Department of Biosciences, Molecular Cell Biology of Plants, Goethe University, Frankfurt am Main, Germany.
Frankfurt Institute of Advanced Studies (FIAS), Frankfurt am Main, Germany.
Plant Cell Environ. 2019 Mar;42(3):874-890. doi: 10.1111/pce.13434. Epub 2018 Oct 11.
Plants code for a multitude of heat stress transcription factors (Hsfs). Three of them act as central regulators of heat stress (HS) response in tomato (Solanum lycopersicum). HsfA1a regulates the initial response, and HsfA2 controls acquired thermotolerance. HsfB1 is a transcriptional repressor but can also act as co-activator of HsfA1a. Currently, the mode of action and the relevance of the dual function of HsfB1 remain elusive. We examined this in HsfB1 overexpression or suppression transgenic tomato lines. Proteome analysis revealed that HsfB1 overexpression stimulates the co-activator function of HsfB1 and consequently the accumulation of HS-related proteins under non-stress conditions. Plants with enhanced levels of HsfB1 show aberrant growth and development but enhanced thermotolerance. HsfB1 suppression has no significant effect prior to stress. Upon HS, HsfB1 suppression strongly enhances the induction of heat shock proteins due to the higher activity of other HS-induced Hsfs, resulting in increased thermotolerance compared with wild-type. Thereby, HsfB1 acts as co-activator of HsfA1a for several Hsps, but as a transcriptional repressor on other Hsfs, including HsfA1b and HsfA2. The dual function explains the activation of chaperones to enhance protection and regulate the balance between growth and stress response upon deviations from the homeostatic levels of HsfB1.
植物编码了大量的热应激转录因子(Hsfs)。其中三种在番茄(Solanum lycopersicum)中作为热应激(HS)反应的中央调节剂发挥作用。HsfA1a 调节初始反应,HsfA2 控制获得的耐热性。HsfB1 是转录抑制剂,但也可以作为 HsfA1a 的共激活因子。目前,HsfB1 的作用模式及其双重功能的相关性仍不清楚。我们在 HsfB1 过表达或抑制的转基因番茄品系中对此进行了研究。蛋白质组分析表明,HsfB1 过表达刺激 HsfB1 的共激活因子功能,从而在非胁迫条件下积累与 HS 相关的蛋白质。具有增强水平的 HsfB1 的植物表现出异常的生长和发育,但增强了耐热性。在应激之前,HsfB1 抑制没有显著影响。在 HS 下,HsfB1 抑制强烈增强热休克蛋白的诱导,这是由于其他 HS 诱导的 Hsfs 的更高活性,导致与野生型相比耐热性增强。因此,HsfB1 作为 HsfA1a 的共激活因子对几种 Hsps 起作用,但作为转录抑制剂对其他 Hsfs 起作用,包括 HsfA1b 和 HsfA2。双重功能解释了伴侣蛋白的激活,以增强保护并在 HsfB1 的稳态水平偏离时调节生长和应激反应之间的平衡。