Department of Biophysics, Institute of Biology, Maria Curie-Skłodowska University, Lublin, Poland.
Plant Signal Behav. 2011 Jul;6(7):1002-3. doi: 10.4161/psb.6.7.15500.
The mechanism of cold perception by plants is still poorly understood. It was found that temperature drop evokes changes in the activity of ion pumps and channels, which leads to plasma membrane depolarization. The nature of the primary step of its action (alteration in membrane composition, transient influx of Ca2+ etc.,) has not been elicited yet. Our electrophysiological experiments conducted on the liverwort Conocephalum conicum showed that its cells respond not only to sudden cooling but also to menthol, generating depolarization of the plasma membrane and action potentials (APs). Similar results are well documented in mammals; cold or “cooling compounds” including menthol cause activation of thermosenstitive channel TRPM8 permeable to Ca2+ and generation of AP series. TRP receptors are detected, among others, in green and brown algae. Possible existence of TRPM8-like channel-receptor in Conocephalum conicum is discussed here.
植物冷感的机制仍未被充分理解。研究发现,温度下降会引起离子泵和通道活性的改变,导致质膜去极化。其作用的初始步骤的性质(膜组成的改变、瞬时钙内流等)尚未被揭示。我们在地钱 Conocephalum conicum 上进行的电生理学实验表明,其细胞不仅对突然降温有反应,对薄荷醇也有反应,产生质膜去极化和动作电位 (AP)。类似的结果在哺乳动物中已有充分的记录;冷或“冷却化合物”,包括薄荷醇,会激活对 Ca2+ 通透的热敏通道 TRPM8,并产生一系列的 AP。TRP 受体除其他外,还存在于绿藻和褐藻中。本文讨论了地钱 Conocephalum conicum 中可能存在的 TRPM8 样通道-受体。