Foliar Application of Iron Oxide Nanoparticles Promotes Growth, Mineral Contents, and Medicinal Qualities of Solidago virgaurea L.

IF 3.9 3区 农林科学 Journal of Soil Science and Plant Nutrition Pub Date : 2023-01-01 DOI:10.1007/s42729-023-01218-2
Mohamed Abdulla Ahmed, Seyedeh-Somayyeh Shafiei-Masouleh, Riyadh Mannaa Mohsin, Ziyad Khalf Salih
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引用次数: 2

Abstract

Goldenrod (Solidago virgaurea L.) is considered for their medicinal properties for humans. These properties are attributed to some volatile compounds that can be extracted from above- and underground organs of plants. More ingredients of medicinal plants are undoubtedly considered by herbal medicine activists. The study aimed to promote Solidago yield and quality under foliar application of Fe2O3 nanoparticles that can be considered as a safe and healthy fertilizer on the basis of US Food and Drug Administration (FDA) regulatory process about color additives. The experiment was performed with concentrations of Fe2O3 nanoparticles (0, 0.5, or 1 mg L-1) and foliar application times (1, 2, 3, 4, or 5 times) on 4- to 5-leaf plants of Solidago virgaurea. Results showed that 4 times foliar application of 1 mg L-1 caused the best plant growth and mineral element contents (nitrogen, phosphorous, potassium, copper, and zinc) except for Fe content that the more the times of foliar application, the more the Fe content increased. However, the flavonoid (rutin and quercetin) and essential oils (caryophyllene, alpha-pinene, camphene, limonene, linalool, myrcene, and terpinene) as biochemical and medicinal qualities of the treated plants were remarkably promoted when 1 mg L-1 of nanoparticles was sprayed 5 times. Furthermore, the more the element contents, the more the ingredients. Finally, based on the goals of herbal medicine activists for the production of the essence, extract, or herb, both 5 and 4 times of foliar applications of ferric oxide nanoparticles are safe and may be economic and recommendable.

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叶面施用氧化铁纳米颗粒促进紫花黄花生长、矿物质含量和药用品质。
黄花(Solidago virgaurea L.)因其对人类的药用特性而被认为是。这些特性归因于一些挥发性化合物,这些化合物可以从植物的地上和地下器官中提取出来。草药积极分子无疑会考虑更多的药用植物成分。根据美国食品药品监督管理局(FDA)对颜色添加剂的监管规定,本研究旨在提高叶面施用Fe2O3纳米颗粒紫花苜蓿的产量和品质,并将其作为一种安全健康的肥料。实验采用Fe2O3纳米颗粒浓度(0、0.5或1 mg L-1)和叶面施用次数(1、2、3、4或5次)对4- 5片紫花Solidago virgaurea植物进行。结果表明,4次叶面施用1 mg L-1对植株生长和矿质元素(氮、磷、钾、铜、锌)含量均有较好的促进作用,但铁含量除外,且叶面施用次数越多,铁含量增加越多。然而,1 mg L-1纳米颗粒喷施5次,可显著提高处理植株的类黄酮(芦丁和槲皮素)和精油(石竹烯、α -蒎烯、莰烯、柠檬烯、芳樟醇、月桂烯和萜烯)的生化和药用品质。此外,元素含量越多,成分越多。最后,根据草药积极分子生产精华、提取物或草药的目标,5倍和4倍的氧化铁纳米颗粒叶面施用是安全的,可能是经济和值得推荐的。
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来源期刊
自引率
10.30%
发文量
331
期刊介绍: The Journal of Soil Science and Plant Nutrition is an international, peer reviewed journal devoted to publishing original research findings in the areas of soil science, plant nutrition, agriculture and environmental science. Soil sciences submissions may cover physics, chemistry, biology, microbiology, mineralogy, ecology, pedology, soil classification and amelioration. Plant nutrition and agriculture submissions may include plant production, physiology and metabolism of plants, plant ecology, diversity and sustainability of agricultural systems, organic and inorganic fertilization in relation to their impact on yields, quality of plants and ecological systems, and agroecosystems studies. Submissions covering soil degradation, environmental pollution, nature conservation, and environmental protection are also welcome. The journal considers for publication original research articles, technical notes, short communication, and reviews (both voluntary and by invitation), and letters to the editor.
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