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极低频弱磁场增强NN烟草植株对烟草花叶病毒的抗性并引发与胁迫相关的生化活性。

Extremely low frequency weak magnetic fields enhance resistance of NN tobacco plants to tobacco mosaic virus and elicit stress-related biochemical activities.

作者信息

Trebbi Grazia, Borghini Francesco, Lazzarato Lisa, Torrigiani Patrizia, Calzoni G Lorenzo, Betti Lucietta

机构信息

Dipartimento di Scienze e Tecnologie Agroambientali, Università di Bologna, Italy.

出版信息

Bioelectromagnetics. 2007 Apr;28(3):214-23. doi: 10.1002/bem.20296.

Abstract

Increasing evidence has accumulated concerning the biological effects of extremely low frequency magnetic fields (ELF-MFs) in different plant models. In the present study, effects of ELF-MFs in tobacco plants reacting to tobacco mosaic virus (TMV) with a hypersensitive response (HR) were evaluated. Plants were exposed for 8 or 24 h (either before or after TMV inoculation) to a static MF, at either -17 or 13 microT, combined with a 10 Hz sinusoidal MF with different intensities (25.6 or 28.9 microT). The working variables were the area and number of hypersensitive lesions in leaves. Following ELF-MFs exposure, an increased resistance was detected, particularly after an 8-h treatment, as shown by the decrease in lesion area and number. Moreover, two enzyme activities involved in resistance mechanisms were analyzed: ornithine decarboxylase (ODC) and phenylalanine ammonia-lyase (PAL). Uninoculated leaves previously exposed to ELF-MFs in general showed a significant increase relative to controls in ODC and PAL activities, in particular for 13 microT static MF plus 28.9 microT, 10 Hz sinusoidal MF (24 h) treatment. In conclusion, ELF-MFs seem to influence the HR of tobacco to TMV, as shown by the increased resistance and changes in ODC and PAL activities, indicating the reliability of the present plant model in the study of bioelectromagnetic interactions.

摘要

关于极低频磁场(ELF-MFs)在不同植物模型中的生物学效应,已有越来越多的证据积累。在本研究中,评估了ELF-MFs对烟草植物的影响,这些烟草植物对烟草花叶病毒(TMV)产生过敏反应(HR)。植物在TMV接种之前或之后,暴露于强度为-17或13微特斯拉的静态磁场8或24小时,同时叠加强度不同(25.6或28.9微特斯拉)的10赫兹正弦磁场。工作变量是叶片中过敏病变的面积和数量。ELF-MFs暴露后,检测到抗性增强,特别是在8小时处理后,病变面积和数量减少证明了这一点。此外,还分析了参与抗性机制的两种酶活性:鸟氨酸脱羧酶(ODC)和苯丙氨酸解氨酶(PAL)。先前暴露于ELF-MFs的未接种叶片,相对于对照,ODC和PAL活性总体上显著增加,特别是对于13微特斯拉静态磁场加28.9微特斯拉、10赫兹正弦磁场(24小时)处理。总之,ELF-MFs似乎影响烟草对TMV的HR,抗性增加以及ODC和PAL活性的变化证明了这一点,表明本植物模型在生物电磁相互作用研究中的可靠性。

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