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纳米颗粒在应对园艺作物环境胁迫中的新作用——综述

The Emerging Roles of Nanoparticles in Managing the Environmental Stressors in Horticulture Crops-A Review.

作者信息

Abou El-Nasr Mohamed K, Hassan Karim M, Abd-Elhalim Basma T, Kucher Dmitry E, Rebouh Nazih Y, Ansabayeva Assiya, Abdelkader Mostafa, Ali Mahmoud A A, Nasser Mohamed A

机构信息

Horticulture Department, Faculty of Agriculture, Ain Shams University, Cairo 11241, Egypt.

Department of Agricultural Microbiology, Faculty of Agriculture, Ain Shams University, Cairo 11241, Egypt.

出版信息

Plants (Basel). 2025 Jul 15;14(14):2192. doi: 10.3390/plants14142192.

Abstract

The primary worldwide variables limiting plant development and agricultural output are the ever-present threat that environmental stressors such as salt (may trigger osmotic stress plus ions toxicity, which impact on growth and yield of the plants), drought (provokes water stress, resulting in lowering photosynthesis process and growth rate), heavy metals (induced toxicity, hindering physiological processes also lowering crop quantity and quality), and pathogens (induce diseases that may significantly affect plant health beside productivity). This review explores the integrated effects of these stressors on plant productivity and growth rate, emphasizing how each stressor exceptionally plays a role in physiological responses. Owing to developments in technology that outclass traditional breeding methods and genetic engineering techniques, powerful alleviation strategies are vital. New findings have demonstrated the remarkable role of nanoparticles in regulating responses to these environmental stressors. In this review, we summarize the roles and various applications of nanomaterials in regulating abiotic and biotic stress responses. This review discusses and explores the relationship between various types of nanoparticles (metal, carbon-based, and biogenic) and their impact on plant physiology. Furthermore, we assess how nanoparticle technology may play a role in practices of sustainable agriculture by reducing the amount of compounds used, providing them with a larger surface area, highly efficient mass transfer abilities, and controlled, targeted delivery of lower nutrient or pesticide amounts. A review of data from several published studies leads to the conclusion that nanoparticles may act as a synergistic effect, which can effectively increase plant stress tolerance and their nutritional role.

摘要

全球范围内限制植物生长和农业产量的主要变量是环境压力源带来的持续威胁,例如盐(可能引发渗透胁迫以及离子毒性,从而影响植物的生长和产量)、干旱(引发水分胁迫,导致光合作用过程和生长速率降低)、重金属(导致毒性,阻碍生理过程,还会降低作物产量和品质)以及病原体(引发疾病,并可能在影响生产力的同时严重影响植物健康)。本综述探讨了这些压力源对植物生产力和生长速率的综合影响,着重强调了每种压力源在生理反应中所发挥的独特作用。由于技术发展超越了传统育种方法和基因工程技术,强大的缓解策略至关重要。新的研究结果表明了纳米颗粒在调节对这些环境压力源的反应方面具有显著作用。在本综述中,我们总结了纳米材料在调节非生物和生物胁迫反应中的作用及各种应用。本综述讨论并探究了各类纳米颗粒(金属、碳基和生物源)之间的关系及其对植物生理的影响。此外,我们评估了纳米颗粒技术如何通过减少化合物使用量、为植物提供更大的表面积、高效的传质能力以及控制和靶向递送较低量的养分或农药,在可持续农业实践中发挥作用。对多项已发表研究的数据进行综述后得出结论,纳米颗粒可能具有协同效应,能够有效提高植物的胁迫耐受性及其营养作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54df/12298009/836b744c4ddc/plants-14-02192-g003.jpg

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