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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Nano carriers for nitric oxide delivery and its potential applications in plant physiological process: A mini review
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Nano carriers for nitric oxide delivery and its potential applications in plant physiological process: A mini review

机译:一氧化氮传递的纳米载体及其在植物生理过程中的潜在应用:综述

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摘要

Nitric oxide (NO) plays a key role in plant growth and defense. Since NO is a small molecule, devoid of charge and relatively lipophilic, it easily crosses cell membranes, acting as an important signaling messenger. Recently, several papers described the beneficial effects due to application of small molecular weight NO donors in plants. Exogenous NO donors break seed dormancy, stimulate plant germination and greening, control iron homeostasis in plants, and improve plant tolerance to salinity, metal toxicity, temperature and drought stress. However, these NO donors are thermally and photochemically unstable. A promising strategy that has been successfully used in biomedical applications is the combination of NO donors with nanomaterials. The encapsulation of NO donors in nanoparticlesanotubes is able to control the release of therapeutic amounts of NO, thus improving its beneficial effects. Although nanomaterials have been used successfully to carry agrochemicals in plants, the delivery of NO is still to be studied. In this context, the present review highlights the advantages of applications of NO donors in plants, the uses of nanotechnology in agriculture, and the necessity to develop new strategies based on the combination of NO and nanomaterials in agriculture. Therefore, this review hopes to open up new perspectives in the area of nanobiotechnology, NO and agriculture.
机译:一氧化氮(NO)在植物生长和防御中起关键作用。由于NO是一个小分子,没有电荷并且相对亲脂,因此它很容易穿过细胞膜,成为重要的信号传递剂。最近,几篇论文描述了由于在植物中应用小分子量NO供体而产生的有益效果。外源NO供体破坏种子休眠,刺激植物发芽和绿化,控制植物中的铁稳态,并提高植物对盐分,金属毒性,温度和干旱胁迫的耐受性。然而,这些NO供体在热和光化学上是不稳定的。已成功用于生物医学应用的一种有前途的策略是将NO供体与纳米材料相结合。 NO供体在纳米粒子/纳米管中的封装能够控制治疗量NO的释放,从而改善其有益效果。尽管纳米材料已成功用于植物中农用化学品的运输,但NO的输送仍需研究。在此背景下,本综述强调了NO供体在植物中的应用优势,纳米技术在农业中的应用以及开发基于NO和纳米材料在农业中结合的新策略的必要性。因此,本综述希望在纳米生物技术,一氧化氮和农业领域开辟新的视野。

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