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水培和鱼菜共生系统中生菜和皱叶苦苣的生长、生态生理响应及叶片矿物质组成

Growth, Ecophysiological Responses, and Leaf Mineral Composition of Lettuce and Curly Endive in Hydroponic and Aquaponic Systems.

作者信息

Vanacore Lucia, El-Nakhel Christophe, Modarelli Giuseppe Carlo, Rouphael Youssef, Pannico Antonio, Langellotti Antonio Luca, Masi Paolo, Cirillo Chiara, De Pascale Stefania

机构信息

Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.

Leibniz Institute of Vegetables and Ornamental Crops (IGZ), 14979 Großbeeren, Germany.

出版信息

Plants (Basel). 2024 Oct 11;13(20):2852. doi: 10.3390/plants13202852.

Abstract

Against the backdrop of climate change, soil loss, and water scarcity, sustainable food production is a pivotal challenge for humanity. As the global population grows and urbanization intensifies, innovative agricultural methods are crucial to meet rising food demand, while mitigating environmental degradation. Hydroponic and aquaponic systems, has emerged as one of these solutions by minimizing land use, reducing water consumption, and enabling year-round crop production in urban areas. This study aimed at assessing the yield, ecophysiological performance, and nutritional content of L. and L. var. grown in hydroponic and aquaponic floating raft systems, with L. integrated into the aquaponic system. Both species exhibited higher fresh biomass and canopy/root ratios in hydroponics compared to aquaponics. Additionally, hydroponics increased the leaf number in curly endive by 18%. Ecophysiological parameters, such as the leaf net photosynthesis rate, actual yield of PSII, and linear electron transport rate, were also higher in hydroponics for both species. However, the nutritional profiles varied between the two cultivation systems and between the two species. Given that standard fish feed often lacks sufficient potassium levels for optimal plant growth, potassium supplementation could be a viable strategy to enhance plant development in aquaponic systems. In conclusion, although aquaponic systems may demonstrate lower productivity compared to hydroponics, they offer a more sustainable and potentially healthier product with fewer harmful compounds due to the reduced use of synthetic fertilizers, pesticides, and the absence of chemical residue accumulation. However, careful system management and monitoring are crucial to minimize potential contaminants.

摘要

在气候变化、土壤流失和水资源短缺的背景下,可持续粮食生产是人类面临的一项关键挑战。随着全球人口增长和城市化加剧,创新型农业方法对于满足不断增长的粮食需求、减轻环境退化至关重要。水培和鱼菜共生系统已成为其中一种解决方案,它通过减少土地使用、降低用水量,并能在城市地区实现全年作物生产。本研究旨在评估在水培和鱼菜共生漂浮筏系统中种植的皱叶莴苣和结球生菜变种的产量、生态生理性能及营养成分,其中皱叶莴苣被整合到鱼菜共生系统中。与鱼菜共生相比,两种作物在水培中均表现出更高的鲜生物量和冠层/根系比。此外,水培使皱叶莴苣的叶片数量增加了18%。两种作物在水培中的生态生理参数,如叶片净光合速率、PSII实际产量和线性电子传递速率也更高。然而,两种种植系统以及两种作物之间的营养成分各不相同。鉴于标准鱼饲料通常缺乏足够的钾含量以实现植物的最佳生长,补充钾可能是促进鱼菜共生系统中植物生长的可行策略。总之,尽管鱼菜共生系统的生产力可能低于水培系统,但由于减少了合成肥料、农药的使用且没有化学残留积累,它们提供了一种更可持续且可能更健康、有害化合物更少的产品。然而,仔细的系统管理和监测对于将潜在污染物降至最低至关重要。

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