Baghel Lokesh, Kataria Sunita, Guruprasad Kadur Narayan
School of Life Sciences, Devi Ahilya University, Indore, Madhya Pradesh, India.
Bioelectromagnetics. 2016 Oct;37(7):455-70. doi: 10.1002/bem.21988. Epub 2016 Jun 23.
The effectiveness of magnetopriming was assessed for alleviation of salt-induced adverse effects on soybean growth. Soybean seeds were pre-treated with static magnetic field (SMF) of 200 mT for 1 h to evaluate the effect of magnetopriming on growth, carbon and nitrogen metabolism, and yield of soybean plants under different salinity levels (0, 25, and 50 mM NaCl). The adverse effect of NaCl-induced salt stress was found on growth, yield, and various physiological attributes of soybeans. Results indicate that SMF pre-treatment significantly increased plant growth attributes, number of root nodules, nodules, fresh weight, biomass accumulation, and photosynthetic performance under both non-saline and saline conditions as compared to untreated seeds. Polyphasic chlorophyll a fluorescence (OJIP) transients from magnetically treated plants gave a higher fluorescence yield at J-I-P phase. Nitrate reductase activity, PIABS , photosynthetic pigments, and net rate of photosynthesis were also higher in plants that emerged from SMF pre-treated seeds as compared to untreated seeds. Leghemoglobin content and hemechrome content in root nodules were also increased by SMF pre-treatment. Thus pre-sowing exposure of seeds to SMF enhanced carbon and nitrogen metabolism and improved the yield of soybeans in terms of number of pods, number of seeds, and seed weight under saline as well as non-saline conditions. Consequently, SMF pre-treatment effectively mitigated adverse effects of NaCl on soybeans. It indicates that magnetopriming of dry soybean seeds can be effectively used as a pre-sowing treatment for alleviating salinity stress. Bioelectromagnetics. 37:455-470, 2016. © 2016 Wiley Periodicals, Inc.
评估了磁引发对减轻盐胁迫对大豆生长的不利影响的效果。用200 mT的静磁场(SMF)对大豆种子预处理1小时,以评估磁引发对不同盐度水平(0、25和50 mM NaCl)下大豆植株生长、碳氮代谢及产量的影响。发现NaCl诱导的盐胁迫对大豆的生长、产量及各种生理特性产生不利影响。结果表明,与未处理种子相比,SMF预处理显著提高了非盐和盐胁迫条件下植株的生长特性、根瘤数量、根瘤鲜重、生物量积累及光合性能。经磁处理植株的多相叶绿素a荧光(OJIP)瞬态在J-I-P相具有更高的荧光产量。与未处理种子相比,由SMF预处理种子长成的植株中硝酸还原酶活性、PIABS、光合色素及光合净速率也更高。SMF预处理还增加了根瘤中的豆血红蛋白含量和血红素含量。因此,播种前将种子暴露于SMF可增强碳氮代谢,并在盐胁迫和非盐胁迫条件下提高大豆在荚数、种子数和种子重量方面的产量。因此,SMF预处理有效减轻了NaCl对大豆的不利影响。这表明干大豆种子的磁引发可有效用作缓解盐胁迫的播种前处理。《生物电磁学》。37:455 - 470,2016年。© 2016威利期刊公司