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Use of various biomarkers to explore the effects of GSM and GSM-like radiations on flowering plants

机译:使用各种生物标志物探索GSM和GSM样辐射对开花植物的影响

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摘要

Since last decade, GSM (Global System for Mobile Communication) technology has evidently revolutionized our digital world. It uses electromagnetic frequency radiations (EMFr), ranging 850-1900 MHz, and is being composed of three main units (i.e., mobile station, access and core networks). GSM technology has significant impact on our daily life as revealed by increased number of mobile users in the world over. The main goal of the present review is to critically revisit the available literature regarding the responses of various flowering plant species towards GSM and GSM-like radiations using physiological, biochemical, molecular and cytological markers using in vitro approaches. Different monocots (tomato, onion, wheat and maize etc.) and dicots (pulses, mustard and flax) have been studied using both GSM mobile phone and GSM simulators. Different studies revealed overall reductions in germination, root-shoot lengths, dry weight, in both dose and time-dependent manners. However, there could be found incline in various parameters at biochemical and molecular levels. Furthermore, there could be found disturbances at cytological levels upon exposure of roots of onion to EMFr radiations. The overall literature review shows the negative effects of GSM and GSM-like radiations on targeted plant species. In order to alleviate the stressful effects of EMFr radiations on plants, in vivo studies need to be done using various cost-effective approaches such as use of biochar and various organic amendments.
机译:自去年十年以来,GSM(全球移动通信系统)技术明显地彻底改变了我们的数字世界。它使用电磁辐射(EMFR),范围为850-1900 MHz,并且由三个主机(即移动台,访问和核心网络)组成。 GSM技术对我们的日常生活产生重大影响,这是世界上移动用户数量增加的。本综述的主要目标是通过使用体外方法的使用生理学,生物化学,分子和细胞学标志物来重新审视有关各种开花植物物种对GSM和GSM样辐射的响应的可用文献。使用GSM手机和GSM模拟器都研究了不同的单焦点(番茄,洋葱,小麦和玉米等)和Dicots(脉冲,芥末和亚麻)。不同的研究表明,在剂量和时间依赖的方式中,萌发,根茎长度,干重的总体上揭示了萌发,根茎长度,干重。然而,在生化和分子水平的各种参数中可以发现倾斜。此外,在暴露于EMFR辐射的洋葱根部时,可以发现在细胞学水平下发现干扰。整体文献综述显示了GSM和GSM样辐射对靶向植物物种的负面影响。为了减轻EMFR辐射对植物的压力作用,在体内研究中需要使用各种经济有效的方法,例如使用生物炭和各种有机修正。

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