Manzanares M, Williams T A, Marco R, Garesse R
Departamento de Bioquímica UAM, Instituto de Investigaciones Biomédicas CSIC, Facultad de Medicina, Universidad Autónoma de madrid, c/ Arzobispo Morcillo 4, E-28029, Madrid, Spain.
Rouxs Arch Dev Biol. 1996 May;205(7-8):424-431. doi: 10.1007/BF00377222.
We have studied the process of post-embryonic segmentation in the anostracan crustacean Artemia franciscana using a specific antibody raised against the engrailed protein of this organism. Three cephalic segments are specified during embryonic development, before larval hatching, whilst trunk (thoracic) segmentation begins after the first stage free-swimming nauplius larva has emerged from the dormant cyst. Thus, cephalic and trunk segmentation seem to be at least in part independent and superimposed processes. Trunk stripes of engrailed expression are added one at a time as segments are generated from the posterior growth zone. The first detectable decision in engrailed expression is the establishment of a line of engrailed-expressing cells, interpretable as delineating the parasegmental boundary. The subsequent widening of engrailed stripes is not correlated with cell lineage events but is probably mediated by the combination of inheritance of the active state and recruitment of new cells into the engrailed-expressing stripe.
我们利用针对卤虫(Artemia franciscana)体内的 engrailed 蛋白制备的特异性抗体,研究了无甲目甲壳动物卤虫胚胎后体节分割的过程。在胚胎发育期间,即在幼虫孵化之前,确定了三个头部体节,而躯干(胸部)体节分割在第一阶段自由游动的无节幼体从休眠卵囊中孵出后开始。因此,头部和躯干体节分割似乎至少在部分程度上是独立且叠加的过程。随着体节从后生长区产生,engrailed 表达的躯干条纹一次添加一条。engrailed 表达中第一个可检测到的决定是建立一行表达 engrailed 的细胞,这可解释为划定副体节边界。engrailed 条纹随后的变宽与细胞谱系事件无关,可能是由活性状态的遗传和新细胞招募到表达 engrailed 的条纹中的组合介导的。