植物与金属纳米粒子的相互作用:探索其在可持续农业和作物改良中的分子机制。

Interaction of plants and metal nanoparticles: Exploring its molecular mechanisms for sustainable agriculture and crop improvement.

机构信息

Department of Integrative Agriculture, College of Agriculture and Veterinary Medicine, United Arab Emirates University, Al Ain 15551, United Arab Emirates.

Food Science and Technology Department, College of Agriculture, South Valley University, Qena 83523, Egypt.

出版信息

Environ Int. 2024 Aug;190:108859. doi: 10.1016/j.envint.2024.108859. Epub 2024 Jun 30.

Abstract

Metal nanoparticles offer promising prospects in agriculture, enhancing plant growth and ensuring food security. Silver, gold, copper, and zinc nanoparticles possess unique properties making them attractive for plant applications. Understanding molecular interactions between metal nanoparticles and plants is crucial for unlocking their potential to boost crop productivity and sustainability. This review explores metal nanoparticles in agriculture, emphasizing the need to understand these interactions. By elucidating mechanisms, it highlights the potential for enhancing crop productivity, stress tolerance, and nutrient-use efficiency, contributing to sustainable agriculture and food security. Quantifying benefits and risks reveal significant advantages. Metal nanoparticles enhance crop productivity by 20% on average and reduce disease incidence by up to 50% when used as antimicrobial agents. They also reduce nutrient leaching by 30% and enhance soil carbon sequestration by 15%, but concerns about toxicity, adverse effects on non-target organisms, and nanoparticle accumulation in the food chain must be addressed. Metal nanoparticles influence cellular processes including sensing, signaling, transcription, translation, and post-translational modifications. They act as signaling molecules, activate stress-responsive genes, enhance defense mechanisms, and improve nutrient uptake. The review explores their catalytic role in nutrient management, disease control, precision agriculture, nano-fertilizers, and nano-remediation. A bibliometric analysis offers insights into the current research landscape, highlighting trends, gaps, and future directions. In conclusion, metal nanoparticles hold potential for revolutionizing agriculture, enhancing productivity, mitigating environmental stressors, and promoting sustainability. Addressing risks and gaps is crucial for their safe integration into agricultural practices.

摘要

金属纳米粒子在农业中具有广阔的应用前景,可以促进植物生长,保障粮食安全。银、金、铜和锌纳米粒子具有独特的性质,使其成为植物应用的理想选择。理解金属纳米粒子与植物之间的分子相互作用对于挖掘其提高作物生产力和可持续性的潜力至关重要。本综述探讨了金属纳米粒子在农业中的应用,强调了理解这些相互作用的必要性。通过阐明机制,突出了提高作物生产力、增强抗逆性和提高养分利用效率的潜力,为可持续农业和粮食安全做出贡献。量化效益和风险揭示了其显著的优势。金属纳米粒子可使作物平均增产 20%,作为抗菌剂时可使疾病发病率降低多达 50%。它们还可减少 30%的养分淋溶,增加 15%的土壤碳固存,但必须解决其毒性、对非靶标生物的不利影响以及纳米粒子在食物链中的积累等问题。金属纳米粒子影响细胞过程,包括感应、信号转导、转录、翻译和翻译后修饰。它们作为信号分子,激活应激响应基因,增强防御机制,并改善养分吸收。本综述探讨了它们在养分管理、疾病控制、精准农业、纳米肥料和纳米修复中的催化作用。文献计量分析提供了对当前研究格局的深入了解,突出了趋势、差距和未来方向。总之,金属纳米粒子具有彻底改变农业、提高生产力、减轻环境胁迫和促进可持续性的潜力。解决风险和差距对于将其安全地整合到农业实践中至关重要。

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