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PLANT NEUROBIOLOGY AND PLANT SIGNALING MECHANISM

机译:植物神经生物学和植物信号传递机制

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From some recent study related to the perception of and response to the environmental stimuli by plants, we may go to believe that plants have some kind of rudimentary nervous system and action-potentials (carried on by rhythmic opening and closing of K~+ ion channels on the living phloem membrane) similar to animals for signal perception, transmission and transduction. So, now is the era when plant neurobiology is emerging. This conveys that plants perform rapid long-distance internal communication via action potentials and plant bioelectricity and they contain critical nervous molecules like glutamate receptors and synaptotagmins for signal transmission and transduction. They possess hormones and some other plain growth regulators as chemical messengers. Present article tries to explore the interrelationship among plant neurobiology, plant bioelectricity and plant signaling mechanism.
机译:从最近一些有关植物对环境刺激的感知和响应的研究中,我们可能会认为植物具有某种基本的神经系统和动作电位(通过有规律地打开和关闭K〜+离子通道进行)在活韧皮膜上)类似于动物,以进行信号感知,传递和转导。因此,现在是植物神经生物学兴起的时代。这表明植物通过动作电位和植物生物电来进行快速的长距离内部通讯,并且它们包含重要的神经分子,例如谷氨酸受体和突触结合蛋白,以进行信号传递和转导。他们拥有激素和其他一些普通的生长调节剂,作为化学信使。本文试图探讨植物神经生物学,植物生物电和植物信号传导机制之间的相互关系。

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