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Micronutrient fertiliser reinforcement by fulvate-lignosulfonate coating improves physiological responses in tomato

Gil-Ortiz Ricardo, Naranjo Miguel Angel, Atares Sergio, Vicente Oscar, Morillon Raphaël. 2023. Micronutrient fertiliser reinforcement by fulvate-lignosulfonate coating improves physiological responses in tomato. Agronomy, 13 (8):2013, 15 p.

Article de revue ; Article de recherche ; Article de revue à facteur d'impact Revue en libre accès total
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Résumé : Micronutrients are essential to plants, and enhancing their availability is one of the agronomic challenges to improving crop quality and yield. This study, under controlled greenhouse conditions, compares tomato plants' responses to two different micronutrient EDTA-chelated formulations, one of them including a newly developed fulvate–lignosulfonate coating. Growth, yield, and several physiological parameters, including photosynthetic gas exchange, water-use efficiency, leaf nutrient content, leaf greenness and the effective quantum yield of photosystem II, were measured to compare their efficiency. The results showed that the new coated formulation significantly improved growth and most of the determined physiological parameters. At the end of the experiment, higher foliar levels of Fe (2.4-fold) and Mn (2.9-fold) were measured, revealing increased availability of lignofulfonate-complexed micronutrients compared to the traditional fertiliser. Moreover, the photosynthesis rate and stomatal conductance were 9- and 20-fold higher, respectively, than when using the standard fertiliser. In conclusion, the new coated fulvate–lignosulfonated fertiliser provided a more suitable source of micronutrients for tomato plant fertilisation, allowing for higher yields, which correlated with a generally improved physiological response.

Mots-clés Agrovoc : Solanum lycopersicum, physiologie végétale, propriété physicochimique du sol, échange gazeux, efficience d'utilisation de l'eau, oligo-élement, rendement des cultures, croissance, réponse de la plante, développement biologique, tomate

Mots-clés libres : Chelate fertiliser, Humic acid, Lignosulfonate, Natural polymers, Micronutrient uptake, Solanum lycopersicum

Classification Agris : F61 - Physiologie végétale - Nutrition
F04 - Fertilisation

Champ stratégique Cirad : CTS 2 (2019-) - Transitions agroécologiques

Agences de financement hors UE : Centro para el Desarrollo Tecnológico Industrial, Gobierno de España

Auteurs et affiliations

  • Gil-Ortiz Ricardo, UPV (ESP) - auteur correspondant
  • Naranjo Miguel Angel, IVIA (ESP)
  • Atares Sergio, Fertinagro Biotech (ESP)
  • Vicente Oscar, UPV (ESP)
  • Morillon Raphaël, CIRAD-BIOS-UMR AGAP (FRA)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/608623/)

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