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提高生菜()产量:叶面喷施铁-藻-碳酸钙微塑料作为水培种植的肥料 。 需注意,原文括号里“()”内容缺失,翻译时按原文呈现,可能影响完整理解。

Enhancing Lettuce () Productivity: Foliar Sprayed Fe-Alg-CaCO MPs as Fertilizers for Aquaponics Cultivation.

作者信息

Frassine Davide, Braglia Roberto, Scuderi Francesco, Redi Enrico Luigi, Valentini Federica, Relucenti Michela, Colasanti Irene Angela, 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, 00133 Rome, Italy.

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

出版信息

Plants (Basel). 2024 Dec 5;13(23):3416. doi: 10.3390/plants13233416.

Abstract

Aquaponics is an innovative agricultural method combining aquaculture and hydroponics. However, this balance can lead to the gradual depletion of essential micronutrients, particularly iron. Over time, decreasing iron levels can negatively impact plant health and productivity, making the monitoring and management of iron in aquaponic systems vital. This study investigates the use of Fe-Alg-CaCO microparticles (MPs) as foliar fertilizer on lettuce plants in an aquaponic system. The research investigated L. cv. Foglia di Quercia Verde plants as the experimental cultivar. Three iron concentrations (10, 50, and 250 ppm) were tested, with 15 plants per treatment group, plus a control group receiving only sterile double-distilled water. The Fe-Alg-CaCO MPs and ultrapure water were applied directly to the leaves using a specialized nebulizer. Foliar nebulization was chosen for its precision and minimal resource use, aligning with the sustainability goals of aquaponic cultivation. The research evaluated rosette diameter, root length, fresh weight, soluble solids concentration, levels of photosynthetic pigments, and phenolic and flavonoid content. The 250 ppm treatment produced the most notable enhancements in both biomass yield and quality, highlighting the potential of precision fertilizers to boost sustainability and efficiency in aquaponic systems. In fact, the most significant increases involved biomass production, particularly in the edible portions, along with photosynthetic pigment levels. Additionally, the analysis of secondary metabolite content, such as phenols and flavonoids, revealed no reduction compared to the control group, meaning that the proposed fertilizer did not negatively impact the biosynthetic pathways of these bioactive compounds. This study opens new possibilities in aquaponics cultivation, highlighting the potential of precision fertilizers to enhance sustainability and productivity in soilless agriculture.

摘要

鱼菜共生是一种将水产养殖和水培相结合的创新型农业方法。然而,这种平衡可能会导致必需的微量营养素逐渐耗尽,尤其是铁。随着时间的推移,铁含量的降低会对植物健康和生产力产生负面影响,因此监测和管理鱼菜共生系统中的铁至关重要。本研究调查了Fe-Alg-CaCO微粒(MPs)作为叶面肥料在鱼菜共生系统中的生菜植株上的应用。该研究以L. cv. Foglia di Quercia Verde植株作为实验品种。测试了三种铁浓度(10、50和250 ppm),每个处理组有15株植物,还有一个对照组仅接受无菌双蒸水。使用专门的喷雾器将Fe-Alg-CaCO MPs和超纯水直接喷洒在叶片上。选择叶面喷雾是因为其精准度高且资源消耗少,符合鱼菜共生栽培的可持续发展目标。该研究评估了莲座直径、根长、鲜重、可溶性固形物浓度、光合色素水平以及酚类和黄酮类含量。250 ppm处理在生物量产量和质量方面都产生了最显著的提高,突出了精准肥料在提高鱼菜共生系统可持续性和效率方面的潜力。事实上,最显著的增加包括生物量生产,特别是可食用部分的生物量生产,以及光合色素水平。此外,对酚类和黄酮类等次生代谢物含量的分析表明,与对照组相比没有减少,这意味着所提出的肥料没有对这些生物活性化合物的生物合成途径产生负面影响。这项研究为鱼菜共生栽培开辟了新的可能性,突出了精准肥料在提高无土农业可持续性和生产力方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e13/11644211/b030ab7d10c7/plants-13-03416-g001.jpg

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