Kala Smriti, Jawle Chetan K D, Sogan Nisha, Agarwal Amrish, Kant Krishna, Mishra B K, Kumar Jitendra
Formulation Division, Institute of Pesticide Formulation Technology (IPFT), Gurugram 122016, Haryana, India.
Formulation Division, Institute of Pesticide Formulation Technology (IPFT), Gurugram 122016, Haryana, India.
NanoImpact. 2022 Oct;28:100431. doi: 10.1016/j.impact.2022.100431. Epub 2022 Oct 4.
Bio-inspired nanoparticles, including metallic, micelles, and polymeric, have been explored as a novel tool in the quest for effective and safe agrochemicals. Although nanoparticles (NPs) are being rapidly investigated for their usefulness in agricultural production and protection, little is known about the behaviour and interaction of oil-in-water micelle nanoparticles or nano-micelles (NM) with plants. We loaded a bio-based resin inherent of tree from the Pinaceae family as active material and produced stable nano-micelles using a natural emulsifier system. Here, we show that foliar-applied nano-micelle can translocate in two dicot plants belonging to diverse families (Coriandrum sativum -Apiaceae and Trigonella foenumgraecum -Fabaceae) via similar mode. Fluorescent-tagged NM (average diameter 11.20nm) showed strong signals and higher intensities as revealed by confocal imaging and exhibited significant adhesion in leaf compared to control. The NM subsequently translocates to other parts of the plants. As observed by SEM, the leaf surface anatomies revealed higher stomata densities and uptake of NM by guard cells; furthermore, larger extracellular spaces in mesophyll cells indicate a possible route of NM translocation. In addition, NM demonstrated improved wetting-spreading as illustrated by contact angle measurement. In a field bioassay, a single spray application of NM offered protection from aphid infestation for at least 9 days. There were no signs of phytotoxicity in plants post-application of NM. We conclude that pine resin-based nano-micelle provides an efficient, safe, and sustainable alternative for agricultural applications.
受生物启发的纳米颗粒,包括金属、胶束和聚合物纳米颗粒,已被探索作为一种新型工具,用于寻找有效且安全的农用化学品。尽管纳米颗粒(NPs)因其在农业生产和保护中的用途而正在被迅速研究,但关于水包油胶束纳米颗粒或纳米胶束(NM)与植物的行为和相互作用却知之甚少。我们将松科树木中天然存在的一种生物基树脂作为活性材料,并使用天然乳化剂系统制备出了稳定的纳米胶束。在此,我们表明,叶面喷施的纳米胶束能够以类似的方式在两种不同科的双子叶植物(芫荽 - 伞形科和胡芦巴 - 豆科)中进行转运。共聚焦成像显示,荧光标记的纳米胶束(平均直径11.20nm)呈现出强烈的信号和更高的强度,并且与对照相比,在叶片中表现出显著的附着。随后,纳米胶束转移到植物的其他部位。扫描电子显微镜观察显示,叶片表面解剖结构显示气孔密度更高,保卫细胞对纳米胶束有摄取;此外,叶肉细胞中较大的细胞外空间表明纳米胶束可能的转运途径。另外,接触角测量表明纳米胶束具有更好的润湿性。在田间生物测定中,单次喷施纳米胶束可提供至少9天的蚜虫侵害防护。喷施纳米胶束后,植物没有出现任何植物毒性迹象。我们得出结论,基于松脂的纳米胶束为农业应用提供了一种高效、安全且可持续的替代方案。