Huang H J, Takagawa D, Weeks G, Pears C
Biochemistry Department, Oxford University, United Kingdom.
Dev Biol. 1997 Dec 15;192(2):564-71. doi: 10.1006/dbio.1997.8769.
The cellular slime mold Dictyostelium discoideum undergoes a developmental life cycle on starvation to generate a fruiting body consisting of a mass of spores supported on a stalk of dead, vacuolated cells. The choice between alternative cell fates is influenced by a variety of factors including cell cycle position at the onset of starvation. We present evidence to suggest that the cell cycle position influences cell fate by determining the position of cells in the early aggregate. The existence of a strain which cannot initiate development on its own but which can respond to signals generated by nonmutant cells has allowed us to investigate the eventual cell fate of the initiating cells which are, by definition, at the center of the early aggregate. Cells which have a propensity to become prespore cells show an increased efficiency in initiating development of this strain. Labeling the initiating cells by the expression of green fluorescent protein reveals that these cells become spores. The higher levels of expression of genes characteristic of early development in cells with a prespore tendency are consistent with the earlier expression of the components of relay in prespore cells.
细胞黏菌盘基网柄菌在饥饿时会经历一个发育生命周期,以产生一个子实体,该子实体由一团孢子组成,这些孢子支撑在由死亡的、充满液泡的细胞构成的柄上。细胞命运的选择受到多种因素的影响,包括饥饿开始时的细胞周期位置。我们提供的证据表明,细胞周期位置通过决定细胞在早期聚集体中的位置来影响细胞命运。存在一种自身不能启动发育但能对非突变细胞产生的信号作出反应的菌株,这使我们能够研究起始细胞的最终细胞命运,根据定义,这些起始细胞位于早期聚集体的中心。倾向于成为前孢子细胞的细胞在启动该菌株发育方面表现出更高的效率。通过绿色荧光蛋白的表达标记起始细胞,结果显示这些细胞会变成孢子。在前孢子倾向的细胞中,早期发育特征基因的较高表达水平与前孢子细胞中信号传递成分的更早表达相一致。