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Is gene activity in plant cells affected by UMTS-irradiation? A whole genome approach

机译:UMTS辐射会影响植物细胞中的基因活性吗?全基因组方法

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摘要

Mobile phone technology makes use of radio frequency (RF) electromagnetic fields transmitted through a dense network of base stations in Europe. Possible harmful effects of RF fields on humans and animals are discussed, but their effect on plants has received little attention. In search for physiological processes of plant cells sensitive to RF fields, cell suspension cultures of Arabidopsis thaliana were exposed for 24 h to a RF field protocol representing typical microwave exposition in an urban environment. mRNA of exposed cultures and controls was used to hybridize Affymetrix-ATH1 whole genome microarrays. Differential expression analysis revealed significant changes in transcription of 10 genes, but they did not exceed a fold change of 2.5. Besides that 3 of them are dark-inducible, their functions do not point to any known responses of plants to environmental stimuli. The changes in transcription of these genes were compared with published microarray datasets and revealed a weak similarity of the microwave to light treatment experiments. Considering the large changes described in published experiments, it is questionable if the small alterations caused by a 24 h continuous microwave exposure would have any impact on the growth and reproduction of whole plants.
机译:移动电话技术利用通过欧洲密集基站网络传输的射频(RF)电磁场。讨论了射频场对人类和动物可能产生的有害影响,但是它们对植物的影响却鲜有关注。为了寻找对射频场敏感的植物细胞的生理过程,将拟南芥的细胞悬浮培养物暴露于代表城市环境中典型微波暴露的射频场协议中24小时。暴露的培养物和对照的mRNA用于杂交Affymetrix-ATH1全基因组微阵列。差异表达分析显示10个基因的转录发生了显着变化,但没有超过2.5倍的变化。除了它们中的3种是黑暗诱导型以外,它们的功能并不指向植物对环境刺激的任何已知反应。将这些基因的转录变化与已发表的微阵列数据集进行比较,发现微波与光处理实验的相似性较弱。考虑到已发表的实验中描述的较大变化,连续24小时连续暴露于微波引起的微小变化是否会对整株植物的生长和繁殖产生任何影响是值得怀疑的。

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