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January 6, 2026Plants9 citationsOpen Access

Eco-Physiological and Molecular Roles of Zinc Oxide Nanoparticles (ZnO-NPs) in Mitigating Abiotic Stress: A Comprehensive Review

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EOErick H. Ochoa-ChaparroLCLuis U. Castruita‐EsparzaESEsteban Sánchez

Key Points

  • This review examines the roles of zinc oxide nanoparticles in alleviating abiotic stress in plants.
  • Comprehensive review of existing literature on zinc oxide nanoparticles and their effects on plants.
  • Assessment of physiological processes influenced by ZnO-NPs.
  • Evaluation of ZnO-NPs impact on agricultural yield and plant metabolism.
  • Zinc oxide nanoparticles enhance photosynthetic efficiency and ionic homeostasis.
  • ZnO-NPs positively affect osmotic regulation and antioxidant defense systems.
  • Application of ZnO-NPs shows promise for improved yields in legumes and horticultural crops.

Abstract

Mitigation of abiotic stress of crops is currently one of the primary issues for modern agriculture to secure food supply. On that point, it is acknowledged that climate change is leading to an increase in temperature and solar radiation, while also contributing to prolonged drought events. In contrast, saline soil and heavy metal pollution have been globally problematic, affecting a large part of crops. In this review, we have provided an overview of the eco-physiological and molecular aspects of zinc oxide nanoparticles (ZnO-NPs) as a novel technology for alleviating abiotic stress in plants. It is reported that the presence of ZnO-NPs has positive benefits in physiological processes, such as photosynthetic efficiency, osmotic regulation, ionic homeostasis, and the activation of antioxidant defense systems through gene modifications and the regulation of genes that are regulated under stress conditions. These are positive results for yields, nutrition, and resistance levels in cereals, legumes, and horticultural crops. Furthermore, essential details are reported, suggesting that the addition of ZnO-NPs to crops may be involved in regulating plant metabolism. Nonetheless, we recognize that this technology poses significant challenges for validation on a large scale, particularly in uncontrolled environments.

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Ochoa-Chaparro et al. (2026) studied this question.

synapsesocial.com/papers/695d8e5f3483e917927a5841https://doi.org/10.3390/plants15010147
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