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转录因子 TaGAMYB 通过赤霉素信号途径调节 TGMS 小麦盐占 4110S 的绒毡层和花粉发育。

The transcription factor TaGAMYB modulates tapetum and pollen development of TGMS wheat YanZhan 4110S via the gibberellin signaling.

机构信息

College of Agronomy, Northwest A&F University, Yangling 712100 Shaanxi, China.

出版信息

Plant Sci. 2022 Nov;324:111447. doi: 10.1016/j.plantsci.2022.111447. Epub 2022 Aug 27.

Abstract

Male reproductive development in higher plants experienced a series of complex biological processes, which can be regulated by Gibberellins (GA). The transcriptional factor GAMYB is a crucial component of GA signaling in anther development. However, the mechanism of GAMYB in wheat male reproduction is less understood. Here, we found that the thermo-sensitive genic male sterilitywheat line YanZhan 4110S displayed delayed tapetum programmed cell death and pollen abortive under the hot temperature stress. Combined with RNA-Sequencing data analysis, TaGAMYB associated with fertility conversion was isolated, which was located in the nucleus and highly expressed in fertility anthers. The silencing of TaGAMYB in wheat displayed fertility decline, defects in tapetum, pollen and exine formation, where the abortion characteristics were the same as YanZhan 4110S. In addition, either hot temperature or GA3 treatment in YanZhan 4110S caused the downregulation of TaGAMYB at binucleate stage and trinucleate stage, as well as fertility decrease. Further, the transcription factor TaWRKY2 significantly changed under GA3-treatment and directly interacted with the TaGAMYB promoter by W-box cis-element. Therefore, we suggested that TaGAMYB may be essential for anther development and male fertility, and GA3 activates TaGAMYB by TaWRKY2 to regulate fertility in wheat.

摘要

高等植物雄性生殖发育经历了一系列复杂的生物学过程,这些过程可以受到赤霉素(GA)的调节。转录因子 GAMYB 是花药发育中 GA 信号转导的关键组成部分。然而,GAMYB 在小麦雄性生殖中的作用机制还不太清楚。在这里,我们发现,热敏雄性不育小麦品系 YanZhan 4110S 在高温胁迫下表现出延迟的绒毡层程序性细胞死亡和花粉败育。结合 RNA-Seq 数据分析,分离出与育性转换相关的 TaGAMYB,该基因位于细胞核内,在可育花药中高度表达。在小麦中沉默 TaGAMYB 导致育性下降、绒毡层、花粉和外壁形成缺陷,其败育特征与 YanZhan 4110S 相同。此外,YanZhan 4110S 中的高温或 GA3 处理在双核期和三核期下调 TaGAMYB,导致育性下降。进一步的研究表明,转录因子 TaWRKY2 在 GA3 处理下显著改变,并通过 W-box 顺式元件直接与 TaGAMYB 启动子相互作用。因此,我们认为 TaGAMYB 可能对花药发育和雄性育性至关重要,GA3 通过 TaWRKY2 激活 TaGAMYB 来调节小麦的育性。

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