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Review Nanomaterials (Basel, Switzerland). 2024 Nov 7;14(22):1788. doi: 10.3390/nano14221788 Q24.42024

Interactions Between Nanoparticles and Tomato Plants: Influencing Host Physiology and the Tomato Leafminer's Molecular Response

纳米颗粒与番茄植物的相互作用:影响宿主生理及番茄叶甲分子响应 翻译改进

Inzamam Ul Haq  1, Xiangyun Cai  1, Habib Ali  2, Muhammad Rehan Akhtar  1, Muhammad Adeel Ghafar  1, Moazam Hyder  1, Youming Hou  1

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作者单位

  • 1 State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Key Laboratory of Biopesticides and Chemical Biology, MOE, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
  • 2 Department of Agricultural Engineering, Khwaja Fareed University of Engineering and Information Technology, Rahim Yar Khan 64200, Punjab, Pakistan.
  • DOI: 10.3390/nano14221788 PMID: 39591030

    摘要 中英对照阅读

    Tomatoes are a crucial global crop, impacting economies and livelihoods worldwide. However, pests like the tomato leafminer (Tuta absoluta) significantly reduce their yield potential. Nanoparticles come as a solution to this context, promising innovative strategies for the protection of plants from pest infestation and management. Nanoparticles have shown great potential to improve tomato plant resistance against pests and diseases because of their unique properties. They enhance plant physiological processes like photosynthesis and nutrient uptake while activating defense-related molecular pathways. Nanoparticles also directly impact the life cycle and behavioral patterns of pests such as the tomato leafminer, reducing their destructive nature. The dual benefits of nanoparticles for enhancing plants' health and managing pests effectively provide a two-way innovative approach in agriculture. Gains made with such technology not only include increasing crop productivity and reducing crop losses but also reducing the heavy dependence on chemical pesticides, many of which have been attributed to environmental hazards. The current study illustrates the broader implications of nanoparticle use in agriculture, which is a sustainable pathway to increase crop resilience and productivity while reducing the impact of pests. Such novel approaches underline the need for continued interdisciplinary research to exploit the potential of nanotechnology in sustainable agricultural practices fully.

    Keywords: agricultural nanotechnology; nanoparticles; pest management; plant resistance; tomato leafminer.

    Keywords:nanoparticles; tomato plants; leafminer response

    西红柿是全球重要的农作物,对全球经济和生计产生重大影响。然而,像番茄叶 miner (Tuta absoluta) 这样的害虫会显著降低其产量潜力。纳米粒子在这种背景下提供了一种解决方案,承诺为植物保护免受害虫侵扰和管理提供创新策略。由于其独特的性质,纳米粒子显示出极大的潜力可以提高西红柿植株对病虫害的抵抗力。它们增强了植物生理过程如光合作用和养分吸收,并激活与防御相关的分子途径。纳米粒子还直接影响像番茄叶 miner 这样的害虫的生命周期和行为模式,减少其破坏性。纳米粒子为增强植物健康和有效管理害虫提供的双管齐下的创新方法在农业中具有重要意义。利用这种技术的好处不仅包括提高作物产量和减少作物损失,还包括减少对化学农药的过度依赖,许多化学农药被认为会对环境造成危害。当前的研究阐明了纳米颗粒在农业中的更广泛影响,这是一种可持续的方法,可以增强作物的弹性和生产力,同时减少害虫的影响。这样的新方法强调了继续进行跨学科研究以充分利用纳米技术在可持续农业生产实践中的潜力的需求。

    关键词: 农业纳米技术;纳米粒子;害虫管理;植物抗性;番茄叶miner。

    关键词:纳米颗粒; 番茄植株; 叶 miner 反应

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    期刊名:Nanomaterials

    缩写:NANOMATERIALS-BASEL

    ISSN:2079-4991

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    IF/分区:4.4/Q2

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