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March 27, 2026Horticulturae2 citationsOpen Access

Synergistic Effects of Silicon and Selenium Application on Salt Stress Resistance in Tomato Under Different Application Patterns

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SMShengming MaoXZXuebin ZhuLCLong Cao

Key Points

  • The study aims to evaluate the individual and combined impacts of silicon and selenium on tomato's resistance to salt stress.
  • Investigated silicon and selenium application through root and foliar methods.
  • Measured plant growth, photosynthesis, oxidative damage, and sodium/potassium content.
  • Utilized principal component analysis to compare results.
  • Salt stress negatively affected tomato growth and photosynthesis.
  • Application of silicon and selenium enhanced growth and reduced salt stress effects.
  • Root application improved ionic homeostasis, while foliar spray enhanced photosynthetic performance.

Abstract

Salt stress is one of the major environmental constraints in agriculture, significantly limiting crop yield and causing substantial economic loss worldwide. Silicon (Si) and selenium (Se) are widely recognized as beneficial elements for plants, and the application of Si- and Se-based fertilizers is considered a promising strategy for promoting crop growth and sustainable agricultural production under expanding salinization of arable land. In this study, aiming for the targeted application of Si and Se in agricultural production, the individual and synergistic effects of Si and Se on salt stress resistance in tomato when applied via root application or foliar spray were comprehensively investigated. Plant growth parameters, photosynthesis performance, oxidative damage, the activity of the antioxidant system, sodium/potassium (Na/K) content, and the expression of genes related to Na/K homeostasis were determined and further compared using principal component analysis (PCA). The results showed that salt stress markedly inhibited plant growth and photosynthetic performance, while inducing oxidative damage and disrupting Na/K homeostasis in tomato seedlings. In contrast, the application of both Si and Se significantly promoted tomato growth and ameliorated the detrimental effects of salt stress. Moreover, Si and Se exhibited a synergistic effect in promoting salt stress resistance under both root and foliar application. Root application of Si and Se is more effective in enhancing ionic homeostasis, while foliar spray of Si and Se is more effective in promoting photosynthesis performance under salt stress. Overall, considering the convenience and use-cost efficiency of Si and Se application in agricultural practices, the results of this study showed that the synergy application of Si and Se via foliar spray is most effective in promoting salt stress resistance in tomato through modulating photosynthesis performance, antioxidant capacity, and ionic homeostasis.

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Cite This Study

Mao et al. (2026) studied this question.

synapsesocial.com/papers/69c6210b15a0a509bde198d7https://doi.org/10.3390/horticulturae12040402
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