首页> 外文期刊>Journal of Plant Growth Regulation >Regulation of Emphasis Type='Italic'>Arabidopsis thaliana/Emphasis> Physiological Responses Through Exogenous Electrical Field Exposures with Common Lab Equipment
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Regulation of Emphasis Type='Italic'>Arabidopsis thaliana/Emphasis> Physiological Responses Through Exogenous Electrical Field Exposures with Common Lab Equipment

机译:调节&重点型=“斜体”> rapidopsis thaliana& /重点>通过普通实验室设备通过外源电场曝光来生理反应

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摘要

Abstract Plants have many of the same electrochemical regulatory components as animals, such as sensory receptors, neurotransmitters, and voltage regulated ion channels. Prior studies have established that exogenous electrical fields could improve plant growth, agricultural yields, germination, secondary metabolite production, and disease resistance. Unfortunately, the potential benefits and mechanism of whole plant electrophysiology studies are difficult to organize into a cohesive model as they vary across organism, treatment type and method, or require elaborate/costly equipment. In many of these studies it is often difficult, if not impossible, to distinguish between electrical field-specific effects and the interference of unaddressed confounding variables such as changes in temperature, dissolved oxygen concentration, and pH. Plant electrophysiology is just beginning to be understood, and standardization and consistency are crucial if the systemic effects of this intriguing interdisciplinary phenomenon are to be grasped. Here we have developed a simple low-cost system from common lab supplies (largely electrophoresis equipment) which maintains temperature, pH, and dissolved oxygen at relatively constant levels throughout the treatment time. The model plant, Arabidopsis thaliana, was evaluated in this system and the subsequent effects on germination, growth, photopigments, and protein content are presented here. Our findings support the model that plants possess a molecular/electrical memory/battery which integrates information to drive biological responses.
机译:摘要植物具有许多相同的电化学调节组件作为动物,例如感觉受体,神经递质和电压调节离子通道。事先研究已经确定,外源电场可以改善植物生长,农业产量,萌发,次生代谢产物和抗病性。不幸的是,整个植物电生理学研究的潜在益处和机制难以组织成粘性模型,因为它们各种跨生物,处理类型和方法,或者需要精细/昂贵的设备。在这些研究中的许多研究中,如果不是不可能的话,往往是难度的,以区分电场特异性效果和未分支的混杂变量的干扰,例如温度,溶解氧浓度和pH的变化。植物电生理学刚刚开始理解,并且如果要掌握这种有趣的跨学科现象的全身效应,标准化和一致性是至关重要的。在这里,我们开发了一种简单的低成本系统,来自普通实验室用品(主要电泳设备),其在整个治疗时间内以相对恒定的水平保持温度,pH和溶解氧。在该系统中评估了模型植物,拟南芥拟南芥和此处介绍了随后对发芽,生长,皮肤清除和蛋白质含量的影响。我们的研究结果支持植物具有分子/电气存储器/电池的模型,该电池整合信息以驱动生物反应。

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