Facultad de Recursos Naturales Renovables, Laboratorio de Bionanomateriales, Universidad Arturo Prat, Av. Arturo Prat s/n, Campus Huayquique, Iquique 1100000, Chile.
Núcleo de Investigación Aplicada e Innovación en Ciencias Biológicas, Facultad de Recursos Naturales Renovables, Universidad Arturo Prat, Av. Arturo Prat s/n, Campus Huayquique, Iquique 1100000, Chile.
J Agric Food Chem. 2024 Oct 30;72(43):23645-23670. doi: 10.1021/acs.jafc.4c05079. Epub 2024 Oct 21.
Nanomaterials (NMs) have shown relevant impacts in crop protection, improvement of yields, and minimizing collateral side effects of fertilizer and pesticides in vegetable and fruit production. The application of NMs to improve biofortification has gained much attention in the last five years, offering a hopeful and optimistic outlook. Thus, we propose comprehensively revising the scientific literature about the use of NMs in the agronomic biofortification of crops and analyzing the beneficial impact of the use of NMs. The results indicated that different species of plants were biofortified with essential elements and macronutrients after the applications of Zn, Fe, Se, nanocomposites, and metalloid NPs. In addition, the physiological performances, antioxidant compounds, and yields were improved with NMs. Using nanofertilizers for the biofortification of crops can be considered a promising method to deliver micronutrients for plants with beneficial impacts on human health, the environment, and agriculture.
纳米材料 (NMs) 在作物保护、提高产量以及最大限度减少蔬菜和水果生产中化肥和农药的附带副作用方面显示出了相关影响。在过去五年中,应用纳米材料来改善生物强化引起了广泛关注,提供了一个充满希望和乐观的前景。因此,我们建议全面修订关于纳米材料在作物农业生物强化中的应用的科学文献,并分析使用纳米材料的有益影响。结果表明,在应用锌、铁、硒、纳米复合材料和类金属 NPs 后,不同种类的植物被生物强化了必需元素和大量营养素。此外,纳米材料还提高了植物的生理性能、抗氧化化合物和产量。使用纳米肥料进行作物的生物强化可以被认为是一种有前途的方法,它可以为植物提供有益的微量营养素,对人类健康、环境和农业都有积极影响。