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  1. Phytomelatonin: Recent advances and future prospects
  2. Brassinosteroid-mediated apoplastic H2 O2 -glutaredoxin 12/14 cascade regulates antioxidant capacity in response to chilling in tomato
  3. Brassinosteroids act as a positive regulator for resistance against root-knot nematode involving RESPIRATORY BURST OXIDASE HOMOLOG-dependent activation of MAPKs in tomato
  4. HsfA1a upregulates melatonin biosynthesis to confer cadmium tolerance in tomato plants
  5. Melatonin enhances thermotolerance by promoting cellular protein protection in tomato plants
  6. Melatonin mediates selenium-induced tolerance to cadmium stress in tomato plants
  7. Brassinosteroid Ameliorates Zinc Oxide Nanoparticles-Induced Oxidative Stress by Improving Antioxidant Potential and Redox Homeostasis in Tomato Seedling
  8. Tomato HsfA1a plays a critical role in plant drought tolerance by activating ATG genes and inducing autophagy
  9. Melatonin mitigates cadmium phytotoxicity through modulation of phytochelatins biosynthesis, vacuolar sequestration, and antioxidant potential in Solanum lycopersicum L
  10. Characterization of the promoter and extended C-terminal domain of Arabidopsis WRKY33 and functional analysis of tomato WRKY33 homologues in plant stress responses
  11. Involvement of nitric oxide in the jasmonate-dependent basal defense against root-knot nematode in tomato plants
  12. H2O2 mediates the crosstalk of brassinosteroid and abscisic acid in tomato responses to heat and oxidative stresses
  13. The perplexing role of autophagy in plant innate immune responses
  14. E3 Ubiquitin Ligase CHIP and NBR1-Mediated Selective Autophagy Protect Additively against Proteotoxicity in Plant Stress Responses
  15. RBOH1-dependent H2O2production and subsequent activation of MPK1/2 play an important role in acclimation-induced cross-tolerance in tomato
  16. NBR1-Mediated Selective Autophagy Targets Insoluble Ubiquitinated Protein Aggregates in Plant Stress Responses