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Constant change: dynamic regulation of membrane transport by calcium signalling networks keeps plants in tune with their environment

机译:不断变化:钙信号网络动态调节膜运输,使植物与环境保持协调一致

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Despite substantial variation and irregularities in their environment, plants must conform to spatiotemporal demands on the molecular composition of their cytosol. Cell membranes are the major interface between organisms and their environment and the basis for controlling the contents and intracellular organization of the cell. Membrane transport proteins (MTPs) govern the flow of molecules across membranes, and their activities are closely monitored and regulated by cell signalling networks. By continuously adjusting MTP activities, plants can mitigate the effects of environmental perturbations, but effective implementation of this strategy is reliant on precise coordination among transport systems that reside in distinct cell types and membranes. Here, we examine the role of calcium signalling in the coordination of membrane transport, with an emphasis on potassium transport. Potassium is an exceptionally abundant and mobile ion in plants, and plant potassium transport has been intensively studied for decades. Classic and recent studies have underscored the importance of calcium in plant environmental responses and membrane transport regulation. In reviewing recent advances in our understanding of the coding and decoding of calcium signals, we highlight established and emerging roles of calcium signalling in coordinating membrane transport among multiple subcellular locations and distinct transport systems in plants, drawing examples from the CBL-CIPK signalling network. By synthesizing classical studies and recent findings, we aim to provide timely insights on the role of calcium signalling networks in the modulation of membrane transport and its importance in plant environmental responses.
机译:尽管环境中存在很大的变化和不规则性,但植物必须符合其细胞质分子组成的时空要求。细胞膜是生物与其环境之间的主要界面,是控制细胞内含物和细胞内组织的基础。膜转运蛋白(MTP)控制分子跨膜的流动,其活动受到细胞信号网络的密切监控和调节。通过不断调整MTP活性,植物可以减轻环境扰动的影响,但是该策略的有效实施取决于驻留在不同细胞类型和膜中的运输系统之间的精确协调。在这里,我们研究了钙信号在膜运输协调中的作用,重点是钾运输。钾是植物中异常丰富且易移动的离子,数十年来人们对植物钾的运输进行了深入研究。经典和最新研究强调了钙在植物环境反应和膜运输调节中的重要性。在回顾我们对钙信号编码和解码的理解的最新进展时,我们从CBL-CIPK信号网络中提取了一些实例,重点介绍了钙信号在协调多个亚细胞位置和植物中不同转运系统之间的膜转运中已确立和正在发挥的作用。通过综合经典研究和最新发现,我们旨在提供有关钙信号传导网络在调节膜运输中的作用及其在植物环境反应中的重要性的及时见解。

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