Zheng Shaoyan, Dong Jingfang, Lu Jingqin, Li Jing, Jiang Dagang, Yu Haopeng, Ye Simiao, Bu Wenli, Liu Zhenlan, Zhou Hai, Ding Yiliang, Zhuang Chuxiong
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou, 510642, China.
Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, 510642, China.
New Phytol. 2022 Jun;234(5):1678-1695. doi: 10.1111/nph.18105. Epub 2022 Apr 5.
Most plant pentatricopeptide repeat (PPR) proteins localize to and function inside plastids and mitochondria. However, the function of PPRs that only localize to the cytoplasm remains unknown. Here, we demonstrated that the rice (Oryza sativa) PPR protein CYTOPLASM-LOCALIZED PPR1 (OsCPPR1) contributes to pollen development and localizes to the cytoplasm. Knocking down OsCPPR1 led to abnormal plastid development in tapetal cells, prolonged tapetal programmed cell death (PCD) and tapetum degradation, and significantly reduced pollen fertility. Transcriptome analysis revealed that the transcript level of OsGOLDEN-LIKE1 (OsGLK1), which encodes a transcription factor that regulates plastid development and maintenance, was significantly higher in the OsCPPR1 knockdown plants compared to wild-type plants. We further determined that OsCPPR1 downregulates OsGLK1 transcription by directly binding to the single-stranded regions of OsGLK1 mRNAs. Overexpression of OsGLK1 resulted in abnormal tapetum and plastid development, similar to that seen in OsCPPR1 knockdown plants, and suppression of OsGLK1 partially restored pollen fertility in the OsCPPR1 knockdown plants. We therefore conclude that OsCPPR1 suppresses OsGLK1 in the regulation of plastid development and PCD in the tapetum. Our work revealed novel functions for a cytosolic PPR, demonstrating the diverse roles of PPRs in plants and identifying a new regulatory mechanism for regulating pollen development in rice.
大多数植物五肽重复序列(PPR)蛋白定位于质体和线粒体内部并在其中发挥作用。然而,仅定位于细胞质的PPR蛋白的功能仍不清楚。在这里,我们证明了水稻(Oryza sativa)PPR蛋白细胞质定位的PPR1(OsCPPR1)有助于花粉发育并定位于细胞质。敲低OsCPPR1导致绒毡层细胞中质体发育异常,绒毡层程序性细胞死亡(PCD)延长和绒毡层降解,并显著降低花粉育性。转录组分析表明,与野生型植物相比,编码调节质体发育和维持的转录因子的OsGOLDEN-LIKE1(OsGLK1)在OsCPPR1敲低植物中的转录水平显著更高。我们进一步确定,OsCPPR1通过直接结合OsGLK1 mRNA的单链区域来下调OsGLK1转录。OsGLK1的过表达导致绒毡层和质体发育异常,类似于在OsCPPR1敲低植物中观察到的情况,并且抑制OsGLK1部分恢复了OsCPPR1敲低植物中的花粉育性。因此,我们得出结论,OsCPPR1在绒毡层质体发育和PCD的调节中抑制OsGLK1。我们的工作揭示了一种胞质PPR的新功能,证明了PPR在植物中的多种作用,并确定了一种调节水稻花粉发育的新调控机制。