Nanotechnology for the control of plant pathogens and pests

Otávio Augusto L. dos Santos , Mayara Santana dos Santos , Sérgio Antunes Filho , Bianca Pizzorno Backx
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Abstract

Agriculture is the primary food source and fundamental for human survival. However, managing pests and diseases of crops remains a challenge. Moreover, climate change events such as drought, soil depletion, and low nutrient use efficiency are significant barriers to global food security. Nanotechnology has emerged as a possibility for resolving these issues. Nanomaterials have different properties compared to their bulk forms, which allows for a wide range of new applications. An urgent demand is for the combat against pests and pathogens that cause significant losses to different cultivars, and many are still acquiring resistance, which makes this fight a challenge. Many nanomaterials have demonstrated the ability to combat such pathogens, raising their potential application. In this review, we will discuss the use of nanomaterials in combating a wide variety of pathogens and pests that constantly affect different cultivars around the world. The efficiency of the treatments varied depending on the type of nanomaterial as well as characteristics such as size and morphology. Furthermore, the dosage was another determining factor in the outcome, so that there were relevant results with improved plant development and performance. Also, we demonstrated recent advances in controlling virus infections that affect a wide variety of cultivars. We also discuss the potential to combat the most common pests and the possible mechanisms of action of these nanomaterials, which make them capable of affecting a broad spectrum of organisms. Nanomaterials probably act through different pathways, and the resulting pathways would allow the control of these pests and diseases. However, the threshold between toxicity and beneficial effects is still difficult to determine, and the resulting toxicity varied among the different cultivars reviewed. We present the challenges that still exist and perspectives for the use and commercialization of nanoproducts.

控制植物病原体和害虫的纳米技术
农业是主要的食物来源,也是人类生存的基础。然而,管理农作物的病虫害仍然是一项挑战。此外,干旱、土壤耗竭和养分利用效率低等气候变化事件也是全球粮食安全的重大障碍。纳米技术的出现为解决这些问题提供了可能。纳米材料与大块材料相比具有不同的特性,因此可以有广泛的新应用。虫害和病原体会给不同的栽培品种造成重大损失,而且许多病原体仍在不断产生抗药性,因此防治虫害和病原体是一项紧迫的任务。许多纳米材料已证明有能力对抗这些病原体,从而提高了其应用潜力。在这篇综述中,我们将讨论纳米材料在抗击各种病原体和害虫方面的应用,这些病原体和害虫不断影响着世界各地的不同栽培品种。处理效率因纳米材料的类型以及尺寸和形态等特征而异。此外,用量也是影响结果的另一个决定性因素,因此在改善植物发育和性能方面取得了相关成果。此外,我们还展示了在控制影响多种栽培品种的病毒感染方面取得的最新进展。我们还讨论了防治最常见害虫的潜力以及这些纳米材料的可能作用机制,这些机制使它们能够影响广泛的生物体。纳米材料可能通过不同的途径发挥作用,由此产生的途径可控制这些病虫害。然而,毒性和有益效果之间的阈值仍然难以确定,而且所产生的毒性在所审查的不同栽培品种中也各不相同。我们介绍了纳米产品在使用和商业化方面仍然存在的挑战和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.80
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