Influence of Electromagnetic Fields on Seed Productivity

IF 0.9 4区 化学 Q4 CHEMISTRY, PHYSICAL High Energy Chemistry Pub Date : 2024-04-21 DOI:10.1134/s0018143924020115
L. S. Shibryaeva, M. E. Chaplygin, E. V. Zhalnin, N. D. Blinov, A. G. Aksenov
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Abstract

This review is devoted to a problem of the impact of low-frequency electromagnetic fields on the productivity of plant seeds. The work discusses the patterns of manifestation of a magnetobiological effect when irradiating seeds, considers the basic laws underlying magnetobiological effects, and discusses the cause-and-effect relationships between the mechanisms and parameters of the action of electromagnetic fields on plants on one hand and the composition of mineral substances and the cellular structure of seeds on the other hand. Based on an analysis of the results of laboratory tests carried out in the fields and in scientific laboratories for the presowing treatment of seeds of various grain and vegetable crops, it is shown that a strict correspondence of the mechanism and kinetics of energy impact with the energy susceptibility of a living plant organism at macromolecular and molecular levels is among the main factors determining the growth of seed germination and the subsequent development into an adult organism.

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电磁场对种子生产力的影响
摘要 本综述专门讨论低频电磁场对植物种子生产力的影响问题。该著作讨论了辐照种子时磁生物学效应的表现形式,研究了磁生物学效应的基本规律,并讨论了电磁场对植物的作用机制和参数与种子的矿物质成分和细胞结构之间的因果关系。根据对在田间和科学实验室对各种谷物和蔬菜作物种子进行播前处理的实验室测试结果的分析表明,能量影响的机制和动力学与活体植物有机体在大分子和分子水平上的能量敏感性之间的严格对应关系是决定种子萌发生长和随后发育成成体有机体的主要因素之一。
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来源期刊
High Energy Chemistry
High Energy Chemistry 化学-物理化学
CiteScore
1.50
自引率
28.60%
发文量
62
审稿时长
6-12 weeks
期刊介绍: High Energy Chemistry publishes original articles, reviews, and short communications on molecular and supramolecular photochemistry, photobiology, radiation chemistry, plasma chemistry, chemistry of nanosized systems, chemistry of new atoms, processes and materials for optical information systems and other areas of high energy chemistry. It publishes theoretical and experimental studies in all areas of high energy chemistry, such as the interaction of high-energy particles with matter, the nature and reactivity of short-lived species induced by the action of particle and electromagnetic radiation or hot atoms on substances in their gaseous and condensed states, and chemical processes initiated in organic and inorganic systems by high-energy radiation.
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