H3K4me3
突变体
转录因子
MYB公司
生物
细胞生物学
菊花
拟南芥
耐寒性
野生型
基因表达
遗传学
植物
基因
发起人
作者
Yunchen Luo,Yongyan Wang,Xin Li,Xiaohan Yang,Huiru Bai,Xiaoqin Liao,Xuanling Luo,Fan Zhang,Lei Zhang,Qinglin Liu
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2023-08-30
卷期号:194 (2): 1104-1119
被引量:3
标识
DOI:10.1093/plphys/kiad479
摘要
Abstract Cold affects the growth and development of plants. MYB transcription factors and histone H3K4me3 transferase ARABIDOPSIS TRITHORAXs (ATXs) play important regulatory functions in the process of plant resistance to low-temperature stress. In this study, DgMYB expression was responsive to low temperature, and overexpression of DgMYB led to increased tolerance, whereas the dgmyb mutant resulted in decreased tolerance of Chrysanthemum morifolium (Dendranthema grandiflorum var. Jinba) to cold stresses. Interestingly, we found that only peroxidase (POD) activity differed substantially between wild type (WT), overexpression lines, and the mutant line. A DgATX H3K4me3 methylase that interacts with DgMYB was isolated by further experiments. DgATX expression was also responsive to low temperature. Overexpression of DgATX led to increased tolerance, whereas the dgatx mutant resulted in decreased tolerance of chrysanthemum to cold stresses. Moreover, the dgmyb, dgatx, and dgmyb dgatx double mutants all led to reduced H3K4me3 levels at DgPOD, thus reducing DgPOD expression. Together, our results show that DgMYB interacts with DgATX, allowing DgATX to specifically target DgPOD, altering H3K4me3 levels, increasing DgPOD expression, and thereby reducing the accumulation of reactive oxygen species (ROS) in chrysanthemum.
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