Demidchik Vadim, Maathuis Frans J M
Department of Biological Sciences, University of Essex CO4 3SQ, Colchester, UK.
Department of Biology, Area 9, University of York, York YO10 5DD, UK.
New Phytol. 2007;175(3):387-404. doi: 10.1111/j.1469-8137.2007.02128.x.
Nonselective cation channels (NSCCs) catalyse passive fluxes of cations through plant membranes. NSCCs do not, or only to a small extent, select between monovalent cations, and several are also permeable to divalent cations. Although a number of NSCC genes has been identified in plant genomes, a direct correlation between gene products and in vivo observed currents is still largely absent for most NSCCs. In this review, physiological functions and molecular properties of NSCCs are critically discussed. Recent studies have demonstrated that NSCCs are directly involved in a multitude of stress responses, growth and development, uptake of nutrients and calcium signalling. NSCCs can also function in the perception of external stimuli and as signal transducers for reactive oxygen species, pathogen elicitors, cyclic nucleotides, membrane stretch, amino acids and purines.
非选择性阳离子通道(NSCCs)催化阳离子通过植物细胞膜的被动通量。NSCCs对单价阳离子不进行选择,或仅在很小程度上进行选择,并且有几种通道对二价阳离子也具有通透性。尽管在植物基因组中已鉴定出许多NSCC基因,但对于大多数NSCCs而言,基因产物与体内观察到的电流之间仍基本不存在直接关联。在本综述中,对NSCCs的生理功能和分子特性进行了批判性讨论。最近的研究表明,NSCCs直接参与多种应激反应、生长和发育、营养物质吸收以及钙信号传导。NSCCs还可在外部刺激的感知中发挥作用,并作为活性氧、病原体激发子、环核苷酸、膜拉伸、氨基酸和嘌呤的信号转导分子。