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用于寄生植物防治的纳米技术。

Nanotechnology for parasitic plant control.

作者信息

Pérez-de-Luque Alejandro, Rubiales Diego

机构信息

CSIC, Institute for Sustainable Agriculture, Apartado, Córdoba, Spain.

出版信息

Pest Manag Sci. 2009 May;65(5):540-5. doi: 10.1002/ps.1732.

Abstract

The field of nanotechnology opens up novel potential applications for agriculture. Nanotechnology applications are already being explored and used in medicine and pharmacology, but interest for use in crop protection is just starting. The development of nanodevices as smart delivery systems to target specific sites and nanocarriers for controlled chemical release is discussed. Some nanotechnologies can improve existing crop management techniques in the short to medium term. Nanocapsules would help to avoid phytotoxicity on the crop by using systemic herbicides against parasitic weeds. Nanoencapsulation can also improve herbicide application, providing better penetration through cuticles and tissues, and allowing slow and constant release of the active substances. On the other hand, new crop management tools could be developed on the basis of medical applications. Nanoparticles have a great potential as 'magic bullets', loaded with herbicides, chemicals or nucleic acids, and targeting specific plant tissues or areas to release their charge. Viral capsids can be altered by mutagenesis to achieve different configurations and deliver specific nucleic acids, enzymes or antimicrobial peptides acting against the parasites. Many issues are still to be addressed, such as increasing the scale of production processes and lowering costs, as well as toxicological issues, but the foundations of a new plant treatment concept have been laid, and applications in the field of parasitic plant control can be started.

摘要

纳米技术领域为农业开辟了新的潜在应用。纳米技术的应用已经在医学和药理学中得到探索和应用,但在作物保护方面的应用兴趣才刚刚开始。本文讨论了作为靶向特定部位的智能递送系统的纳米器件以及用于控制化学物质释放的纳米载体的发展。一些纳米技术可以在短期到中期改善现有的作物管理技术。纳米胶囊有助于通过使用针对寄生杂草的内吸性除草剂来避免对作物产生植物毒性。纳米封装还可以改善除草剂的施用,使其更好地穿透角质层和组织,并使活性物质缓慢持续释放。另一方面,可以在医学应用的基础上开发新的作物管理工具。纳米颗粒作为“魔弹”具有巨大潜力,可负载除草剂、化学物质或核酸,并靶向特定植物组织或区域释放其成分。病毒衣壳可以通过诱变进行改造,以实现不同的构型,并递送针对寄生虫的特定核酸、酶或抗菌肽。许多问题仍有待解决,例如扩大生产规模和降低成本,以及毒理学问题,但新的植物处理概念的基础已经奠定,并且可以开始在寄生植物控制领域的应用。

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