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Glutamate-Induced Electrical and Calcium Signals in the Moss Physcomitrella patens

机译:谷氨酸诱导的电气和钙信号在Moss Physcomitrella patens

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The mode of transmission of signals between plant cells is an important aspect of plant physiology. The main role in the generation of long-distance signals is played by changes in the membrane potential and cytoplasm calcium concentration, but the relationship between these responses evoked by the same stimuli in the same plant remains unknown. As one of the first plants that colonized land, the moss Physcomitrella patens is a suitable model organism for studying the evolution of signaling pathways in plants. Here, by the application of glutamate as a stimulus, we demonstrated that electrical but not calcium signals can be true carriers of information in long-distance signaling in Physcomitrella. The generation of electrical signals in a form of propagating transient depolarization seems to be dependent on the opening of calcium channels since the responses were reduced or totally blocked by calcium channel inhibitors. While the microelectrode measurements demonstrated the transmission of electric signals between leaf cells and juvenile cells (protonema), the fluorescence imaging of cytoplasmic calcium changes indicated that calcium response occurs only locally-at the site of glutamate application, and only in protonema cells. This study indicates different involvement of glutamate-induced electrical and calcium signals in cell-to-cell communication in these evolutionarily old terrestrial plants.
机译:植物细胞间信号的传递方式是植物生理学的一个重要方面。在长距离信号的产生中,膜电位和细胞质钙浓度的变化起着主要作用,但同一植物中相同刺激引起的这些反应之间的关系尚不清楚。作为最早在陆地上定居的植物之一,苔藓Physcomitrella patens是研究植物信号通路进化的理想模式生物。在这里,通过谷氨酸作为刺激物的应用,我们证明了电信号而非钙信号可以是Physocmitrella中远距离信号的真正信息载体。以传播的瞬时去极化形式产生的电信号似乎取决于钙通道的开放,因为钙通道抑制剂减少或完全阻断了反应。虽然微电极测量表明叶细胞和幼细胞(原丝体)之间存在电信号传递,但细胞质钙变化的荧光成像表明,钙反应仅在谷氨酸施用部位局部发生,并且仅在原丝体细胞中发生。这项研究表明,在这些进化古老的陆生植物中,谷氨酸诱导的电信号和钙信号在细胞间通讯中有不同的参与。

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