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农业中的纳米奇观:揭示纳米颗粒提高作物耐盐胁迫能力的潜力。

Nanowonders in agriculture: Unveiling the potential of nanoparticles to boost crop resilience to salinity stress.

机构信息

School of Environment and Sustainable Development, Central University of Gujarat, Sector-30, Gandhinagar 382030, Gujarat, India.

School of Life Sciences, Central University of Gujarat, Sector-30, Gandhinagar 382030, Gujarat, India.

出版信息

Sci Total Environ. 2024 May 15;925:171433. doi: 10.1016/j.scitotenv.2024.171433. Epub 2024 Mar 6.

Abstract

Soil salinization significantly affects crop production by reducing crop quality and decreasing yields. Climate change can intensify salinity-related challenges, making the task of achieving global food security more complex. To address the problem of elevated salinity stress in crops, nanoparticles (NPs) have emerged as a promising solution. NPs, characterized by their small size and extensive surface area, exhibit remarkable functionality and reactivity. Various types of NPs, including metal and metal oxide NPs, carbon-based NPs, polymer-based NPs, and modified NPs, have displayed potential for mitigating salinity stress in plants. However, the effectiveness of NPs application in alleviating plant stress is dependent upon multiple factors, such as NPs size, exposure duration, plant species, particle composition, and prevailing environmental conditions. Moreover, alterations to NPs surfaces through functionalization and coating also play a role in influencing plant tolerance to salinity stress. NPs can influence cellular processes by impacting signal transduction and gene expression. They counteract reactive oxygen species (ROS), regulate the water balance, enhance photosynthesis and nutrient uptake and promote plant growth and yield. The objective of this review is to discuss the positive impacts of diverse NPs on alleviating salinity stress within plants. The intricate mechanisms through which NPs accomplish this mitigation are also discussed. Furthermore, this review addresses existing research gaps, recent breakthroughs, and prospective avenues for utilizing NPs to combat salinity stress.

摘要

土壤盐渍化通过降低作物品质和减少产量,对作物生产产生重大影响。气候变化会加剧与盐度相关的挑战,使实现全球粮食安全的任务更加复杂。为了解决作物盐胁迫问题,纳米颗粒(NPs)作为一种很有前途的解决方案出现了。纳米颗粒的特点是尺寸小、表面积大,表现出显著的功能和反应性。各种类型的 NPs,包括金属和金属氧化物 NPs、碳基 NPs、聚合物基 NPs 和改性 NPs,都显示出了在缓解植物盐胁迫方面的潜力。然而,纳米颗粒在减轻植物压力方面的有效性取决于多个因素,例如 NPs 的大小、暴露时间、植物种类、颗粒成分和环境条件。此外,通过功能化和涂层改变 NPs 的表面也会影响植物对盐胁迫的耐受性。NPs 通过影响信号转导和基因表达来影响细胞过程。它们可以对抗活性氧(ROS)、调节水平衡、增强光合作用和养分吸收,并促进植物生长和产量。本综述的目的是讨论不同 NPs 对缓解植物盐胁迫的积极影响。还讨论了 NPs 实现这种缓解的复杂机制。此外,本综述还讨论了目前的研究空白、最近的突破以及利用 NPs 来对抗盐胁迫的未来途径。

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