School of Life Science, Qufu Normal University, Qufu, Shandong, 273165, PR China.
School of Life Science, Qufu Normal University, Qufu, Shandong, 273165, PR China.
Plant Physiol Biochem. 2020 Oct;155:709-715. doi: 10.1016/j.plaphy.2020.08.015. Epub 2020 Aug 15.
The transcriptomic response of plants to salinity stress is regulated in part by epigenetic alterations to gene promoter sequences. The transcription factor MsMYB4 is an important component of the response of alfalfa to salinity stress, but the involvement of epialleles of its encoding gene has not as yet been explored. Here, the MsMYB4 promoter was isolated using a genome walking approach in order to perform a deletion analysis to identify the region harboring the elements required for its stress inducibility. The analysis showed that these reside in the sequence lying between 739 and 336 nt up stream of the MsMYB4 translation start codon. The methylation status of the sequence around the MsMYB4 translation start site was altered by the imposition of salinity stress. The activation of MsMYB4 was associated with an increased level of histone H3K4 trimethylation and H3K9 acetylation in specific regions of the promoter sequence. Our results suggest a critical role for MsMYB4's activation by DNA methylation and/or histone modifications in response to salinity stress in alfalfa.
植物对盐胁迫的转录组反应部分受基因启动子序列的表观遗传改变调控。转录因子 MsMYB4 是苜蓿响应盐胁迫的重要组成部分,但它的编码基因的表观等位基因的参与尚未被探索。在这里,使用基因组步行方法分离 MsMYB4 启动子,以进行缺失分析,以确定其胁迫诱导所需元件所在的区域。分析表明,这些元件位于 MsMYB4 翻译起始密码子上游 739 到 336 个核苷酸之间的序列中。盐胁迫会改变 MsMYB4 翻译起始位点周围序列的甲基化状态。MsMYB4 的激活与启动子序列特定区域组蛋白 H3K4 三甲基化和 H3K9 乙酰化水平的增加有关。我们的结果表明,在苜蓿中,MsMYB4 的激活在对盐胁迫的反应中,DNA 甲基化和/或组蛋白修饰起着关键作用。