首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Electrical signal from root to shoot in Sorghum bicolor: induction of leafopening and evidence for fast extracellular propagation
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Electrical signal from root to shoot in Sorghum bicolor: induction of leafopening and evidence for fast extracellular propagation

机译:双色高粱从根到芽的电信号:诱导开叶和细胞外快速繁殖的证据

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We have observed earlier that primary leaf opening in Sorghum is a light-dependent process. We now show that giving a short photo-exposure to the roots alone also induced leaf opening over a similar time scale. However, any injury to the primary root inhibited the leaf formation. To check the propagation rate and response in this plant, the excitable properties and capability of conduction of electrical stimulus were investigated by extracellular recordings. Sorghum seedlings (5-7 days) were examined using non-damaging electrical stimuli. We demonstrate that seedlings when stimulated in one organ, the root region, produced a characteristic response, which could be recorded further up from the stimulating region in another organ, the shoot tissue. The minimum period of stimulation was 150 mus and threshold stimulus intensity was 100 muA. The general characteristic electrophysiological properties of the seedlings and the extracellular propagation of electrical signal suggest that S. bicolor exhibit typical excitable properties comparable to neural tissues. Moreover, electrical stimulus given to the root medium could overcome the requirement of photo-exposure to induce primary leaf formation in etiolated seedlings.
机译:我们之前已经观察到高粱的初生叶片开放是一个依赖光的过程。现在我们表明,仅对根部进行短时间的曝光也会在相似的时间尺度上引起叶片开张。但是,任何对初生根的伤害都会抑制叶片的形成。为了检查该植物的繁殖速率和响应,通过细胞外记录研究了电刺激的兴奋性和传导能力。使用非破坏性电刺激检查高粱幼苗(5-7天)。我们证明,当在一个器官的根部区域中刺激幼苗时,会产生特征响应,该响应可从另一器官即芽组织的刺激区域中进一步记录下来。最小刺激时间为150 mus,阈值刺激强度为100 muA。幼苗的一般特征电生理特性和电信号的细胞外传播表明,双色链球菌具有与神经组织相当的典型兴奋性。此外,对根部培养基进行电刺激可以克服光照射引起黄化幼苗中初生叶片形成的要求。

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