Fromm Jörg, Lautner Silke
Fachgebiet Holzbiologie, TU München, Winzererstrasse 45, 80797 München, Germany.
Plant Cell Environ. 2007 Mar;30(3):249-257. doi: 10.1111/j.1365-3040.2006.01614.x.
Electrical excitability and signalling, frequently associated with rapid responses to environmental stimuli, are well known in some algae and higher plants. The presence of electrical signals, such as action potentials (AP), in both animal and plant cells suggested that plant cells, too, make use of ion channels to transmit information over long distances. In the light of rapid progress in plant biology during the past decade, the assumption that electrical signals do not only trigger rapid leaf movements in 'sensitive' plants such as Mimosa pudica or Dionaea muscipula, but also physiological processes in ordinary plants proved to be correct. Summarizing recent progress in the field of electrical signalling in plants, the present review will focus on the generation and propagation of various electrical signals, their ways of transmission within the plant body and various physiological effects.
电兴奋性和信号传导通常与对环境刺激的快速反应相关,在一些藻类和高等植物中是众所周知的。动物和植物细胞中都存在电信号,如动作电位(AP),这表明植物细胞也利用离子通道进行长距离信息传递。鉴于过去十年植物生物学的快速发展,电信号不仅能触发含羞草或捕蝇草等“敏感”植物的叶片快速运动,而且在普通植物的生理过程中也起作用这一假设被证明是正确的。总结植物电信号领域的最新进展,本综述将聚焦于各种电信号的产生和传播、它们在植物体内的传输方式以及各种生理效应。