Zhang Ying, Shao Ming, Wang Lifeng, Liu Zhongzhen, Gao Ming, Liu Chao, Zhang Hongwei
Institute of Developmental Biology, College of Life Science, Key Lab of Experimental Teratology of Ministry of Education, Shandong University, 27 Shanda South Road, Jinan, Shandong 250100, China.
Int J Dev Neurosci. 2010 Jun;28(4):283-8. doi: 10.1016/j.ijdevneu.2010.04.001. Epub 2010 Apr 13.
To explore the toxic effects of ethanol on axis formation during embryogenesis, zebrafish embryos at different developmental stages were treated with 3% ethanol for 3h. The effects of ethanol exposure appeared to be stage-dependent. The dome stage embryo was most sensible to form posterior split axes upon ethanol exposure. Morphological and histological observations and whole-mount in situ hybridization results showed that ethanol exposure at this stage caused a general gastrulation delay, and induced double notochords, double neural tubes and two sets of somites in the posterior trunk. Mechanistically, no ectopic organizer was found by examining the expression patterns of dorsoventral markers including goosecoid, chordin and eve1 at the onset of gastrulation. However, radial intercalation, epiboly and convergence extension were inhibited by ethanol exposure as revealed by cell labeling, phenotypic observation and the expression patterns of axial or paraxial markers. Further investigation showed that the cell aggregation might be affected by ethanol exposure, as indicated by the much more scattered expression pattern of chordin, eve1 and wnt11 at the early gastrula stage, and the discontinuous gsc positive cells during migration. These results imply that ethanol might affect cell movement before and during gastrulation and as a consequence, induces a split axes phenotype.
为了探究乙醇在胚胎发育过程中对轴形成的毒性作用,用3%乙醇处理不同发育阶段的斑马鱼胚胎3小时。乙醇暴露的影响似乎具有阶段依赖性。穹顶期胚胎在乙醇暴露后最易形成后部分裂轴。形态学和组织学观察以及整体原位杂交结果表明,此阶段的乙醇暴露导致原肠胚形成普遍延迟,并在后躯干诱导出双脊索、双神经管和两组体节。从机制上讲,在原肠胚形成开始时,通过检查包括鹅膏菌素、脊索蛋白和eve1在内的背腹标记物的表达模式,未发现异位组织者。然而,细胞标记、表型观察以及轴向或近轴标记物的表达模式显示,乙醇暴露会抑制径向插入、外包和汇聚延伸。进一步研究表明,乙醇暴露可能会影响细胞聚集,如在早期原肠胚阶段,脊索蛋白、eve1和wnt11的表达模式更为分散,以及在迁移过程中gsc阳性细胞不连续所示。这些结果表明,乙醇可能在原肠胚形成之前和期间影响细胞运动,从而诱导分裂轴表型。