Enhancing the Yield Potential of Soybean after Magneto-Priming: Detailed Study on Its Relation to Underlying Physiological Processes

Juhie Joshi-Paneri, Sonika Sharma, K. Guruprasad, S. Kataria
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引用次数: 2

Abstract

Soybean (Glycine max) is one of the most important proteins and oilseed crops in the world due to a boom in its demand. In order to meet this demand, various modern agricultural methods are being employed, of which magneto-priming (treatment of seeds with magnetic field) is becoming the most popular technique owing to its efficiency and eco-friendly nature to improve seed vigour, growth and yield of soybean plants. Therefore, we conducted a field experiment to evaluate the impact of magneto-priming of seeds with static magnetic field on soybean var. JS-335 plants. We used static magnetic field (SMF) strengths of 150 mT (1 h) and 200 mT (1 h) for this study. Both the SMF treatments improved growth (shoot as well as root growth parameters), carbon fixation (PSII efficiency, gas exchange parameters, carbonic anhydrase activity) and nitrogen fixation (leghemoglobin content, total protein content, nitrate reductase activity). We observed an association between these parameters which contributed to biomass accumulation and hence to the enhanced crop yield. In addition, reduced levels of ASA (reduced form of ascorbate), MDA (malondialdehyde) and antioxidant enzymes suggest that magneto-priming alleviates oxidative stress in SMF-primed soybean plants. Field strength of 200 mT (1 h) proved to be more effective in improving all the parameters as compared to 150 mT. Our study suggested that pre-sowing SMF treatment can be efficaciously employed for improving the growth, development and production of soybean.
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磁激发后大豆增产潜力及其与潜在生理过程关系的详细研究
大豆(Glycine max)是世界上最重要的蛋白质和油料作物之一,需求量很大。为了满足这一需求,人们采用了各种现代农业方法,其中磁激发(用磁场处理种子)因其高效和环保的性质而成为最受欢迎的技术,以提高大豆植物的种子活力,生长和产量。为此,本研究通过田间试验,研究了静磁场诱导对大豆品种JS-335种子的影响。我们使用150 mT (1 h)和200 mT (1 h)的静磁场(SMF)强度进行研究。SMF处理均提高了植株的生长(茎部和根系生长参数)、固碳(PSII效率、气体交换参数、碳酸酐酶活性)和固氮(豆红蛋白含量、总蛋白含量、硝酸还原酶活性)。我们观察到这些参数之间存在关联,这些参数有助于生物量积累,从而提高作物产量。此外,ASA(还原型抗坏血酸)、MDA(丙二醛)和抗氧化酶水平的降低表明,磁启动减轻了smf启动大豆植株的氧化应激。结果表明,与150 mT相比,200 mT (1 h)的田间强度能更有效地改善所有参数。本研究表明,播前SMF处理可有效地改善大豆的生长发育和产量。
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