藻类纳米颗粒在提高豆科作物抗非生物胁迫的可持续农业策略中的作用综述

Phetole Mangena
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引用次数: 0

摘要

纳米技术是缓解粮食短缺、提高作物生产力和植物对环境压力的适应能力的最可持续和最环保的战略之一。基于藻类的纳米颗粒的绿色合成仍然很少有报道,尽管一些藻类物种显示出很高的经济和生态价值,具有改变现代农业面貌的潜力。这篇综述探讨了藻类nps作为一种可持续农业策略的作用,以改善作物生长和对非生物限制的耐受性。最近的文献报道,在土壤和叶面施用海藻nps后,其形态属性(69.09 %和64.91 %)、抗氧化活性(81 %和52 %)和叶绿素含量(73 %和68 %)平均增加。它们对作物代谢的吸收和参与,对光合作用、生长、繁殖和籽粒形成等最重要过程的调节和调控,有助于提高对非生物胁迫的耐受性,以及潜在的健康相关或环境风险的发生,本文也讨论了这些风险。然而,本综述的分析表明,藻类纳米材料在控制关键代谢过程方面具有巨大的潜力,同时作为一种高效且经济的农业策略,在豆科作物中作为生物刺激化合物应用时,可以实现高质量的产量,并提高植物对非生物胁迫因素的耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review on the role of algae-nanoparticles as a sustainable agricultural strategy to improve resilience against abiotic stresses in leguminous crops
Nanotechnology serves as one of the most sustainable and eco-friendly strategy to alleviate food shortage, boost crop productivity and plants’ resilience to environmental stresses. Green synthesis of algae-based nanoparticles remains scantly reported, although several algal species demonstrated high economic and ecological value with the potential to change the face of modern agriculture. This review interrogated the role of algal-NPs as a sustainable agricultural strategy to improve crop growth and tolerance against abiotic constraints. Recent literature reported average increases in morphological attributes (69.09 % and 64.91 %), antioxidant activity (81 % and 52 %) and chlorophyll content (73 % and 68 %) following soil and foliar applications of algal-NPs. Their uptake and involvement in crop metabolism, modulation and regulation of the most vital processes such as photosynthesis, growth, reproduction and grain formation contribute to improved tolerance to abiotic stresses, and occurrence of potential health-related or environmental risks also discussed in this paper. However, the analyses made in this review suggest that algae-based nanomaterials hold a great potential in controlling critical metabolic processes while serving as an efficient and cost-effective agristrategy in achieving high-quality yields, and increasing the plants’ tolerance to abiotic stress factors when applied as biostimulatory compounds in leguminous crops.
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