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在气培系统中,利用蛋壳粉混合海藻酸盐水凝胶种植生菜以实现节水和维生素C生物强化

Growth of Romaine Lettuce in Eggshell Powder Mixed Alginate Hydrogel in an Aeroponic System for Water Conservation and Vitamin C Biofortification.

作者信息

Afnan Fariha, Kashem Md Nayeem Hasan, Joshi Rutwik, Simpson Catherine, Li Wei

机构信息

Department of Chemical Engineering, Texas Tech University, Lubbock, TX 79409, USA.

Department of Plant and Soil Science, Texas Tech University, Lubbock, TX 79409, USA.

出版信息

Gels. 2024 May 9;10(5):322. doi: 10.3390/gels10050322.

Abstract

Vitamin C is crucial for physical well-being, and its deficiency can lead to severe health consequences. Biofortification has been used to address this deficiency by enhancing vitamin C in plants. Additionally, soilless agriculture has been used to conserve and optimize water use in comparison to conventional agriculture. While hydrogels have been shown to improve water conservation and are used for biofortification in crops, their application has only been explored in soil-based and hydroponic farming. The aeroponics system is a plant-growing method that has shown potential for increasing yields and biomass while conserving water and nutrients. In this paper, we have developed an aeroponic-compatible medium to grow romaine lettuce ( L.) with eggshell powder (ESP) mixed with calcium-alginate hydrogel as a substrate and nutrient source aiming to conserve water and incorporate vitamin C through biofortification. Herein, lower water spray time and higher intervals, with varied gel types and ESP concentrations, resulted in healthy lettuce growth. Plants treated with 0.5% ascorbic acid-absorbed ESP-mixed alginate hydrogel for biofortification showed higher levels of vitamin C compared to the traditional method. This study suggests using an alginate hydrogel-ESP-based substrate in aeroponics to reduce water usage and enhance plant biofortification of vitamin C.

摘要

维生素C对身体健康至关重要,其缺乏会导致严重的健康后果。生物强化已被用于通过提高植物中的维生素C来解决这一缺乏问题。此外,与传统农业相比,无土栽培已被用于节约和优化水资源利用。虽然水凝胶已被证明可以改善水分保持,并用于作物的生物强化,但其应用仅在土壤种植和水培中得到探索。气培系统是一种植物种植方法,已显示出在节约用水和养分的同时提高产量和生物量的潜力。在本文中,我们开发了一种适用于气培的介质,以蛋壳粉(ESP)与海藻酸钙水凝胶混合作为基质和营养源来种植生菜(L.),旨在节约用水并通过生物强化纳入维生素C。在此,较低的喷水时间和较高的间隔时间,以及不同的凝胶类型和ESP浓度,导致生菜生长健康。与传统方法相比,用0.5%抗坏血酸吸收的ESP混合海藻酸盐水凝胶处理用于生物强化的植物显示出更高水平的维生素C。这项研究表明在气培中使用基于海藻酸钙水凝胶-ESP的基质来减少水的使用并增强植物对维生素C的生物强化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71e3/11121658/1cd9bcfdc98f/gels-10-00322-g001.jpg

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