Zhao Dan, Ma Yuru, Yang Yufeng, Li Zhaoyang, Wang Chaoran, Fu Yuhan, Chen Yang, Zhang Tengteng, Ding Yi, Wang Huiqiang, Zhang Xuehui, Zhang Hao
College of Life Sciences, Hengshui University, Hengshui, China.
School of Chemical Engineering and Biotechnology, Xingtai University, Xingtai, China.
PLoS One. 2025 Apr 15;20(4):e0319980. doi: 10.1371/journal.pone.0319980. eCollection 2025.
MYB transcription factors play crucial roles in various stages of plant growth and development. Bioinformatics analysis revealed that wheat TaMYB4-1A contains two conserved MYB domain. The coding region of TaMYB4-1A is 792 bp, encoding 263 amino acids. TaMYB4-1A is a hydrophilic protein, and its encoded protein is localized in the cell nucleus. Evolutionary tree analysis indicates that the TaMYB4 protein shares the closest relationship with Aegilops, barley, and rye. Tissue-specific expression analysis revealed that TaMYB4-1A is expressed in wheat roots, stems, leaves, and seeds 14 days post-flowering, with the highest expression in the seeds. Promoter cis-acting element analysis showed that the promoter region of TaMYB4-1A contains various cis-acting elements, including meristem regulatory elements, drought-induced elements, and hormone response elements. qRT-PCR analysis showed that the expression of TaMYB4-1A is suppressed under high salinity and PEG treatment, suggesting that TaMYB4-1A may play a critical regulatory role in response to salt and drought stress. There are two haplotypes of TaMYB4-1A, namely Hap-1A-I and Hap-1A-II. The average plant height of varieties with haplotype Hap-1A-I is significantly higher than that of varieties with haplotype Hap-1A-II. This research provides a basis for future in-depth investigation of the biological function of the TaMYB4-1A gene and offers promising candidate genes for molecular marker-assisted wheat breeding.
MYB转录因子在植物生长发育的各个阶段发挥着关键作用。生物信息学分析表明,小麦TaMYB4 - 1A含有两个保守的MYB结构域。TaMYB4 - 1A的编码区为792 bp,编码263个氨基酸。TaMYB4 - 1A是一种亲水性蛋白,其编码蛋白定位于细胞核。进化树分析表明,TaMYB4蛋白与节节麦、大麦和黑麦的亲缘关系最近。组织特异性表达分析显示,TaMYB4 - 1A在开花后14天的小麦根、茎、叶和种子中均有表达,在种子中的表达量最高。启动子顺式作用元件分析表明,TaMYB4 - 1A的启动子区域包含各种顺式作用元件,包括分生组织调控元件、干旱诱导元件和激素反应元件。qRT - PCR分析表明,TaMYB4 - 1A的表达在高盐和PEG处理下受到抑制,这表明TaMYB4 - 1A可能在响应盐和干旱胁迫中发挥关键调控作用。TaMYB4 - 1A有两种单倍型,即Hap - 1A - I和Hap - 1A - II。单倍型为Hap - 1A - I的品种的平均株高显著高于单倍型为Hap - 1A - II的品种。本研究为今后深入研究TaMYB4 - 1A基因的生物学功能提供了依据,并为分子标记辅助小麦育种提供了有前景的候选基因。