State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Chengdu, 611130, China.
State Key Laboratory of Hybrid Rice, Rice Research Institute, Sichuan Agricultural University, Chengdu, 611130, China.
Plant J. 2022 Sep;111(6):1509-1526. doi: 10.1111/tpj.15921. Epub 2022 Aug 8.
Pollen development includes a series of biological events that require precise gene regulation. Although several transcription factors (TFs) have been shown to play roles in maintaining pollen fertility, the major regulatory networks underlying tapetum development and pollen wall formation are largely unknown. Herein, we report that ABERRANT MICROSPORE DEVELOPMENT1 (AMD1), a protein annotated previously as unknown protein, is required for tapetum development and pollen exine patterning in rice (Oryza sativa L.). AMD1 encodes a grass-specific protein exhibiting transactivation activity in the nucleus and is spatiotemporally expressed in the tapetum and microspores during pollen development. Further biochemical assays indicate that AMD1 directly activates the transcription of DEFECTIVE POLLEN WALL (DPW) and POLYKETIDE SYNTHASE2 (OsPKS2), which are both implicated in sporopollenin biosynthesis during exine formation. Additionally, AMD1 directly interacts with TAPETUM DEGENERATION RETARDATION (TDR), a key TF involved in the regulation of tapetum degradation and exine formation. Taken together, we demonstrate that AMD1 is an important regulatory component involved in the TDR-mediated regulatory pathway to regulate sporopollenin biosynthesis, tapetum degradation, and exine formation for pollen development. Our work provides insights into the regulatory network of rice sexual reproduction and a useful target for genetic engineering of new male-sterile lines for hybrid rice breeding.
花粉发育包括一系列需要精确基因调控的生物学事件。虽然已经有几个转录因子(TFs)被证明在维持花粉活力方面发挥作用,但支持绒毡层发育和花粉壁形成的主要调控网络在很大程度上仍是未知的。在此,我们报道 ABERRANT MICROSPORE DEVELOPMENT1(AMD1),一种先前注释为未知蛋白的蛋白,是水稻(Oryza sativa L.)绒毡层发育和花粉外壁模式形成所必需的。AMD1 编码一种草特异性蛋白,在细胞核中具有转录激活活性,并在花粉发育过程中绒毡层和小孢子中时空表达。进一步的生化分析表明,AMD1 直接激活 DEFECTIVE POLLEN WALL(DPW)和 POLYKETIDE SYNTHASE2(OsPKS2)的转录,这两者都参与外壁形成过程中的孢粉素生物合成。此外,AMD1 直接与 TAPETUM DEGENERATION RETARDATION(TDR)相互作用,TDR 是参与绒毡层降解和外壁形成调控的关键 TF。综上所述,我们证明 AMD1 是参与 TDR 介导的调控途径的重要调节成分,用于调节花粉发育过程中的孢粉素生物合成、绒毡层降解和外壁形成。我们的工作为水稻有性生殖的调控网络提供了深入了解,并为杂交水稻育种中新型雄性不育系的遗传工程提供了有用的目标。