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A cascade of transcription factor DREB2A and heat stress transcription factor HsfA3 regulates the heat stress response of Arabidopsis.

机译:转录因子DREB2a和热应激转录因子Hsfa3的级联调节拟南芥的热应激反应。

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摘要

The dehydration-responsive element binding protein (DREB)/C-repeat binding factor (CBF) family are the classical transcriptional regulators involved in plant responses to drought, salt and cold stress. Recently it was demonstrated that DREB2A is induced by heat stress (hs) and is a regulator of the hs response of Arabidopsis. Here we provide molecular insights into the regulation and function of hs transcription factor HsfA3. Among the 21 members of the Arabidopsis Hsf family, HsfA3 is the only Hsf that is transcriptionally induced during hs by DREB2A, and HsfA3 in turn regulates the expression of Hsp-encoding genes. This transcription factor cascade was reconstructed in transient GUS reporter assays in mesophyll protoplasts by showing that DREB2A could activate the HsfA3 promoter, whereas HsfA3 in turn was shown to be a potent activator on the promoters of Hsp genes. Direct binding to the corresponding promoters was demonstrated by electrophoretic mobility shift assays, and the involvement of HsfA3 in the hs response in vivo was shown directly by observation of reduced thermotolerance in HsfA3 mutant lines. Altogether these data demonstrate that HsfA3 is transcriptionally controlled by DREB2A and important for the establishment of thermotolerance.
机译:脱水反应元件结合蛋白(DREB)/ C重复结合因子(CBF)家族是参与植物对干旱,盐分和寒冷胁迫反应的经典转录调节因子。最近,已证明DREB2A是由热胁迫(hs)诱导的,并且是拟南芥hs反应的调节剂。在这里,我们提供了有关hs转录因子HsfA3调控和功能的分子见解。在拟南芥Hsf家族的21个成员中,HsfA3是DREB2A在hs期间由hsf转录诱导的唯一Hsf,HsfA3反过来调节了编码Hsp的基因的表达。通过证明DREB2A可以激活HsfA3启动子,而在叶肉原生质体中的瞬时GUS报告基因检测中重建了该转录因子级联,而HsfA3反过来被证明是Hsp基因启动子上的有效激活剂。通过电泳迁移率迁移分析证明了与相应启动子的直接结合,并且通过观察HsfA3突变体系中耐热性的降低直接表明了HsfA3参与体内hs应答。总而言之,这些数据表明HsfA3受DREB2A转录控制,对于建立耐热性很重要。

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