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首页> 外文期刊>Bioelectromagnetics. >Pre-sowing magnetic treatments of tomato seeds increase the growth and yield of plants.
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Pre-sowing magnetic treatments of tomato seeds increase the growth and yield of plants.

机译:番茄种子的预播磁处理增加了植物的生长和产量。

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摘要

The effects of pre-sowing magnetic treatments on growth and yield of tomato (cv Campbell-28) were investigated under field conditions. Tomato seeds were exposed to full-wave rectified sinusoidal non-uniform magnetic fields (MFs) induced by an electromagnet at 100 mT (rms) for 10 min and at 170 mT (rms) for 3 min. Non-treated seeds were considered as controls. Plants were grown in experimental plots (30.2 m(2)) and were cultivated according to standard agricultural practices. During the vegetative and generative growth stages, samples were collected at regular intervals for growth rate analyses, and the resistance of plants to geminivirus and early blight was evaluated. At physiological maturity, the plants were harvested from each plot and the yield and yield parameters were determined. In the vegetative stage, the treatments led to a significant increase in leaf area, leaf dry weight, and specific leaf area (SLA) per plant. Also, the leaf, stem, and root relative growth rates of plants derived from magnetically treated seeds were greater than those shown by the control plants. In the generative stage, leaf area per plant and relative growth rates of fruits from plants from magnetically exposed seeds were greater than those of the control plant fruits. At fruit maturity stage, all magnetic treatments increased significantly (P < .05) the mean fruit weight, the fruit yield per plant, the fruit yield per area, and the equatorial diameter of fruits in comparison with the controls. At the end of the experiment, total dry matter was significantly higher for plants from magnetically treated seeds than that of the controls. A significant delay in the appearance of first symptoms of geminivirus and early blight and a reduced infection rate of early blight were observed in the plants from exposed seeds to MFs. Pre-sowing magnetic treatments would enhance the growth and yield of tomato crop.
机译:在田间条件下研究了预播磁处理对番茄(cv Campbell-28)生长和产量的影响。番茄种子在100 mT(rms)和170 mT(rms)的电磁场下分别暴露于全波整流正弦非均匀磁场(MFs)10分钟和170 mT(rms)3分钟。未处理的种子被认为是对照。植物在实验区(30.2 m(2))中生长,并根据标准农业实践进行种植。在营养生长和生殖生长阶段,定期采集样品进行生长速率分析,并评估植物对双生病毒和早疫病的抗性。在生理成熟时,从每个地块收获植物,并确定产量和产量参数。在营养阶段,这些处理导致每株植物的叶面积,叶干重和比叶面积(SLA)显着增加。而且,衍生自经磁处理的种子的植物的叶,茎和根的相对生长速率大于对照植物显示的那些。在生成阶段,每颗植物的叶面积和磁性暴露的种子所产生的果实的相对生长速率均大于对照植物的果实。与对照组相比,在果实成熟阶段,所有磁处理均显着提高了平均果实重量,单株果实产量,单位面积果实产量和赤道直径(P <.05)。在实验结束时,经过磁力处理的种子植物的总干物质明显高于对照。从暴露的种子到MFs,在植物中观察到了双生病毒和早疫病的最初症状出现的显着延迟,以及早疫病的感染率降低。播前磁处理将提高番茄作物的生长和产量。

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