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Magnetic Field (MF) Applications in Plants: An Overview

机译:植物中的磁场(MF)应用:概述

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摘要

Crop yield can be raised by establishment of adequate plant stand using seeds with high germination ratio and vigor. Various pre-sowing treatments are adopted to achieve this objective. One of these approaches is the exposure of seeds to a low-to-medium level magnetic field (MF), in pulsed and continuous modes, as they have shown positive results in a number of crop seeds. On the basis of the sensitivity of plants to MF, different types of MF have been used for magnetopriming studies, such as weak static homogeneous magnetic fields (0–100 μT, including GMF), strong homogeneous magnetic fields (milliTesla to Tesla), and extremely low frequency (ELF) magnetic fields of low-to-moderate (several hundred μT) magnetic flux densities. The agronomic application of MFs in plants has shown potential in altering conventional plant production systems; increasing mean germination rates, and root and shoot growth; having high productivity; increasing photosynthetic pigment content; and intensifying cell division, as well as water and nutrient uptake. Furthermore, different studies suggest that MFs prevent the large injuries produced/inflicted by diseases and pests on agricultural crops and other economically important plants and assist in reducing the oxidative damage in plants caused by stress situations. An improved understanding of the interactions between the MF and the plant responses could revolutionize crop production through increased resistance to disease and stress conditions, as well as the superiority of nutrient and water utilization, resulting in the improvement of crop yield. In this review, we summarize the potential applications of MF and the key processes involved in agronomic applications. Furthermore, in order to ensure both the safe usage and acceptance of this new opportunity, the adverse effects are also discussed.
机译:通过使用具有高萌发率和活力的种子建立足够的植物立场,可以提高作物产量。采用各种预播种治疗来实现这一目标。这些方法之一是将种子暴露于脉冲和连续模式中的低对中级磁场(MF),因为它们已经显示出许多作物种子的阳性结果。在植物对MF的敏感性的基础上,不同类型的MF已经用于磁场研究,例如弱静态磁场(0-100μT,包括GMF),强均匀磁场(Millitesla至Tesla),以及低至中等(百μT)磁通密度的极低频率(ELF)磁场。 MFS在植物中的农艺应用在改变常规植物生产系统方面表现出潜力;增加平均发芽率,根部和射击生长;生产力很高;增加光合色素含量;并加强细胞分裂,以及水和营养吸收。此外,不同的研究表明,MFS阻止疾病和农业农作物和其他经济上重要植物产生/造成的大伤害,并有助于降低由压力情况引起的植物中的氧化损伤。改善了对MF与植物反应之间的相互作用的理解可以通过增加疾病和胁迫条件的抗性以及营养和水利用的优势来彻底改变作物产量,从而提高作物产量。在本次审查中,我们总结了MF的潜在应用以及农艺应用中涉及的关键过程。此外,为了确保安全使用和接受这种新机会,还讨论了不利影响。

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