Xie Chuantian, Li Cuiling, Wang Fengxia, Zhang Feng, Liu Jiajia, Wang Junxia, Zhang Xiansheng, Kong Xiangpei, Ding Zhaojun
The Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, College of Life Sciences, Shandong University, Qingdao, Shandong 266237, China.
National Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, Shandong 271018, China.
Mol Plant. 2023 Apr 3;16(4):709-725. doi: 10.1016/j.molp.2023.02.006. Epub 2023 Feb 21.
Precise spatiotemporal control of the timing and extent of asymmetric cell divisions (ACDs) is essential for plant development. In the Arabidopsis root, ground tissue maturation involves an additional ACD of the endodermis that maintains the inner cell layer as the endodermis and generates the middle cortex to the outside. Through regulation of the cell cycle regulator CYCLIND6;1 (CYCD6;1), the transcription factors SCARECROW (SCR) and SHORT-ROOT (SHR) play critical roles in this process. In the present study, we found that loss of function of NAC1, a NAC transcription factor family gene, causes markedly increased periclinal cell divisions in the root endodermis. Importantly, NAC1 directly represses the transcription of CYCD6;1 by recruiting the co-repressor TOPLESS (TPL), creating a fine-tuned mechanism to maintain proper root ground tissue patterning by limiting production of middle cortex cells. Biochemical and genetic analyses further showed that NAC1 physically interacts with SCR and SHR to restrict excessive periclinal cell divisions in the endodermis during root middle cortex formation. Although NAC1-TPL is recruited to the CYCD6;1 promoter and represses its transcription in an SCR-dependent manner, NAC1 and SHR antagonize each other to regulate the expression of CYCD6;1. Collectively, our study provides mechanistic insights into how the NAC1-TPL module integrates with the master transcriptional regulators SCR and SHR to control root ground tissue patterning by fine-tuning spatiotemporal expression of CYCD6;1 in Arabidopsis.
精确的时空控制不对称细胞分裂(ACD)的时间和程度对于植物发育至关重要。在拟南芥根中,基本组织成熟涉及内皮层的额外一次不对称细胞分裂,该分裂将内部细胞层维持为内皮层,并向外生成中皮层。通过调节细胞周期调节因子CYCLIND6;1(CYCD6;1),转录因子稻草人(SCR)和短根(SHR)在这一过程中发挥关键作用。在本研究中,我们发现NAC转录因子家族基因NAC1的功能丧失导致根内皮层平周细胞分裂显著增加。重要的是,NAC1通过招募共抑制因子TOPLESS(TPL)直接抑制CYCD6;1的转录,从而建立一种微调机制,通过限制中皮层细胞的产生来维持适当的根基本组织模式。生化和遗传分析进一步表明,NAC1与SCR和SHR发生物理相互作用,以限制根中皮层形成过程中内皮层过度的平周细胞分裂。尽管NAC1-TPL被招募到CYCD6;1启动子并以SCR依赖的方式抑制其转录,但NAC1和SHR相互拮抗以调节CYCD6;1的表达。总体而言,我们的研究为NAC1-TPL模块如何与主要转录调节因子SCR和SHR整合,通过微调拟南芥中CYCD6;1的时空表达来控制根基本组织模式提供了机制性见解。