Effect of Seed Priming by Zinc‐Ion and Zinc‐Oxide Nanoparticle Enriched Plasma‐Activated Water in Osmotic‐Stressed Arabidopsis thaliana
作者:Tamás Bodor, Gábor Fejes, Nicole Chaumont, Christophe Bailly, Ádám Solti, Maria Gracheva, Imre Szenti, Zoltán Kónya, Andrea Rónavári, Kinga Kutasi, Zsuzsanna Kolbert · 发表于:Plasma Processes and Polymers · 年份:2026 · DOI:10.1002/ppap.70172 · 被引用次数:1 · 研究领域:Plant Stress Responses and Tolerance、Nanoparticles: synthesis and applications、Plant Micronutrient Interactions and Effects
ABSTRACT This study provides the first evaluation of seed priming with Zn‐ion and Zn‐nanoparticle enriched plasma‐activated water (PAW) in Arabidopsis . Plasma treatment with metallic Zn mitigated acidification, stabilized nitrite alongside nitrate, and promoted Zn²⁺ release, whereas ZnO nanoparticles, applied at seed‐tolerated concentrations, created a less neutral environment favoring nitrite oxidation. PAW slightly altered seed‐coat structure and increased K⁺ efflux, indicating enhanced permeability, improved germination, and higher Zn uptake. Under osmotic stress, priming effects extended to seedlings, which showed increased NO levels, while PA(W+Zn) increased root H₂O₂. Despite reduced viability under stress, PAW enhanced cotyledon growth and stomatal formation, highlighting its potential to strengthen early stress responses.