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首页> 外文期刊>Scientific reports. >Spatio-temporal mapping of variation potentials in leaves of Helianthus annuus L. seedlings in situ using multi-electrode array
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Spatio-temporal mapping of variation potentials in leaves of Helianthus annuus L. seedlings in situ using multi-electrode array

机译:多电极阵列技术对菊苣幼苗叶片原位变异潜力的时空分布图

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摘要

Damaging thermal stimuli trigger long-lasting variation potentials (VPs) in higher plants. Owing to limitations in conventional plant electrophysiological recording techniques, recorded signals are composed of signals originating from all of the cells that are connected to an electrode. This limitation does not enable detailed spatio-temporal distributions of transmission and electrical activities in plants to be visualised. Multi-electrode array (MEA) enables the recording and imaging of dynamic spatio-temporal electrical activities in higher plants. Here, we used an 8 × 8 MEA with a polar distance of 450?μm to measure electrical activities from numerous cells simultaneously. The mapping of the data that were recorded from the MEA revealed the transfer mode of the thermally induced VPs in the leaves of Helianthus annuus L. seedlings in situ . These results suggest that MEA can enable recordings with high spatio-temporal resolution that facilitate the determination of the bioelectrical response mode of higher plants under stress.
机译:有害的热刺激会触发高等植物的持久变异电位(VPs)。由于常规植物电生理记录技术的局限性,记录的信号由源自连接到电极的所有细胞的信号组成。此限制不能使植物中传输和电活动的详细时空分布可视化。多电极阵列(MEA)可以对高等植物中的动态时空电活动进行记录和成像。在这里,我们使用了一个8×8 MEA,其极距为450μm,可以同时测量来自多个电池的电活动。 MEA记录的数据的映射显示了热诱导的VP在向日葵幼苗叶片中的转移模式。这些结果表明,MEA可以实现具有高时空分辨率的记录,从而有助于确定胁迫下高等植物的生物电响应模式。

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