首页> 外文会议>International Conference on Nanotechnologies and Biomedical Engineering >Effect of Aqueous Dispersions with NPAg, NPCu, NPBi, and ZnNO, Millimeter-Wave Radiation, and Weak Magnetic Fields on the Germination of Triticale and Wheat Seeds under the Action of a Pathogenic Fungus and Low Temperatures
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Effect of Aqueous Dispersions with NPAg, NPCu, NPBi, and ZnNO, Millimeter-Wave Radiation, and Weak Magnetic Fields on the Germination of Triticale and Wheat Seeds under the Action of a Pathogenic Fungus and Low Temperatures

机译:NPAG,NPCU,NPBI和ZnNo,毫米波辐射和弱磁场对致癌真菌和低温作用下小麦种子萌发的影响

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It has been found that the exposure of triticale and wheat seeds to aqueous dispersions containing low concentrations of Ag, Cu, Bi, and ZnO nanoparticles significantly stimulates seed germination (up to 30%). Aqueous dispersions with low concentrations of nanoparticles exhibit a fungicidal effect on the seeds in seed treatment prior to the exposure of the seeds to pathogenic fungus Helminthosporium avenae. The most informative parameter was seed germination capacity. Potassium permanganate, which is a conventional factor of seed disinfection, has proved to be less effective. In comparative experiments on studying the effects of the nanofactor and weak electromagnetic fields on the seeds, it has been generally found that there are some similarities between the factors in the responses of both normal seeds and the seeds subsequently exposed to the action of the pathogenic fungus and low temperatures. In some versions, the effects of the nanofactor and then of the magnetic field were more pronounced.
机译:已经发现,将小麦和小麦种子暴露于含有低浓度的Ag,Cu,Bi和ZnO纳米粒子的水分散体显着刺激种子萌发(高达30%)。具有低浓度纳米颗粒的含水分散体对种子曝光前的种子处理中的种子表现出杀真菌作用,以致病真菌Helminthosporium Avenae。最具信息丰富的参数是种子萌发能力。型高锰酸钾,即种子消毒的常规因素,已被证明不太有效。在研究纳米反光器和弱电磁场对种子效果的比较实验中,已经发现,两种正常种子的反应之间存在一些相似性,随后暴露于致病真菌的作用的种子和低温。在一些版本中,纳米actor和然后磁场的效果更加明显。

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