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New Approach to Study Stimulating Effect of the Pre-Sowing Barley Seeds Treatment in the Electromagnetic Field

机译:研究电磁场预播大麦种子处理刺激效果的新方法

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摘要

Improvement of the agricultural crops seeds quality with their pre-sowing treatment in the electromagnetic field and the subsequent increase in grain yield and studying the mechanisms of stimulating effects - all those are the important problems of science and practice of the crop-growing sector. The purpose of the presented research was to study the mechanism for increasing the germinating ability of spring barley seeds as a result of pre-sowing treatment with an alternating electromagnetic field ofan industrial frequency (50 Hz) for one second. After four days of storing, treated seeds were germinated under optimal conditions for this process and the number of germinated seeds of two spring barley varieties was counted each day during seven daysperiod. Also we studied the onset, duration and passage of Microphenological Phases of Seeds Germination (MPPSG), based on the observation and the time registration of each seed morphological changes during germination with two-hour periodicity for seventwenty-four hours. It was established that seeds treatment in an electromagnetic field leads to an acceleration of their germination for one day due to the appearance of rapidly germinating seeds fraction and disappearing of the slowest germinating seeds fraction. This is due to the acceleration of the onset of all MPPSGs and reducing of their duration. Despite the reduction in the absolute values of the duration (in hours) of all MPPSGs, two phases ("Swelling" and "Short roots") began to occupy a greater time percentage in the structure of the germination period after seeds pre-sowing treatment. It is interesting, that treated seeds also absorb more water during the swelling period than untreated seeds, although the duration of that period has shortened. Therefore, the conclusion was made about stimulation of accelerated water absorption by seeds during the swelling period, the duration of which is shortened, by the electromagnetic field. It was established that there are fractions in the seed lotsof different spring barley varieties that respond differently to treatment. Consequently, when studying the mechanism of the electromagnetic field influence on seeds germination, it is necessary to study not only the total effect, but also take into account the reaction of individual fractions. The proposed experimental approach can be used as an informative tool for obtaining new knowledge in the field of the stimulating effect of seed treatment in an alternating electromagneticfield of the industrialfrequency on their germinating ability and further growth and development of plants.
机译:通过在电磁场中的预播种处理和随后的籽粒产量增加和研究刺激作用的机制,改善农业农作物种子质量的改善 - 所有这些都是作物生长行业科学与实践的重要问题。本研究的目的是研究增加春季大麦种子的发芽能力的机制,因为使用工业频率(50Hz)的交流电磁场预先播种,一秒钟。在储存四天后,在该过程的最佳条件下萌发治疗的种子,并且在七天期间每天计算两个春麦品种的发芽种子的数量。此外,我们研究了种子萌发(MPPSG)的发病,持续时间和通过,基于每种种子形态变化的观察和时间登记在培养中,培养为七小时的萌芽。建立了在电磁场中的种子治疗导致他们的发芽加速,因为随着迅速发芽的种子分数和最慢的发芽种子级分的消失。这是由于所有MPPSG的开始和减少持续时间的加速。尽管所有MPPSG的持续时间(以小时数)的绝对值减少,但两阶段(“膨胀”和“短根”)开始在种子预播种处理后发芽期的结构中占据更大的时间百分比。有趣的是,这种治疗的种子在膨胀期间也吸收更多的水,而不是未处理的种子,尽管该期间的持续时间缩短了。因此,在膨胀时期通过种子刺激加速吸水性的结论,通过电磁场缩短了持续时间。正建立了种子批量在不同春麦片品种的级数与治疗不同。因此,当研究电磁场对种子萌发的影响时,不仅需要研究总效果,而且还考虑各个级分的反应。所提出的实验方法可用作获得种子处理刺激效果领域的新知识,以在其发芽能力的交替电磁场和植物的进一步生长和发展的交替电磁场中获得种子处理的刺激作用领域。

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  • 作者单位

    Department of Agronomy and Crop Breeding Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Federation;

    Department of Thermal Engineering and Information Management System Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Fed;

    Department of Technosphere Safety and Physics Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Federation;

    Department of Agronomy and Crop Breeding Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Federation;

    Department of Technosphere Safety and Physics Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Federation;

    Department of Thermal Engineering and Information Management System Azov-Black Sea Engineering Institute Federal State Budgetary Educational Institution of Higher Education Don State Agricultural University 347740 21 Lenin Str. Zernograd Russian Fed;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

    Seeds; Barley; Alternating Electromagnetic Field of Industrial Frequency; Germination; Microphenological Phases of Seeds Germination;

    机译:种子;大麦;工业频率的交替电磁场;萌发;种子萌发的次级阶段;

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