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Comparing Effects of Electromagnetic Fields (60 Hz) on Seed Germination and Seedling Development in Monocotyledons and Dicotyledons

机译:电磁场(60 Hz)对单子叶植物和双子叶植物种子萌发和幼苗发育的影响比较

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Various biological effects of exposure to extremely low frequency electromagnetic fields (ELF-EMFs) have been documented so far, but very little work has been carried out on plants. In this research, two states of seeds (wet, dry) of Brassica napus L. (dicot) and Zea mays L (monocot) were exposed to pulsed EMFs (15 min on, 15 min off) by magnitude of 1 to 7mT in steps of 2 mT and the highest intensity was 10 mT for 1 to 4 hours in steps of 1 h. Exposure to EMFs was performed by a locally designed EMF generator. Three replicates, with 30 seeds in each one were placed in germinator with 23℃ temperature after treatment. The number of germinated seeds was registered on the 2nd day after moisturizing in Brassica napus and 6th day after moisturizing in Zea mays. Developmental growth characteristics including: root and shoot length, fresh and dried biomass weight of 7 days seedlings were measured.rnSeedlings grown from dry pretreated seeds of Brassica napus showed the most significant increase in developmental growth at 10 mT and seedlings grown from wet treated seeds showed the most significant decrease in developmental growth at 10 mT comparing to control (p < 0.05) we observed an overall stimulating effects of EMFs in Zea mays with respect to developmental growth characteristics and the most significant increase observed at 10 mT (p < 0.05). All experimental data suggested Monocotyledons are more resistant than Dicotyledons against EMFs as abiotic stress.
机译:迄今为止,已经证明了暴露于极低频电磁场(ELF-EMF)的各种生物效应,但是对植物的研究很少。在这项研究中,将甘蓝型油菜(双子叶植物)和玉米单子叶植物(单子叶植物)的两种种子(湿,干)状态逐步暴露于脉冲电动势(15分钟打开,15分钟关闭),幅度为1至7mT。 1 m的最大强度为10 mT,持续1到4 h。由当地设计的EMF发生器进行EMF暴露。处理后,一式三份,每个种子含30粒种子,置于发芽器中,温度为23℃。在甘蓝型油菜中保湿后第2天和在玉米中保湿后第6天记录发芽种子的数量。测量了7天幼苗的生长生长特征,包括根和茎长,新鲜和干燥的生物量.rn从甘蓝型油菜干预处理种子生长的幼苗在10 mT时表现出最大的生长增长,而从湿处理种子生长的幼苗显示与对照组相比,在10 mT时发育增长的最显着下降(p <0.05),我们观察到玉米胚芽中的EMF对发育特性具有总体刺激作用,在10 mT时观察到最显着的增长(p <0.05)。所有实验数据表明,单子叶植物比双子叶植物对作为非生物胁迫的EMF具有更高的抵抗力。

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