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基于锌-海藻酸盐-碳酸钙微粒的智能叶面肥可改善鱼菜共生番茄种植。

Smart foliar fertilizer based on Zn-Alg-CaCO₃ microparticles improves Aquaponic tomato cultivation.

作者信息

Frassine Davide, Braglia Roberto, Scuderi Francesco, Redi Enrico Luigi, Valentini Federica, Relucenti Michela, Colasanti Irene Angela, Zaratti Camilla, Macchia Andrea, Allegrini Ivo, Gismondi Angelo, Di Marco Gabriele, Canini Antonella

机构信息

Biology Department , Tor Vergata University of Rome , Via della Ricerca Scientifica 1, Rome, 00133, Italy.

PhD Program in Evolutionary Biology and Ecology, Tor Vergata University of Rome, Via della Ricerca Scientifica 1, Rome, 00133, Italy.

出版信息

Sci Rep. 2025 May 24;15(1):18092. doi: 10.1038/s41598-025-03136-y.

Abstract

The increasing global demand for sustainable food production, coupled with the micronutrient limitations of aquaponic systems, calls for innovative fertilization strategies that enhance crop yield and nutritional quality while preserving environmental integrity. This study evaluates the effectiveness of zinc-functionalized calcium carbonate microparticles (Zn-Alg-CaCO₃ MPs) as a smart foliar fertilizer in aquaponics. Tomato plants (Solanum lycopersicum L. cv. Principe Borghese) were grown in a recirculating aquaponic system and treated with three concentrations of Zn-MPs (10, 50, and 250 ppm) via foliar spray, using a control group treated with water. Each treatment was applied to 15 plants under controlled greenhouse conditions. Yield parameters, antioxidant content, and nutritional quality were assessed. The 250 ppm treatment significantly increased yield per plant (+ 74.9%), number of fruits (+ 44.4%), and average fruit weight (+ 22.1%) compared to control. Antioxidant activity, phenolic, flavonoid, and lycopene content were also enhanced, particularly at the highest dose. Importantly, no increase in zinc was detected in recirculating water, highlighting the environmental safety of foliar application. These findings underscore the potential of Zn-Alg-CaCO₃ MPs as a sustainable solution for precision fertilization in aquaponic agriculture. Further molecular and environmental studies are recommended to optimize and scale this technology.

摘要

全球对可持续粮食生产的需求不断增加,再加上水培系统中微量营养素的限制,需要创新的施肥策略,以提高作物产量和营养品质,同时保持环境完整性。本研究评估了锌功能化碳酸钙微粒(Zn-Alg-CaCO₃ MPs)作为水培中一种智能叶面肥的有效性。番茄植株(Solanum lycopersicum L. cv. Principe Borghese)在循环水培系统中种植,并通过叶面喷施三种浓度的锌微粒(10、50和250 ppm)进行处理,对照组用水处理。在可控的温室条件下,每种处理应用于15株植物。评估了产量参数、抗氧化剂含量和营养品质。与对照组相比,250 ppm处理显著提高了单株产量(+74.9%)、果实数量(+44.4%)和平均果实重量(+22.1%)。抗氧化活性、酚类、黄酮类和番茄红素含量也有所提高,尤其是在最高剂量时。重要的是,在循环水中未检测到锌的增加,突出了叶面喷施的环境安全性。这些发现强调了Zn-Alg-CaCO₃ MPs作为水培农业精准施肥可持续解决方案的潜力。建议进一步开展分子和环境研究,以优化和扩大这项技术的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7da6/12103587/f5909ac20be9/41598_2025_3136_Fig1_HTML.jpg

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