Abstract
Atmospheric deposition represents a significant source of cadmium (Cd) in agricultural lands, leading to unintended consequences for crop production and food safety. Here, we proposed that nanoparticles may serve as “pre-priming agents” to enhance plant resistance against Cd stress. Specifically, we investigated the pre-priming potential of CeO2-NPs in improving the resistance of cherry radish ( Raphanus sativus L.) to simulated atmospheric deposition of CdCl2 and CdS-NPs. Exposure to atmospheric Cd at 0.5 mg/d/plant reduced plant biomass by 13.4–30.5% and increased crude fiber content by 11.1–85.3%, with CdCl2 exhibiting greater phytotoxicity than CdS-NPs. Cd exposure predominantly caused oxidative damage in plant tissues, as evidenced by a 13.7% to 49.3% increase in malondialdehyde (MDA) levels. However, pre-exposure to CeO2-NPs significantly mitigated these adverse effects, promoting plant growth and quality, and reducing Cd accumulation in leaves by 46.1–60.5% and in fruits by 26.2–32.4%. Notably, the pre-priming effect of CeO2-NPs was linked with the early activation of reactive oxygen species (ROS) signaling in both leaves and fruits, accompanied by a 1.04- to 1.32-fold increase in glutathione levels. Transcriptomics further revealed that CeO2-NPs activated key signaling pathways related to plant hormone signal transduction and MAPK cascades, facilitating co-modulation from top-down regulation. This pre-activated defense mechanism effectively modulated genes associated with energy and nitrogen metabolism, detoxicants biosynthesis, and ionic transporter regulation, thereby enhancing resistance capability while restricting Cd uptake. These findings demonstrate the potential utility of CeO2-NPs as effective pre-priming agents for initiating defensive responses throughout plants; thus, establishing nano-enabled priming as a sustainable strategy for mitigating atmospheric Cd contamination within agricultural systems.
| Original language | English |
|---|---|
| Article number | 110328 |
| Pages (from-to) | 1-12 |
| Number of pages | 12 |
| Journal | Environment International |
| Volume | 213 |
| Early online date | 24 May 2026 |
| DOIs | |
| Publication status | Published - Jul 2026 |
Bibliographical note
Publisher Copyright:© 2026 The Authors.
Funding
This study was financially supported by the National Natural Science Foundation of China (No. 42277117 , No. 42477285 ).
| Funders | Funder number |
|---|---|
| National Natural Science Foundation of China | 42277117, 42477285 |
Keywords
- Cadmium
- Crop
- Defense
- Nanoparticle
- Omics
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