抗冻蛋白
生物
表观遗传学
冷应激
染色质
DNA甲基化
细胞生物学
防冻剂
冷冲击域
组蛋白
耐寒性
转录组
遗传学
DNA
植物
化学
基因
基因表达
核糖核酸
有机化学
作者
Satyakam,Gaurav Zinta,Rajesh Kumar Singh,Rajiv Kumar
标识
DOI:10.3389/fgene.2022.909007
摘要
Cold stress adversely affects plant growth, development, and yield. Also, the spatial and geographical distribution of plant species is influenced by low temperatures. Cold stress includes chilling and/or freezing temperatures, which trigger entirely different plant responses. Freezing tolerance is acquired via the cold acclimation process, which involves prior exposure to non-lethal low temperatures followed by profound alterations in cell membrane rigidity, transcriptome, compatible solutes, pigments and cold-responsive proteins such as antifreeze proteins. Moreover, epigenetic mechanisms such as DNA methylation, histone modifications, chromatin dynamics and small non-coding RNAs play a crucial role in cold stress adaptation. Here, we provide a recent update on cold-induced signaling and regulatory mechanisms. Emphasis is given to the role of epigenetic mechanisms and antifreeze proteins in imparting cold stress tolerance in plants. Lastly, we discuss genetic manipulation strategies to improve cold tolerance and develop cold-resistant plants.
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