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March 26, 2026Environmental Science Nano0 citationsOpen Access

Fe 3 O 4 nanozyme as a novel plant growth promoter for enhancing salt tolerance in cucumber seedlings: integrated analysis of growth physiology and transcriptional metabolism

DXDan XuDXDan XuBSBin Sheng

Key Points

  • This research aims to evaluate the effectiveness of Fe3O4 nanozyme in promoting salt tolerance in cucumber seedlings.
  • Application of Fe3O4 nanozyme to cucumber seedlings under salt stress conditions
  • Assessment of growth physiology, including ion balance and ROS levels
  • Analysis of transcriptional changes related to metabolic pathways
  • Fe3O4 nanozyme significantly reduces ROS levels in cucumber seedlings.
  • Improved ion homeostasis and accumulation of osmolytes were observed.
  • Regulation of the phenylpropanoid pathway enhanced cell membrane stability.

Abstract

FNPs-G alleviates salt stress in cucumber by scavenging ROS, maintaining ion homeostasis, accumulating osmolytes, and regulating the phenylpropanoid pathway to enhance cell membrane stability.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69c4cec3fdc3bde44891ab95https://doi.org/10.1039/d5en00970g
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