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400、900和1900兆赫电磁场对浮萍生长和过氧化物酶活性的影响。

Influence of 400, 900, and 1900 MHz electromagnetic fields on Lemna minor growth and peroxidase activity.

作者信息

Tkalec Mirta, Malarić Kresimir, Pevalek-Kozlina Branka

机构信息

Department of Botany, Faculty of Science, University of Zagreb, HR-10000 Zagreb, Croatia.

出版信息

Bioelectromagnetics. 2005 Apr;26(3):185-93. doi: 10.1002/bem.20104.

DOI:10.1002/bem.20104
PMID:15768427
Abstract

Increased use of radio and microwave frequencies requires investigations of their effects on living organisms. Duckweed (Lemna minor L.) has been commonly used as a model plant for environmental monitoring. In the present study, duckweed growth and peroxidase activity was evaluated after exposure in a Gigahertz Transversal Electromagnetic (GTEM) cell to electric fields of frequencies 400, 900, and 1900 MHz. The growth of plants exposed for 2 h to the 23 V/m electric field of 900 MHz significantly decreased in comparison with the control, while an electric field of the same strength but at 400 MHz did not have such effect. A modulated field at 900 MHz strongly inhibited the growth, while at 400 MHz modulation did not influence the growth significantly. At both frequencies a longer exposure mostly decreased the growth and the highest electric field (390 V/m) strongly inhibited the growth. Exposure of plants to lower field strength (10 V/m) for 14 h caused significant decrease at 400 and 1900 MHz while 900 MHz did not influence the growth. Peroxidase activity in exposed plants varied, depending on the exposure characteristics. Observed changes were mostly small, except in plants exposed for 2 h to 41 V/m at 900 MHz where a significant increase (41%) was found. Our results suggest that investigated electromagnetic fields (EMFs) might influence plant growth and, to some extent, peroxidase activity. However, the effects of EMFs strongly depended on the characteristics of the field exposure.

摘要

无线电和微波频率使用的增加需要对其对生物体的影响进行研究。浮萍(Lemna minor L.)已被广泛用作环境监测的模式植物。在本研究中,将浮萍置于吉赫兹横向电磁(GTEM)室中,暴露于频率为400、900和1900 MHz的电场后,评估其生长和过氧化物酶活性。与对照组相比,暴露于900 MHz、23 V/m电场2小时的植物生长显著下降,而相同强度但频率为400 MHz的电场则没有这种效果。900 MHz的调制场强烈抑制生长,而400 MHz的调制对生长没有显著影响。在这两个频率下,较长时间的暴露大多会降低生长,最高电场(390 V/m)强烈抑制生长。植物暴露于较低场强(10 V/m)14小时后,在400和1900 MHz时生长显著下降,而900 MHz对生长没有影响。暴露植物中的过氧化物酶活性因暴露特征而异。观察到的变化大多较小,除了在900 MHz下暴露于41 V/m 2小时的植物中发现显著增加(41%)。我们的结果表明,所研究的电磁场(EMF)可能会影响植物生长,并在一定程度上影响过氧化物酶活性。然而,电磁场的影响强烈依赖于场暴露的特征。

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