Albrecht Verónica, Weinl Stefan, Blazevic Dragica, D'Angelo Cecilia, Batistic Oliver, Kolukisaoglu Uner, Bock Ralph, Schulz Burkhard, Harter Klaus, Kudla Jörg
Molekulare Botanik, Universität Ulm, Albert-Einstein-Allee 11, 89069 Ulm, Germany.
Plant J. 2003 Nov;36(4):457-70. doi: 10.1046/j.1365-313x.2003.01892.x.
Calcium ions represent both an integrative signal and an important convergence point of many disparate signaling pathways. Calcium-binding proteins, like calcineurin B-like (CBL) proteins, have been implicated as important relays in calcium signaling. Here, we report the in vivo study of CBL1 function in Arabidopsis. Analyses of loss-of-function as well as CBL1-overexpressing lines indicate a crucial function of this calcium sensor protein in abiotic stress responses. Mutation of CBL1 impairs plant responses to drought and salt stresses and affects gene expression of cold-regulated genes, but does not affect abscisic acid (ABA) responsiveness. Conversely, overexpression of CBL1 reduces transpirational water loss and induces the expression of early stress-responsive transcription factors and stress adaptation genes in non-stressed plants. Together, our data indicate that the calcium sensor protein CBL1 may constitute an integrative node in plant responses to abiotic stimuli and contributes to the regulation of early stress-related transcription factors of the C-Repeat-Binding Factor/dehydration-responsive element (CBF/DREB) type.
钙离子既是一种整合信号,也是许多不同信号通路的重要汇聚点。钙结合蛋白,如类钙调神经磷酸酶B蛋白(CBL),被认为是钙信号传导中的重要中继分子。在此,我们报道了拟南芥中CBL1功能的体内研究。对功能缺失以及CBL1过表达株系的分析表明,这种钙传感蛋白在非生物胁迫应答中具有关键作用。CBL1的突变会损害植物对干旱和盐胁迫的响应,并影响冷调控基因的基因表达,但不影响脱落酸(ABA)响应。相反,CBL1的过表达减少了蒸腾失水,并诱导了非胁迫植物中早期胁迫响应转录因子和胁迫适应基因的表达。总之,我们的数据表明,钙传感蛋白CBL1可能是植物对非生物刺激响应中的一个整合节点,并有助于调控C重复结合因子/脱水响应元件(CBF/DREB)类型的早期胁迫相关转录因子。