Richard C, Granier C, Inzé D, De Veylder L
Vakgroep Moleculaire Genetica, Departement Plantengenetica, Vlaams Interuniversitair Instituut voor Biotechnologie, Universiteit Gent, K.L. Ledeganckstraat 35, B-9000 Gent, Belgium.
J Exp Bot. 2001 Aug;52(361):1625-33.
Arabidopsis thaliana cell suspension cultures were characterized for the first time in detail in terms of biomass accumulation, cell division rate and cell cycle phase durations. Subsequently, this model system was used to follow the transcription profile of key cell cycle genes during a complete cultivation cycle. According to the calculated changes in the relative division rate over time, the cell cycle genes could be classified into four groups based on their transcriptional expression pattern. These differential patterns of gene expression are discussed with respect to the putative roles of the different cell cycle genes in the division cycle. Analysis of protein levels showed that mRNA levels did not correlate with protein levels in all cases. Results obtained in other systems, such as BY-2 cell suspensions or plants, confirm that cell suspension cultures of A. thaliana are suitable for the analysis of cell cycle regulation.
首次对拟南芥细胞悬浮培养物在生物量积累、细胞分裂速率和细胞周期阶段持续时间方面进行了详细表征。随后,该模型系统被用于追踪完整培养周期中关键细胞周期基因的转录谱。根据计算得出的相对分裂速率随时间的变化,细胞周期基因可根据其转录表达模式分为四类。针对不同细胞周期基因在分裂周期中的假定作用,讨论了这些基因表达的差异模式。蛋白质水平分析表明,在所有情况下mRNA水平与蛋白质水平并不相关。在其他系统(如BY-2细胞悬浮培养物或植物)中获得的结果证实,拟南芥细胞悬浮培养物适用于细胞周期调控分析。