as next generation biostimulants for sustainable agriculture under abiotic stress - recent advances and future scope.

5. Polyamine depletion enhances oil body mobilization through possible regulation of oleosin degradation and aquaporin abundance on its membrane.

6. Heme oxygenase-nitric oxide crosstalk-mediated iron homeostasis in plants under oxidative stress.

7. Signaling mechanisms and biochemical pathways regulating pollen-stigma interaction, seed development and seedling growth in sunflower under salt stress.

8. N-Nitrosomelatonin, an efficient nitric oxide donor and transporter in Arabidopsis seedlings.

9. Polyamine homeostasis modulates plasma membrane- and tonoplast-associated aquaporin expression in etiolated salt-stressed sunflower (Helianthus annuus L.) seedlings.

10. Regulation of salt-stressed sunflower (Helianthus annuus) seedling's water status by the coordinated action of Na + /K + accumulation, nitric oxide, and aquaporin expression.

11. Sodium Influx and Potassium Efflux Currents in Sunflower Root Cells Under High Salinity.

12. Salt-tolerant and -sensitive seedlings exhibit noteworthy differences in lipolytic events in response to salt stress.

13. Deciphering the nitric oxide, cyanide and iron-mediated actions of sodium nitroprusside in cotyledons of salt stressed sunflower seedlings.

14. Plants and human beings engage similar molecular crosstalk with nitric oxide under stress conditions.

15. Hemoglobin as a probe for estimation of nitric oxide emission from plant tissues.

16. Nitric oxide and light co-regulate glycine betaine homeostasis in sunflower seedling cotyledons by modulating betaine aldehyde dehydrogenase transcript levels and activity.

17. Nitric oxide modulates polyamine homeostasis in sunflower seedling cotyledons under salt stress.

18. Biochemical mechanisms regulating salt tolerance in sunflower.

19. Tyrosine nitration of cytosolic peroxidase is probably triggered as a long distance signaling response in sunflower seedling cotyledons subjected to salt stress.

20. Mechanisms of Sodium Transport in Plants-Progresses and Challenges.

21. Electrophoretic Detection and Confocal Microscopic Imaging of Tyrosine Nitrated Proteins in Plant Tissue.

22. Nitric oxide regulates lateral root formation through modulation of ACC oxidase activity in sunflower seedlings under salt stress.

23. Molecular mechanisms accompanying nitric oxide signalling through tyrosine nitration and S-nitrosylation of proteins in plants.

24. S-nitrosylation/denitrosylation as a regulatory mechanism of salt stress sensing in sunflower seedlings.

25. Signaling through reactive oxygen and nitrogen species is differentially modulated in sunflower seedling root and cotyledon in response to various nitric oxide donors and scavengers<sup/>.

26. Melatonin and nitric oxide regulate sunflower seedling growth under salt stress accompanying differential expression of Cu/Zn SOD and Mn SOD.

27. Melatonin and nitric oxide modulate glutathione content and glutathione reductase activity in sunflower seedling cotyledons accompanying salt stress.

28. Nitric oxide and iron modulate heme oxygenase activity as a long distance signaling response to salt stress in sunflower seedling cotyledons.

29. A Novel Protocol for Detection of Nitric Oxide in Plants.

30. Mechanisms of nitric oxide crosstalk with reactive oxygen species scavenging enzymes during abiotic stress tolerance in plants.

31. Nitric oxide accumulation and protein tyrosine nitration as a rapid and long distance signalling response to salt stress in sunflower seedlings.

32. Regulatory roles of serotonin and melatonin in abiotic stress tolerance in plants.

33. Nitric oxide mediates strigolactone signaling in auxin and ethylene-sensitive lateral root formation in sunflower seedlings.

34. Nitric oxide triggers a concentration-dependent differential modulation of superoxide dismutase (FeSOD and Cu/ZnSOD) activity in sunflower seedling roots and cotyledons as an early and long distance signaling response to NaCl stress.

35. Proteomic analysis of oil body membrane proteins accompanying the onset of desiccation phase during sunflower seed development.

36. Photomodulation of strigolactone biosynthesis and accumulation during sunflower seedling growth.

37. Salt stress-induced seedling growth inhibition coincides with differential distribution of serotonin and melatonin in sunflower seedling roots and cotyledons.

38. A novel fluorescence imaging approach to monitor salt stress-induced modulation of ouabain-sensitive ATPase activity in sunflower seedling roots.

39. Signaling role of phospholipid hydroperoxide glutathione peroxidase (PHGPX) accompanying sensing of NaCl stress in etiolated sunflower seedling cotyledons.

40. A probable crosstalk between Ca⁺², reactive oxygen species accumulation and scavenging mechanisms and modulation of protein kinase C activity during seed development in sunflower.

41. Rapid auxin-induced nitric oxide accumulation and subsequent tyrosine nitration of proteins during adventitious root formation in sunflower hypocotyls.

42. Localization of lipoxygenase activity on the oil bodies and in protoplasts using a novel fluorescence imaging method.

43. Sodium chloride stress induces nitric oxide accumulation in root tips and oil body surface accompanying slower oleosin degradation in sunflower seedlings.

44. Nitric oxide modulates specific steps of auxin-induced adventitious rooting in sunflower.

45. A comparative analysis of the distribution and composition of lipidic constituents and associated enzymes in pollen and stigma of sunflower.

46. Use of oil bodies and oleosins in recombinant protein production and other biotechnological applications.

47. Co-localization of putative calcium channels (phenylalkylamine-binding sites) on oil bodies in protoplasts from dark-grown sunflower seedling cotyledons.

48. Recent developments in the localization of oil body-associated signaling molecules during lipolysis in oilseeds.

49. Evidence for the probable oil body association of a thiol-protease, leading to oleosin degradation in sunflower seedling cotyledons.

50. Distribution of activated calmodulin in the chloronema tip cells of the moss Funaria hygrometrica.

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