Ministry of Education Key Laboratory of Molecular and Cellular Biology, Hebei Collaboration Innovation Center for Cell Signaling and Environmental Adaptation, Hebei Basic Research Center of Cell Biology, Hebei Key Laboratory of Molecular and Cellular Biology, College of Life Sciences, Hebei Normal University, Shijiazhuang 050024, China.
Dryland Farming Institute of Hebei Academy of Agricultural and Forestry Science, Key Laboratory of Crop Drought Tolerance Research of Hebei Province, Hengshui 053000, China.
Int J Mol Sci. 2024 Aug 18;25(16):8976. doi: 10.3390/ijms25168976.
Among the rich repertoire of strategies that allow plants to adapt to high-temperature stress is heat-stress memory. The mechanisms underlying the establishment and maintenance of heat-stress memory are poorly understood, although the chromatin opening state appears to be an important structural basis for maintaining heat-stress memory. The chromatin opening state is influenced by epigenetic modifications, making DNA and histone modifications important entry points for understanding heat-shock memory. Current research suggests that traditional heat-stress signaling pathway components might be involved in chromatin opening, thereby promoting the establishment of heat-stress memory in plants. In this review, we discuss the relationship between chromatin structure-based maintenance and the establishment of heat-stress memory. We also discuss the association between traditional heat-stress signals and epigenetic modifications. Finally, we discuss potential research ideas for exploring plant adaptation to high-temperature stress in the future.
在允许植物适应高温胁迫的丰富策略中,有一种策略叫做热激记忆。尽管染色质开放状态似乎是维持热激记忆的重要结构基础,但热激记忆建立和维持的机制还知之甚少。染色质开放状态受表观遗传修饰的影响,使得 DNA 和组蛋白修饰成为理解热休克记忆的重要切入点。目前的研究表明,传统的热激信号通路成分可能参与染色质的打开,从而促进植物中热激记忆的建立。在这篇综述中,我们讨论了基于染色质结构的维持与热激记忆建立之间的关系。我们还讨论了传统热激信号与表观遗传修饰之间的关联。最后,我们讨论了未来探索植物适应高温胁迫的潜在研究思路。