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首页> 外文期刊>Plant signaling & behavior >Microwave radiation alters burn injury-evoked electric potential in Nicotiana benthamiana
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Microwave radiation alters burn injury-evoked electric potential in Nicotiana benthamiana

机译:微波辐射改变了尼古利亚纳·宾夕法尼亚州尼加罗尼亚州的诱发电位

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摘要

The dielectric effect enforced on charged ions and dipolar molecules by the oscillating electric field of microwaves may influence electric signaling in plants. In the present study, the exposure of Nicotiana benthamiana plants to continuous wave 2.45 GHz microwave radiation with 1.9 - 2.1W m(-2) power density significantly reduced the amplitude of leaf burning-induced variation potential along the plant stem. The change in amplitude of the variation potential occurred mainly because of a significant reduction of the depolarization rate. This effect was not observed during the post-microwave exposure period. The unique characteristics observed in the variation potentials were also observed under microwave exposure, suggesting unaffected information delivery to distant locations or unaffected transport of specific chemicals generated by the injury.
机译:由振荡电场的带电离子和偶极分子强制执行的介电效应可能影响植物中的电信号。 在本研究中,Nicotiana Benthamiana植物的暴露于连续波2.45GHz微波辐射,具有1.9-2.1WM(-2)功率密度显着降低了植物杆的叶片燃烧引起的变化电位的幅度。 变异电位的幅度的变化主要是由于去极化率的显着降低。 在微波后暴露期间未观察到这种效果。 在微波暴露下也观察到在变化电位中观察到的独特特性,表明不受影响的信息向远处位置或未受到损伤产生的特定化学物质的不受影响的传输。

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