Dehghan Nayeri Fatemeh
a Max-Planck Institute of Molecular Plant Physiology ; Am Mühlenberg 1; Potsdam-Golm , Germany.
Plant Signal Behav. 2014;9(11):e972864. doi: 10.4161/15592316.2014.972864.
Cell cycle is an essential process in growth and development of living organisms consists of the replication and mitotic phases separated by 2 gap phases; G1 and G2. It is tightly controlled at the molecular level and especially at the level of transcription. Precise regulation of the cell cycle is of central significance for plant growth and development and transcription factors are global regulators of gene expression playing essential roles in cell cycle regulation. This study has uncovered TFs that are involved in the control of cell cycle progression. With the aid of multi-parallel quantitative RT-PCR, the expression changes of 1880 TFs represented in the Arabidopsis TF platform was monitored in Arabidopsis synchronous MM2d cells during a 19 h period representing different time points corresponding to the 4 cell cycle phases after treatment of MM2d cells with Aphidicolin. Comparative TF expression analyses performed on synchronous cells resulted in the identification of 239 TFs differentially expressed during the cell cycle, while about one third of TFs were constitutively expressed through all time points. Phase-specific TFs were also identified.
细胞周期是生物体生长和发育过程中的一个基本过程,由复制期和有丝分裂期组成,中间间隔两个间隙期,即G1期和G2期。它在分子水平上,尤其是转录水平上受到严格调控。细胞周期的精确调控对植物生长发育至关重要,而转录因子是基因表达的全局调节因子,在细胞周期调控中发挥着重要作用。本研究发现了参与细胞周期进程控制的转录因子。借助多平行定量逆转录聚合酶链反应,在拟南芥同步MM2d细胞用阿非迪霉素处理后,在代表4个细胞周期阶段不同时间点的19小时内,监测了拟南芥转录因子平台中1880个转录因子的表达变化。对同步细胞进行的比较转录因子表达分析,鉴定出了239个在细胞周期中差异表达的转录因子,而约三分之一的转录因子在所有时间点均持续表达。还鉴定出了阶段特异性转录因子。