Microwave exposure added characteristics to the wounding-induced variation potential of Aloe arborescens leaves

Mudalige Don Hiranya Jayasanka Senavirathna
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Abstract

The influence of radiofrequency electromagnetic radiation on the wounding-induced electric potentials (EPs) in Aloe arborescens plants was investigated. Burn wounding-induced electrical potentials of mature A. arborescens plants were observed under the exposure of 2.45 ​GHz, 3.5 ​GHz and 5.5 ​GHz microwaves at incident power density 1.5 ​± ​0.2 ​W ​m−2. Aloe leaves were subjected to flame wounding at the leaf tips and propagation EPs were recorded by inserting a glass Ag/AgCl microelectrode into the leaf pulp. The propagation of electrical potential and a standard deviation of the fluctuations in electrical potential (SDEF) were investigated. The flame wounding generated propagating characteristic electric potential, and the exposure of microwaves added extra characteristics to the signals by reversing the electrical potential temporally for a shorter duration. The characteristics appeared in the repolarization phase of the signal under 2.45 ​GHz and 3.5 ​GHz exposure; for the 5.5 ​GHz exposure, 3 out of 6 characteristics appeared during the depolarization phase. Averaged polarization rates of the characteristics were increased with the increased microwave frequency. Added characteristics to the electric potential may have resulted from a secondary signal triggered due to microwave exposure, which should be further studied. The repolarization and depolarization rates of the wound signals were not different between control and microwave exposures. SDEFs were also not affected by microwave exposure.

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微波照射增加了木立芦荟叶片损伤诱导变异潜力的特征
研究了射频电磁辐射对木立芦荟损伤诱导电位的影响。在2.45的光照条件下,观察了成熟的A.arborescens植物的烧伤诱导电位​GHz,3.5​GHz和5.5​入射功率密度为1.5的GHz微波​±​0.2​W​m−2。对芦荟叶片进行叶尖火焰损伤,并通过将玻璃Ag/AgCl微电极插入牙髓中来记录繁殖EP。研究了电势的传播和电势波动的标准偏差(SDEF)。火焰伤害产生了传播特征电位,而微波的暴露通过在较短的持续时间内暂时反转电位,为信号增加了额外的特性。在2.45以下信号的复极阶段出现了特征​GHz和3.5​GHz暴露;对于5.5​GHz暴露,6个特征中有3个出现在去极化阶段。特征的平均极化率随着微波频率的增加而增加。电势的附加特性可能是由微波暴露引发的二次信号引起的,这一点需要进一步研究。伤口信号的复极率和去极化率在对照和微波照射之间没有差异。SDEF也不受微波照射的影响。
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