Molecular Plant Physiology and Biophysics, Julius-von-Sachs Institute for Biosciences, Biocenter, Würzburg University, Julius-von-Sachs-Platz 2, D-97082 Würzburg, Germany.
Plant Cell Environ. 2010 Mar;33(3):305-21. doi: 10.1111/j.1365-3040.2009.02075.x. Epub 2009 Nov 11.
Plant cells maintain high Ca(2+) concentration gradients between the cytosol and the extracellular matrix, as well as intracellular compartments. During evolution, the regulatory mechanisms, maintaining low cytosolic free Ca(2+) concentrations, most likely provided the backbone for the development of Ca(2+)-dependent signalling pathways. In this review, the current understanding of molecular mechanisms involved in Ca(2+) homeostasis of plants cells is evaluated. The question is addressed to which extent the mechanisms, controlling the cytosolic Ca(2+) concentration, are linked to Ca(2+)-based signalling. A large number of environmental stimuli can evoke Ca(2+) signals, but the Ca(2+)-induced responses are likely to differ depending on the stimulus applied. Two mechanisms are put forward to explain signal specificity of Ca(2+)-dependent responses. A signal may evoke a specific Ca(2+) signature that is recognized by downstream signalling components. Alternatively, Ca(2+) signals are accompanied by Ca(2+)-independent signalling events that determine the specificity of the response. The existence of such parallel-acting pathways explains why guard cell responses to abscisic acid (ABA) can occur in the absence, as well as in the presence, of Ca(2+) signals. Future research may shed new light on the relation between parallel acting Ca(2+)-dependent and -independent events, and may provide insights in their evolutionary origin.
植物细胞在细胞溶质和细胞外基质以及细胞内隔室之间维持高钙离子浓度梯度。在进化过程中,维持低细胞溶质游离钙离子浓度的调节机制很可能为钙离子依赖的信号通路的发展提供了基础。在这篇综述中,评估了参与植物细胞钙离子稳态的分子机制的当前理解。问题是,控制细胞溶质钙离子浓度的机制在多大程度上与基于钙离子的信号相关联。大量环境刺激可以引发钙离子信号,但钙离子诱导的反应可能因施加的刺激而异。提出了两种机制来解释钙离子依赖的反应的信号特异性。信号可能引发被下游信号成分识别的特定钙离子特征。或者,钙离子信号伴随着决定反应特异性的钙离子非依赖性信号事件。这种并行作用途径的存在解释了为什么保卫细胞对脱落酸(ABA)的反应可以在没有钙离子信号的情况下,以及在有钙离子信号的情况下发生。未来的研究可能会揭示平行作用的钙离子依赖和非依赖事件之间的关系,并深入了解它们的进化起源。