Van Driessche Nancy, Shaw Chad, Katoh Mariko, Morio Takahiro, Sucgang Richard, Ibarra Miroslava, Kuwayama Hidekazu, Saito Tamao, Urushihara Hideko, Maeda Mineko, Takeuchi Ikuo, Ochiai Hiroshi, Eaton William, Tollett Jeffrey, Halter John, Kuspa Adam, Tanaka Yoshimasa, Shaulsky Gad
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston TX 77030, USA.
Development. 2002 Apr;129(7):1543-52. doi: 10.1242/dev.129.7.1543.
A distinct feature of development in the simple eukaryote Dictyostelium discoideum is an aggregative transition from a unicellular to a multicellular phase. Using genome-wide transcriptional analysis we show that this transition is accompanied by a dramatic change in the expression of more than 25% of the genes in the genome. We also show that the transcription patterns of these genes are not sensitive to the strain or the nutritional history, indicating that Dictyostelium development is a robust physiological process that is accompanied by stereotypical transcriptional events. Analysis of the two differentiated cell types, spores and stalk cells, and their precursors revealed a large number of differentially expressed genes as well as unexpected patterns of gene expression, which shed new light on the timing and possible mechanisms of cell-type divergence. Our findings provide new perspectives on the complexity of the developmental program and the fraction of the genome that is regulated during development.
简单真核生物盘基网柄菌发育的一个显著特征是从单细胞阶段到多细胞阶段的聚集转变。通过全基因组转录分析,我们发现这种转变伴随着基因组中超过25%的基因表达发生显著变化。我们还表明,这些基因的转录模式对菌株或营养史不敏感,这表明盘基网柄菌的发育是一个稳健的生理过程,伴随着刻板的转录事件。对两种分化细胞类型,即孢子和柄细胞及其前体的分析揭示了大量差异表达基因以及意想不到的基因表达模式,这为细胞类型分化的时间和可能机制提供了新的线索。我们的发现为发育程序的复杂性以及发育过程中受调控的基因组部分提供了新的视角。