Early development of corn seedlings primed with synthetic tenorite nanofertilizer

Fertilizer formulation alternatives that avoid unnecessary losses and environmental impacts are being investigated in agricultural management. Seed priming with nanofertilizers prior to planting, reduces concerns about non-target dispersion; however, priming formulations and concentrations must be c...

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Veröffentlicht in:Journal of seed science 2020-01, Vol.42, Article 202042040
Hauptverfasser: Esper Neto, Michel, Britt, David W., Jackson, Kyle Alan, Braccini, Alessandro Lucca, Inoue, Tadeu Takeyoshi, Batista, Marcelo Augusto
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container_title Journal of seed science
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creator Esper Neto, Michel
Britt, David W.
Jackson, Kyle Alan
Braccini, Alessandro Lucca
Inoue, Tadeu Takeyoshi
Batista, Marcelo Augusto
description Fertilizer formulation alternatives that avoid unnecessary losses and environmental impacts are being investigated in agricultural management. Seed priming with nanofertilizers prior to planting, reduces concerns about non-target dispersion; however, priming formulations and concentrations must be carefully selected to avoid undesired effects. Here, seed germination and seedling development were evaluated after seed priming with CuO nanoparticles (NPs), CuO bulk and CuCl2. The seeds were immersed in priming solutions of 0, 20, 40, 80 and 160 nng.L-1 Cu for the three Cu sources. Following 8 hours priming, the seeds were evaluated for germination and vigor (first germination count). Root and shoot lengths were measured as well as shoot and root dry biomass. The copper NP did not show any toxic effects on corn seed germination and growth, and also promoted higher biomass when compared to the other Cu sources. On the other hand, CuCl2 primed seeds exhibited Cu-toxicity in roots and shoots for all concentrations tested. Bulk Cu priming results indicated the better role of NPs size effects. These findings support NP-seed priming as an alternative to delivery of essential micronutrients, such as copper, to corn seedlings.
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Seed priming with nanofertilizers prior to planting, reduces concerns about non-target dispersion; however, priming formulations and concentrations must be carefully selected to avoid undesired effects. Here, seed germination and seedling development were evaluated after seed priming with CuO nanoparticles (NPs), CuO bulk and CuCl2. The seeds were immersed in priming solutions of 0, 20, 40, 80 and 160 nng.L-1 Cu for the three Cu sources. Following 8 hours priming, the seeds were evaluated for germination and vigor (first germination count). Root and shoot lengths were measured as well as shoot and root dry biomass. The copper NP did not show any toxic effects on corn seed germination and growth, and also promoted higher biomass when compared to the other Cu sources. On the other hand, CuCl2 primed seeds exhibited Cu-toxicity in roots and shoots for all concentrations tested. Bulk Cu priming results indicated the better role of NPs size effects. 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subjects Agriculture
Agronomy
characterization
Life Sciences & Biomedicine
nanofertilizer
phytotoxicity
PLANT SCIENCES
Science & Technology
transmission electron microscopy
X-ray diffraction
title Early development of corn seedlings primed with synthetic tenorite nanofertilizer
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