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转录因子 DgMYB 招募 H3K4me3 甲基转移酶到 DgPEROXIDASE 以增强菊花的耐寒性。

Transcription factor DgMYB recruits H3K4me3 methylase to DgPEROXIDASE to enhance chrysanthemum cold tolerance.

机构信息

Department of Ornamental Horticulture, Sichuan Agricultural University, Chengdu, Sichuan 611130, People's Republic of China.

出版信息

Plant Physiol. 2024 Jan 31;194(2):1104-1119. doi: 10.1093/plphys/kiad479.

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.

摘要

低温会影响植物的生长和发育。MYB 转录因子和组蛋白 H3K4me3 转移酶拟南芥 TRITHORAXs(ATXs)在植物对低温胁迫的抗性过程中发挥着重要的调节作用。在本研究中,DgMYB 的表达对低温有响应,过表达 DgMYB 导致耐性增加,而 dgmyb 突变体导致菊花(Chrysanthemum morifolium,Dendranthema grandiflorum var. Jinba)对低温胁迫的耐性降低。有趣的是,我们发现只有过氧化物酶(POD)活性在野生型(WT)、过表达系和突变系之间有显著差异。通过进一步实验分离到与 DgMYB 相互作用的 DgATX H3K4me3 甲基转移酶。DgATX 的表达也对低温有响应。过表达 DgATX 导致耐性增加,而 dgatx 突变体导致菊花对低温胁迫的耐性降低。此外,dgmyb、dgatx 和 dgmyb dgatx 双突变体都导致 DgPOD 处的 H3K4me3 水平降低,从而降低 DgPOD 的表达。总之,我们的研究结果表明 DgMYB 与 DgATX 相互作用,使 DgATX 能够特异地靶向 DgPOD,改变 H3K4me3 水平,增加 DgPOD 的表达,从而减少菊花中活性氧(ROS)的积累。

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