Menges Margit, Hennig Lars, Gruissem Wilhelm, Murray James A H
Institute of Biotechnology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QT, UK.
Plant Mol Biol. 2003 Nov;53(4):423-42. doi: 10.1023/B:PLAN.0000019059.56489.ca.
Plant cell suspension cultures are invaluable models for the study of cellular processes. Here we develop the recently described Arabidopsis suspension culture MM2d as a transcript profiling platform by means of Affymetrix ATH1 microarrays. Analysis of gene expression profiles during normal culture growth, during synchronous cell cycle re-entry and during synchronous cell cycle progression provides a unique integrated view of gene expression responses in a higher-plant system. Particularly striking is that expression of over 14 000 genes belonging to all defined categories can be reliably detected, suggesting that integrated and comparative analysis of data sets derived from transcript profiling of cultures is a powerful approach to identify candidate components involved in a wide range of biological processes. Combinatorial analysis of independent cell cycle synchrony methods allows the identification of genes that are apparently cell-cycle-regulated but are most likely responding to the induction of synchrony. We thus present an integrated genome-wide view of the transcriptional profile of a plant suspension culture and identify a refined set of 1082 cell cycle regulated genes largely independent of synchrony method.
植物细胞悬浮培养物是研究细胞过程的宝贵模型。在此,我们通过Affymetrix ATH1微阵列将最近描述的拟南芥悬浮培养物MM2d开发为一个转录谱分析平台。对正常培养生长期间、同步细胞周期重新进入期间以及同步细胞周期进程期间的基因表达谱进行分析,为高等植物系统中的基因表达反应提供了独特的综合视角。特别引人注目的是,可以可靠地检测到属于所有已定义类别的超过14000个基因的表达,这表明对来自培养物转录谱分析的数据集进行综合和比较分析是识别参与广泛生物过程的候选成分的有力方法。对独立细胞周期同步方法的组合分析能够鉴定出那些明显受细胞周期调控但很可能是对同步诱导做出反应的基因。因此,我们展示了植物悬浮培养物转录谱的全基因组综合视图,并鉴定出一组经过细化的1082个细胞周期调控基因,这些基因在很大程度上与同步方法无关。