Chair of Botany, TUM School of Life Sciences Weihenstephan, Technische Universität München (TUM), Freising, Germany.
Chengdu Newsun Crop Science, Chengdu, China.
Nature. 2024 May;629(8014):1126-1132. doi: 10.1038/s41586-024-07424-x. Epub 2024 May 15.
Plants exposed to incidences of excessive temperatures activate heat-stress responses to cope with the physiological challenge and stimulate long-term acclimation. The mechanism that senses cellular temperature for inducing thermotolerance is still unclear. Here we show that TWA1 is a temperature-sensing transcriptional co-regulator that is needed for basal and acquired thermotolerance in Arabidopsis thaliana. At elevated temperatures, TWA1 changes its conformation and allows physical interaction with JASMONATE-ASSOCIATED MYC-LIKE (JAM) transcription factors and TOPLESS (TPL) and TOPLESS-RELATED (TPR) proteins for repressor complex assembly. TWA1 is a predicted intrinsically disordered protein that has a key thermosensory role functioning through an amino-terminal highly variable region. At elevated temperatures, TWA1 accumulates in nuclear subdomains, and physical interactions with JAM2 and TPL appear to be restricted to these nuclear subdomains. The transcriptional upregulation of the heat shock transcription factor A2 (HSFA2) and heat shock proteins depended on TWA1, and TWA1 orthologues provided different temperature thresholds, consistent with the sensor function in early signalling of heat stress. The identification of the plant thermosensors offers a molecular tool for adjusting thermal acclimation responses of crops by breeding and biotechnology, and a sensitive temperature switch for thermogenetics.
植物在遭遇高温时会激活热应激反应来应对生理挑战并刺激长期适应。但目前仍不清楚感知细胞温度以诱导耐热性的机制。本文研究表明,TWA1 是一种温度感应转录共调节因子,对于拟南芥的基础耐热性和获得性耐热性是必需的。在较高温度下,TWA1 改变其构象,允许与茉莉酸相关的 MYC 样(JAM)转录因子和 TOPLESS(TPL)和 TOPLESS 相关(TPR)蛋白进行物理相互作用,从而组装抑制复合物。TWA1 是一种预测的固有无序蛋白,具有通过氨基末端高度可变区域发挥关键热感觉作用的功能。在较高温度下,TWA1 积累在核亚域中,并且与 JAM2 和 TPL 的物理相互作用似乎仅限于这些核亚域。热休克转录因子 A2(HSFA2)和热休克蛋白的转录上调依赖于 TWA1,并且 TWA1 同源物提供了不同的温度阈值,这与热应激早期信号转导中的传感器功能一致。植物热传感器的鉴定为通过育种和生物技术调整作物的热适应反应提供了分子工具,并为热遗传学提供了灵敏的温度开关。