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May 9, 2026New Biotechnology1 citationsOpen Access

Innovative Enzyme-based Seed Coatings for Wheat: Impacts on Plant Growth, P and N Uptake, and Rhizosphere Enzyme Profile

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NONatividad OrtegaMPMaría C. Pilar-IzquierdoRÁRodrigo Álvarez-Domingo

Key Points

  • This study aims to examine the effects of enzyme-based seed coatings on wheat plant growth and nutrient uptake.
  • Applied industrial-grade amidohydrolases and phosphatases to wheat seeds using pelleting and film-coating techniques.
  • Used biodegradable materials, including zeolite as a filler and methylcellulose, gum arabic, and polyvinyl alcohol as binders.
  • Conducted principal component analysis and Pearson correlation studies across different seed-coating procedures.
  • Enzyme-based film-coating increased seedling vigor index by up to 74% and root length by up to 36% relative to uncoated seeds.
  • Shoot length increased by up to 21%, with biomass gain reaching 47% in coated seeds.
  • P uptake improved significantly by 50% and 38% for specific coatings, while overall N uptake showed no significant changes.

Abstract

Global efforts to achieve sustainable agriculture demand innovative solutions that reduce reliance on chemical fertilizers without compromising crop performance. Enzyme-based seed coatings represent a promising, ecofriendly strategy to enhance nutrient use efficiency and promote early plant vigor in cereals. This study investigated the effects of applying industrial-grade amidohydrolases (A) and phosphatases (Ph) to wheat seeds through pelleting and film-coating techniques. Biodegradable and biosafe materials were used, including zeolite (Z) as filler and methylcellulose (MC), gum arabic, and polyvinyl alcohol (PVA) as binders. The enzyme-based film-coating (FMC1@Ph/A) increased seedling vigor index (up to 74%) and root length (up to 36%) compared to the uncoated seeds. Shoot length increased (up to 21%) in both pelleted seeds containing zeolite, methylcellulose, and polyvinyl alcohol (PZ15-MC2-PVA@Ph/A) and film-coated seeds (FMC1@Ph/A). Additionally, the FMC1@Ph/A coating increased biomass by up to 47%. Plants from PZ15-MC2-PVA@Ph/A- and FMC1@Ph/A-coated seeds showed higher P uptake (50% and 38%, respectively) compared to uncoated seeds, while N uptake remained unaffected except for PZ15MC2-PVA@Ph/A coating at 14 days after planting. Enzyme-based seed coatings also stimulated rhizosphere enzyme activities during the early stages of growth. Principal component analysis and Pearson correlation studies were conducted across the different seed-coating procedures. Overall, the findings highlight the potential of enzyme-based seed coatings to enhance sustainability in cereal systems. However, as proof of concept performed under controlled conditions, the study presents limitations, and further research is necessary before real-world applications. • Innovative wheat seed coatings formulated with amidohydrolases and phosphatases • Film-coating with enzymes improves vigor index and root length of seedling • Wheat seed coatings with enzymes enhance shoot length, biomass, and P uptake • Seed coatings with enzymes stimulate rhizosphere enzymes during early plant growth • Enzyme-based seed coatings are an eco-friendly alternative to chemical fertilizers

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Cite This Study

Ortega et al. (2026) studied this question.

synapsesocial.com/papers/69fed0abb9154b0b82877b1ehttps://doi.org/10.1016/j.nbt.2026.05.003
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