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March 6, 2026Plants2 citationsOpen Access

Development, Characterization, and Evaluation of Chitosan Nano/Microcapsules with Bacillus subtilis Extract and Their Effect on Tomato (Solanum lycopersicum) Seed Germination

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RDRené Díaz-HerreraRGRicardo Gómez-GarcíaRDRafael Duarte

Key Points

  • The research aims to develop a stable delivery system using chitosan nano/microparticles loaded with Bacillus subtilis extract to improve tomato seed germination.
  • Produced chitosan and sodium tripolyphosphate nano-microparticles loaded with Bacillus subtilis extract.
  • Characterized the nano-microparticles using DLS, SEM, and FTIR techniques.
  • Utilized Box–Behnken and Box–Hunter experimental designs for optimizing production conditions.
  • Applied the nano-microparticles to tomato seeds as a 50% dilution pretreatment.
  • Achieved a particle size of 330.7 nm with a polydispersity index of 0.25.
  • The zeta potential was recorded at 34.3 mV, indicating stability in suspension.
  • The encapsulation efficiency of the bacterial extract was 68.8%.
  • The treatment led to a 72% germination rate and an average germination time of 3.8 days.

Abstract

The use of chemical fertilizers has led to significant environmental pollution. An alternative to these fertilizers is the use of natural compounds, such as phytohormones, which promote germination and crop development. However, environmental factors can affect natural compounds, reducing their effectiveness. Therefore, increasing their stability without decreasing their activity to improve crop quality is essential. This study produced and characterized chitosan and sodium tripolyphosphate (TPP) nano-microparticles (NMP) loaded with Bacillus subtilis extract and evaluated their impact on tomato seed germination. We employed two experimental designs (Box–Behnken and Box–Hunter–Hunter) to determine the optimal production conditions and characterized the NMP using DLS, SEM, and FTIR. The optimal treatment consisted of 8 min of homogenization, followed by 8 min of ultrasound at a 70% amplitude, resulting in a particle size of 330.7 nm, a polydispersity index of 0.25, a zeta potential of 34.3 mV, and an encapsulation efficiency of 68.8%. The NMP loaded with bacterial extract was applied to tomato seeds as a 50% dilution pretreatment. NMP achieved the best results, with a 72% germination rate (1.6 seeds per day) and an average germination time of 3.8 days. It is concluded that the experimental designs helped improve particle properties and that the chitosan and TPP coating enhances the stability and activity of the bacterial extract, potentially benefiting agronomic applications.

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Cite This Study

Díaz-Herrera et al. (2026) studied this question.

synapsesocial.com/papers/69aa7077531e4c4a9ff5a450https://doi.org/10.3390/plants15050796
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