Pre-Sowing Static Magnetic Field Treatment of Vegetable Seeds and Its Effect on Germination and Young Seedlings Development

Athanasios Koukounaras, Achilles Boursianis, Stefanos Kostas, Argyris Theopoulos, Filippos Bantis, Theodoros Samaras
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Abstract

The pre-sowing treatment of seeds with an α static magnetic field has been reported in the literature as a means of enhancing plant development. In this work, we have designed, characterized, and constructed a setup for exposing small vegetable seeds to a static magnetic field. In a series of experiments, we have treated the seeds of vegetables that are important for the Mediterranean diet, i.e., tomato, lettuce, and salad rocket. The results show that tomato seedlings significantly benefit from a pre-sowing treatment with a magnetic flux density of 45 mT, for both an exposure time of 60 and 90 min compared to control, while the time of treatment that leads to improved growth is 90 min. In order to improve the growth of salad rocket seedlings the magnetic field had to be 150 mT, whereas the results for lettuce seeds were a bit inconsistent, i.e., it is not clear whether a lower (45 mT) or a higher (300 mT) magnetic flux density should be applied.
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蔬菜种子播前静磁场处理及其对种子萌发和幼苗发育的影响
在播种前对种子进行α静态磁场处理是促进植物发育的一种手段,已有文献报道。在这项工作中,我们设计、表征并构建了一个将小蔬菜种子暴露在静态磁场中的装置。在一系列的实验中,我们处理了对地中海饮食很重要的蔬菜种子,如西红柿、生菜和沙拉火箭。结果表明,与对照相比,在60和90分钟的暴露时间下,番茄幼苗在45 mT的磁通密度处理下显著受益,而在90分钟的处理时间下,番茄幼苗的生长得到改善。为了促进沙拉火箭幼苗的生长,磁场必须达到150 mT,而生菜种子的结果则不太一致,即:目前尚不清楚应该采用较低(45 mT)还是较高(300 mT)的磁通密度。
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