Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore, India.
PLoS Genet. 2019 Feb 11;15(2):e1007988. doi: 10.1371/journal.pgen.1007988. eCollection 2019 Feb.
Cells in organ primordia undergo active proliferation at an early stage to generate sufficient number, before exiting proliferation and entering differentiation. However, how the actively proliferating cells are developmentally reprogrammed to acquire differentiation potential during organ maturation is unclear. Here, we induced a microRNA-resistant form of TCP4 at various developmental stages of Arabidopsis leaf primordium that lacked the activity of TCP4 and its homologues and followed its effect on growth kinematics. By combining this with spatio-temporal gene expression analysis, we show that TCP4 commits leaf cells within the transition zone to exit proliferation and enter differentiation. A 24-hour pulse of TCP4 activity was sufficient to impart irreversible differentiation competence to the actively dividing cells. A combination of biochemical and genetic analyses revealed that TCP4 imparts differentiation competence by promoting auxin response as well as by directly activating HAT2, a HD-ZIP II transcription factor-encoding gene that also acts downstream to auxin response. Our study offers a molecular link between the two major organ maturation factors, CIN-like TCPs and HD-ZIP II transcription factors and explains how TCP activity restricts the cell number and final size in a leaf.
器官原基中的细胞在早期会进行活跃的增殖,以产生足够的数量,然后退出增殖并进入分化。然而,在器官成熟过程中,活跃增殖的细胞如何被重新编程获得分化潜能尚不清楚。在这里,我们在拟南芥叶原基的不同发育阶段诱导了一种微 RNA 抗性形式的 TCP4,该形式缺乏 TCP4 及其同源物的活性,并观察了其对生长运动学的影响。通过将其与时空基因表达分析相结合,我们表明 TCP4 促使过渡区的叶细胞退出增殖并进入分化。24 小时的 TCP4 活性脉冲足以赋予活跃分裂的细胞不可逆的分化能力。生化和遗传分析的结合表明,TCP4 通过促进生长素反应以及直接激活 HAT2(编码 HD-ZIP II 转录因子的基因)来赋予分化能力,HAT2 也是生长素反应的下游因子。我们的研究提供了两个主要器官成熟因子(CIN-like TCPs 和 HD-ZIP II 转录因子)之间的分子联系,并解释了 TCP 活性如何限制叶片中的细胞数量和最终大小。