Department of Biophysics, Lobachevsky National Research State University of Nizhny Novgorod, Nizhny Novgorod, 603950, Russia.
Biochemistry (Mosc). 2023 Oct;88(10):1467-1487. doi: 10.1134/S000629792310005X.
Electrical signals (ESs) appearing in plants under the action of various external factors play an important role in adaptation to changing environmental conditions. Generation of ES in higher plant cells is associated with activation of Ca2+, K+, and anion fluxes, as well as with changes in the activity of plasma membrane H+-ATPase. In the present review, molecular nature of the ion channels contributing to ESs transmission in higher plants is analyzed based on comparison of the data from molecular-genetic and electrophysiological studies. Based on such characteristics of ion channels as selectivity, activation mechanism, and intracellular and tissue localization, those ion channels that meet the requirements for potential participation in ES generation were selected from a wide variety of ion channels in higher plants. Analysis of the data of experimental studies performed on mutants with suppressed or enhanced expression of a certain channel gene revealed those channels whose activation contributes to ESs formation. The channels responsible for Ca2+ flux during generation of ESs include channels of the GLR family, for K+ flux - GORK, for anions - MSL. Consideration of the prospects of further studies suggests the need to combine electrophysiological and genetic approaches along with analysis of ion concentrations in intact plants within a single study.
在各种外部因素作用下出现在植物中的电信号 (ES) 在适应不断变化的环境条件方面发挥着重要作用。在高等植物细胞中产生 ES 与 Ca2+、K+和阴离子通量的激活以及质膜 H+-ATPase 活性的变化有关。在本综述中,基于分子遗传学和电生理学研究数据的比较,分析了参与高等植物 ES 传递的离子通道的分子性质。基于离子通道的选择性、激活机制以及细胞内和组织定位等特性,从高等植物的各种离子通道中选择了那些符合潜在参与 ES 产生要求的离子通道。对表达特定通道基因受到抑制或增强的突变体进行的实验研究数据的分析揭示了那些激活有助于 ES 形成的通道。在 ES 产生过程中负责 Ca2+流动的通道包括 GLR 家族的通道、用于 K+流动的 GORK、用于阴离子的 MSL。对进一步研究前景的考虑表明,需要将电生理学和遗传学方法结合起来,并在单个研究中分析完整植物中的离子浓度。