Entwicklungsbilogie der Pflanzen, Centre for Organismal Studies, Ruprecht-Karls-Universität Heidelberg, Im Neuenheimer Feld 230, Heidelberg, 69120, Germany.
Institut für Biologie und Biotechnologie der Pflanzen, Westfälische Wilhelms-Universität Münster, Schlossplatz 7, Münster, 48149, Germany.
New Phytol. 2017 Oct;216(1):303-320. doi: 10.1111/nph.14706.
Calcium signals occur in specific spatio-temporal patterns in response to various stimuli and are coordinated with, for example, hormonal signals, for physiological and developmental adaptations. Quantification of calcium together with other signalling molecules is required for correlative analyses and to decipher downstream calcium-decoding mechanisms. Simultaneous in vivo imaging of calcium and abscisic acid has been performed here to investigate the interdependence of the respective signalling processes in Arabidopsis thaliana roots. Advanced ratiometric genetically encoded calcium indicators have been generated and in vivo calcium calibration protocols were established to determine absolute calcium concentration changes in response to auxin and ATP. In roots, abscisic acid induced long-term basal calcium concentration increases, while auxin triggered rapid signals in the elongation zone. The advanced ratiometric calcium indicator R-GECO1-mTurquoise exhibited an increased calcium signal resolution compared to commonly used Förster resonance energy transfer-based indicators. Quantitative calcium measurements in Arabidopsis root tips using R-GECO1-mTurquoise revealed detailed maps of absolute calcium concentration changes in response to auxin and ATP. Calcium calibration protocols using R-GECO1-mTurquoise enabled high-resolution quantitative imaging of resting cytosolic calcium concentrations and their dynamic changes that revealed distinct hormonal and ATP responses in roots.
钙信号会针对各种刺激以特定的时空模式发生,并与激素信号等协调,以适应生理和发育需求。为了进行相关分析和破解下游钙解码机制,需要对钙和其他信号分子进行定量分析。本研究中,通过同时对钙和脱落酸进行活体成像,研究了拟南芥根中各自信号过程的相互依赖性。已经生成了先进的比率型遗传编码钙指示剂,并建立了活体钙校准方案,以确定生长素和 ATP 响应下的绝对钙浓度变化。在根中,脱落酸诱导长期基础钙浓度增加,而生长素则在伸长区引发快速信号。与常用的Förster 共振能量转移(Förster resonance energy transfer,FRET)基于指示剂相比,先进的比率型钙指示剂 R-GECO1-mTurquoise 表现出更高的钙信号分辨率。使用 R-GECO1-mTurquoise 在拟南芥根尖进行的钙定量测量揭示了生长素和 ATP 响应下绝对钙浓度变化的详细图谱。使用 R-GECO1-mTurquoise 的钙校准方案能够对静止胞质钙浓度及其动态变化进行高分辨率定量成像,从而揭示了根中的不同激素和 ATP 响应。