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首页> 外文期刊>Bioelectrochemistry >Cold plasma interactions with plants: Morphing and movements of Venus flytrap and Mimosa pudica induced by argon plasma jet
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Cold plasma interactions with plants: Morphing and movements of Venus flytrap and Mimosa pudica induced by argon plasma jet

机译:冷等离子体与植物的相互作用:金星verstrap的变形和运动和咪塞植物的斜体>斜视:氩气等离子体喷射诱导

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Abstract Low temperature (cold) plasma finds an increasing number of applications in biology, medicine and agriculture. In this paper, we report a new effect of plasma induced morphing and movements of Venus flytrap and Mimosa pudica. We have experimentally observed plasma activation of sensitive plant movements and morphing structures in these plants similar to stimulation of their mechanosensors in vivo. Application of an atmospheric pressure argon plasma jet to the inside or outside of a lobe, midrib, or cilia in Dionaea muscipula Ellis induces trap closing. Treatment of Mimosa pudica by plasma induces movements of pinnules and petioles similar to the effects of mechanical stimulation. We have conducted control experiments and simulations to illustrate that gas flow and UV radiation associated with plasma are not the primary reasons for the observed effects. Reactive oxygen and nitrogen species (RONS) produced by cold plasma in atmospheric air appear to be the primary reason of plasma-induced activation of phytoactuators in plants. Some of these RONS are known to be signaling molecules, which control plants' developmental processes. Understanding these mechanisms could promote plasma-based technology for plant developmental control and future use for plant protection from pathogens. Our work offers new insight into mechanisms which trigger plant morphing and movement. Graphical abstract Display Omitted Highlights ? Experimentally observed activation of Venus flytrap and Mimosa pudica by plasma ? Control experiments and simulations narrowed possible reasons of the effect. ? Reactive oxygen species (ROS) are suggested the main cause of the phenomena. ? New insight into mechanisms triggering sensitive plant morphing and movement ]]>
机译:<![cdata [ 抽象 低温(冷)等离子体发现生物,医学和农业的应用越来越多。在本文中,我们报告了血浆诱导的venus flytrap的变形和运动的新效果,以及含羞草pudica 。我们已经通过实验观察了这些植物中的敏感植物运动和变形结构的等离子体激活,类似于体内机械传感器的刺激。将大气压氩等离子射流在叶,米兰或纤毛的内部或外部应用于 dionaea muscipula 术术>型吡胶通过等离子体诱导脊柱和叶柄的运动,类似于机械刺激的影响。我们已经进行了控制实验和模拟,以说明与等离子体相关的气体流动和UV辐射不是观察到的效果的主要原因。在大气中,冷等离子体产生的反应性氧和氮物质(rons)似乎是血浆诱导植物植物活化剂激活的主要原因。已知一些这些rons是指导植物的发育过程的信号传导分子。了解这些机制可以促进基于等离子体的植物发育控制和未来用于植物保护的植物保护技术。我们的作品提供了新的洞察力,进入触发植物变形和运动的机制。 图形抽象 显示省略 突出显示 < CE:PARA ID =“P0005”查看=“全部”>实验观察到的Venus Flytrap激活和术语> mimosa pudica 通过等离子体 控制实验和仿真效果的可能原因缩小了效果的可能原因。 反应性氧气种类(ROS)建议现象的主要原因。 新的洞察力触发敏感植物变形和运动的机制 ]]>

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