首页> 外文期刊>Acta Physiologiae Plantarum >Impact of pre-sowing magnetic field exposure of seeds to stationary magnetic field on growth, reactive oxygen species and photosynthesis of maize under field conditions.
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Impact of pre-sowing magnetic field exposure of seeds to stationary magnetic field on growth, reactive oxygen species and photosynthesis of maize under field conditions.

机译:田间条件下,种子的预播磁场暴露于固定磁场对玉米生长,活性氧种类和光合作用的影响。

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摘要

Impact of pre-sowing exposure of seeds to static magnetic field were studied on 1 month old maize [Zea mays . var: HQPM.1] plants under field conditions. Pre-standardized magnetic field strength of 100 mT (2 h) and 200 mT (1 h), which were proven best for improving different seedling parameters under laboratory condition, were used for this study. Magnetic field treatment altered growth, superoxide radical level, antioxidant enzymes and photosynthesis. Among the different growth parameters, leaf area and root length were the most enhanced parameters (78-40%, respectively), over untreated plants. Electron paramagnetic resonance spectroscopy study showed that superoxide radical was reduced and hydroxyl radical was unaffected after magnetic field treatment. With decrease in free radical content, antioxidant enzymes like superoxide dismutase and peroxidase were also reduced by 43 and 23%, respectively, in plants that emerged from magnetically treated seeds. Measurement of Chlorophyll a fluorescence by plant efficiency analyzer showed that the potential of processing light energy through photosynthetic machinery was enhanced by magnetic field treatment. Performance index of the plant enhanced up to two-fold and phenomenological leaf model showed more active reaction centers after magnetic field treatment. Among the two field strengths used, 200 mT (1 h) was more effective in altering all these parameters. It is concluded that pre-sowing magnetic field treatment can be effectively used for improving plant growth and development under field conditions.
机译:研究了种子播前暴露于静磁场对1个月大的玉米[Zea mays 的影响。 var:HQPM.1]在野外条件下种植。这项研究使用了预先标准化的100 mT(2 h)和200 mT(1 h)的磁场强度,这些磁场强度被证明对改善实验室条件下的不同秧苗参数最有效。磁场处理改变了生长,超氧自由基水平,抗氧化酶和光合作用。在不同的生长参数中,与未处理的植物相比,叶面积和根长是增幅最大的参数(分别为78-40%)。电子顺磁共振波谱研究表明,磁场处理后,超氧自由基被还原,羟自由基不受影响。随着自由基含量的减少,从经过磁处理的种子中萌发的植物中的抗氧化酶(如超氧化物歧化酶和过氧化物酶)也分别降低了43%和23%。用植物效率分析仪测量叶绿素 a 荧光表明,磁场处理增强了通过光合机械处理光能的潜力。磁场处理后,植物的性能指数提高了两倍,现象学叶片模型显示出更多的活跃反应中心。在使用的两个场强中,200 mT(1小时)在改变所有这些参数方面更为有效。结论是在田间条件下,播前磁场处理可以有效地改善植物的生长发育。

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