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September 12, 2025Journal of Plant PhysiologyOpen Access

Priming with broccoli extract mitigates salinity stress in tomato through enhanced water and Na+/K+ homeostasis

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Authors

LALorena Albaladejo-MaricóMCMicaela CarvajalLYLucía Yepes‐Molina

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Overview

Experiment shows broccoli extract enhances water and ion transport in tomato plants under salinity stress, indicating its potential as a biostimulant.

Key Points

  • Broccoli extract application improved biomass accumulation in tomato plants under salinity stress.
  • Extract-treated tomato plants showed better water status and restricted sodium translocation to the shoot.
  • Enhanced expression of key genes related to ion transport was observed in extract-treated plants.
  • The findings suggest that broccoli-derived biostimulants could significantly improve crop performance under abiotic stress.

Cite This Study

Albaladejo-Maricó et al. (2025) studied this question.

synapsesocial.com/papers/68d44c3431b076d99fa55445https://doi.org/10.1016/j.jplph.2025.154612
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Brassica metabolite priming boosts growth and ion-water homeostasis under salt stress in broccoli2026
  2. 2Salinity Mitigation in Tomato Using a Halophilic Endophytic Consortium by Seed Priming: From Germination to Production2026
  3. 3Alleviating Salt Stress in Tomatoes through Seed Priming with Polyethylene Glycol and Sodium Chloride Combination2024 · 31 citations
  4. 4Osmopriming, Halopriming, and Chemopriming Differentially Modulate Stress Tolerance in Solanum lycopersicum Seeds Under Salinity and Iron Toxicity2026
  5. 5Sustainable Management of Salinity Stress: Biostimulant Effects on Tomato Roots and Soil Health2026