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The present study aimed to optimize amaranth microgreen production by evaluating key factors such as the seeding density (SD), substrate type (ST), electri
Mairton Gomes da Silva, Hans Raj Gheyi, Inácio de Barros, Edna de Souza Souza, Andressa dos Santos Rodrigues, Toshik Iarley da Silva, Luan Silva Sacramento, Glaucia Silva de Jesus Pereira
Horticulturae · 2025 · https://doi.org/10.3390/horticulturae11080870
The present study aimed to optimize amaranth microgreen production by evaluating key factors such as the seeding density (SD), substrate type (ST), electrical conductivity (EC), and the application intervals of the nutrient solution. A split-plot experimental design was employed, with three EC levels (tap water at 0.3 dS m−1) and nutrient solutions at 1.0 (50% half-strength) and 2.0 dS m−1 (100% full-strength) assigned to the main plots. The subplots combined two ST (coconut fiber and phenolic foam) with four SD (25, 50, 75, and 100 g m−2). Two experiments were conducted using this setup, varying the application intervals of water or nutrient solutions for either two or four hours. Asteca amaranth microgreens were cultivated for eight days (a total of 10 days from sowing). The traits analyzed were seedling height (SH), seedling fresh matter (SFM), SFM yield (SFMY), seedling dry matter (SDM), SDM yield (SDMY), water content in seedling, and water productivity of SFM. The results showed that using a half-strength nutrient solution was sufficient for amaranth production compared to using water alone. Coconut fiber outperformed phenolic foam across all evaluated parameters. Based on these findings, we recommend cultivating amaranth microgreens at a SD of 80 g m−2 on coconut fiber substrate using a nutrient solution of 1.0 dS m−1 EC applied at 2 h intervals.
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Mairton Gomes da Silva; Hans Raj Gheyi; Inácio de Barros; Edna de Souza Souza; Andressa dos Santos Rodrigues; Toshik Iarley da Silva; Luan Silva Sacramento; Glaucia Silva de Jesus Pereira (2025). Amaranth Microgreen Cultivation: Seeding Density, Substrate Type, Electrical Conductivity, and Application Interval of Nutrient Solutions. Horticulturae. https://doi.org/10.3390/horticulturae11080870 Licensed under Creative Commons Attribution 4.0 (https://creativecommons.org/licenses/by/4.0/). Hosted by EVEC Athens (microgreens.org.gr). No changes were made to this article. Provided as-is, without warranties. EVEC Athens is not affiliated with, and this copy is not endorsed by, the authors or the publisher.
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