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A Stress-Responsive CaM-Binding Transcription Factor, bZIP4, Confers Abiotic Stress Resistance in Arabidopsis

机译:应激响应凸轮结合转录因子,BZIP4,拟拟南芥中的非生物应激抗性

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The basic leucine zipper (bZIP) transcription factors (TFs) function as regulators of many key developmental and physiological processes in all eukaryotes. In this study, we characterized the function of Arabidopsis bZIP4, a group S bZIP, whose function was not known. We confirmed that bZIP4 localizes to the nucleus and has DNA-binding affinity. By qRT-PCR and GUS histochemical analysis, we showed that bZIP4 is specifically expressed in root and that its expression is induced by abiotic stress and ABA. By phenotypic analysis, we demonstrated that the root length and the germination rate of bZIP4 overexpression (bZIP4-Ox) were significantly longer and higher than those of the WT and bZIP4-SRDX under higher salt and glucose concentrations, indicating that bZIP4-Ox is insensitive and tolerant to abiotic stress. Despite that, we found that bZIP4-Ox had enhanced expression of genes encoding protein phosphatases suppressing ABA responsiveness. We also confirmed that bZIP4 interacts with CaM1 and showed that its DNA-binding affinity is inhibited by interaction with CaM1. We propose a model in which the increased cytosolic calcium concentration under stress conditions activates CaM1 to bind bZIP4 to remove it from promoters of genes encoding ABA negative regulators, allowing the plants to operate on a typical ABA signaling pathway.
机译:碱性亮氨酸拉链(bZIP)转录因子(TFs)在所有真核生物的许多关键发育和生理过程中起调节作用。在这项研究中,我们描述了拟南芥bZIP4的功能,这是一组bZIP,其功能尚不清楚。我们证实bZIP4定位于细胞核并具有DNA结合亲和力。通过qRT PCR和GUS组织化学分析,我们发现bZIP4在根中特异表达,其表达是由非生物胁迫和ABA诱导的。通过表型分析,我们证明bZIP4过表达(bZIP4-Ox)的根长和发芽率在较高的盐和葡萄糖浓度下显著长于WT和bZIP4-SRDX,表明bZIP4-Ox对非生物胁迫不敏感和耐受。尽管如此,我们发现bZIP4-Ox增强了编码抑制ABA反应的蛋白磷酸酶的基因的表达。我们还证实bZIP4与CaM1相互作用,并表明其DNA结合亲和力被CaM1相互作用抑制。我们提出了一个模型,在该模型中,胁迫条件下增加的胞浆钙浓度激活CaM1结合bZIP4,将其从编码ABA负调节因子的基因启动子中移除,从而使植物在典型的ABA信号通路上运行。

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