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Effect of magnetic fields on cryptochrome-dependent responses in Arabidopsis thaliana

机译:磁场对拟南芥隐色依赖反应的影响

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摘要

The scientific literature describing the effects of weak magnetic fields on living systems contains a plethora of contradictory reports, few successful independent replication studies and a dearth of plausible biophysical interaction mechanisms. Most such investigations have been unsystematic, devoid of testable theoretical predictions and, ultimately, unconvincing. A recent study, of magnetic responses in the model plant Arabidopsis thaliana, however, stands out; it has a clear hypothesis—that seedling growth is magnetically sensitive as a result of photoinduced radical-pair reactions in cryptochrome photoreceptors—tested by measuring several cryptochrome-dependent responses, all of which proved to be enhanced in a magnetic field of intensity 500 μT. The potential importance of this study in the debate on putative effects of extremely low-frequency electromagnetic fields on human health prompted us to subject it to the ‘gold standard’ of independent replication. With experimental conditions chosen to match those of the original study, we have measured hypocotyl lengths and anthocyanin accumulation for Arabidopsis seedlings grown in a 500 μT magnetic field, with simultaneous control experiments at 50 μT. Additionally, we have determined hypocotyl lengths of plants grown in 50 μT, 1 mT and approximately 100 mT magnetic fields (with zero-field controls), measured gene (CHS, HY5 and GST) expression levels, investigated blue-light intensity effects and explored the influence of sucrose in the growth medium. In no case were consistent, statistically significant magnetic field responses detected.
机译:描述弱磁场对生命系统影响的科学文献包含大量相互矛盾的报道,很少有成功的独立复制研究和缺乏合理的生物物理相互作用机制。大多数此类调查都是非系统性的,缺乏可检验的理论预测,最终没有说服力。然而,最近关于模型植物拟南芥中的磁响应的研究突出。它有一个明确的假设-幼苗生长对隐色光感受器进行光诱导的自由基对反应而对磁敏感-通过测量几种隐色光依赖的反应进行了测试,所有这些事实在强度为500μT的磁场中均得到增强。这项研究在关于极低频电磁场对人体健康的假定影响的辩论中的潜在重要性促使我们将其置于独立复制的“黄金标准”下。选择与原始研究相匹配的实验条件,我们测量了在500μT磁场中生长的拟南芥幼苗的下胚轴长度和花色苷积累,并同时进行了50μT的对照实验。此外,我们确定了在50μT,1 mT和大约100 mT磁场(带有零场控制)中生长的植物的胚轴长度,测量了基因(CHS,HY5和GST)的表达水平,研究了蓝光强度效应并进行了探索蔗糖在生长培养基中的影响。在任何情况下均未检测到一致的,具有统计学意义的磁场响应。

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