Dong Pan, Xiong Fangjie, Que Yumei, Wang Kai, Yu Lihua, Li Zhengguo, Ren Maozhi
School of Life Sciences, Chongqing University Chongqing, China.
Front Plant Sci. 2015 Sep 7;6:677. doi: 10.3389/fpls.2015.00677. eCollection 2015.
Target of rapamycin (TOR) acts as a master regulator to control cell growth by integrating nutrient, energy, and growth factors in all eukaryotic species. TOR plays an evolutionarily conserved role in regulating the transcription of genes associated with anabolic and catabolic processes in Arabidopsis, but little is known about the functions of TOR in photosynthesis and phytohormone signaling, which are unique features of plants. In this study, AZD8055 (AZD) was screened as the strongest active-site TOR inhibitor (asTORi) in Arabidopsis compared with TORIN1 and KU63794 (KU). Gene expression profiles were evaluated using RNA-seq after treating Arabidopsis seedlings with AZD. More than three-fold differentially expressed genes (DEGs) were identified in AZD-treated plants relative to rapamycin-treated plants in previous studies. Most of the DEGs and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways involved in cell wall elongation, ribosome biogenesis, and cell autophagy were common to both AZD- and rapamycin-treated samples, but AZD displayed much broader and more efficient inhibition of TOR compared with rapamycin. Importantly, the suppression of TOR by AZD resulted in remodeling of the expression profile of the genes associated with photosynthesis and various phytohormones, indicating that TOR plays a crucial role in modulating photosynthesis and phytohormone signaling in Arabidopsis. These newly identified DEGs expand the understanding of TOR signaling in plants. This study elucidates the novel functions of TOR in photosynthesis and phytohormone signaling and provides a platform to study the downstream targets of TOR in Arabidopsis.
雷帕霉素靶蛋白(TOR)作为主要调节因子,通过整合所有真核生物中的营养物质、能量和生长因子来控制细胞生长。TOR在调节拟南芥中与合成代谢和分解代谢过程相关基因的转录方面发挥着进化上保守的作用,但对于TOR在光合作用和植物激素信号传导(植物的独特特征)中的功能却知之甚少。在本研究中,与TORIN1和KU63794(KU)相比,AZD8055(AZD)被筛选为拟南芥中最强的活性位点TOR抑制剂(asTORi)。用AZD处理拟南芥幼苗后,使用RNA测序评估基因表达谱。与之前研究中用雷帕霉素处理的植物相比,在AZD处理的植物中鉴定出超过三倍的差异表达基因(DEG)。参与细胞壁伸长、核糖体生物发生和细胞自噬的大多数DEG和京都基因与基因组百科全书(KEGG)途径在AZD和雷帕霉素处理的样本中是共同的,但与雷帕霉素相比,AZD对TOR的抑制作用更广泛、更有效。重要的是,AZD对TOR的抑制导致与光合作用和各种植物激素相关的基因表达谱重塑,表明TOR在调节拟南芥的光合作用和植物激素信号传导中起关键作用。这些新鉴定的DEG扩展了对植物中TOR信号传导的理解。本研究阐明了TOR在光合作用和植物激素信号传导中的新功能,并提供了一个研究拟南芥中TOR下游靶标的平台。