Komazaki Shinji
Department of Anatomy, Saitama Medical School, Saitama, Japan.
Biol Sci Space. 2002 Jun;16(2):41-6. doi: 10.2187/bss.16.41.
The effects of simulated microgravity on blastopore (Bp) formation were analysed in Xenopus laevis and Cynops pyrrhogaster embryos. Simulated microgravity produced by clinostat rotation shifted the Bp-forming region toward the vegetal pole, more markedly in Cynops embryos than in Xenopus embryos. The simulated microgravity induced aggregation of endoderm cells at the center of the embryo and separation between the endoderm and presumptive mesoderm (PM). These findings suggest that clinostat treatment disrupts cell-to-cell interaction between endoderm and PM by increasing the separation between them and, as a result, Bp formation may be shifted towards the vegetal pole.
在非洲爪蟾和日本林蛙胚胎中分析了模拟微重力对胚孔(Bp)形成的影响。回转器旋转产生的模拟微重力使Bp形成区域向植物极移动,在日本林蛙胚胎中比在非洲爪蟾胚胎中更明显。模拟微重力诱导内胚层细胞在胚胎中心聚集以及内胚层和预定中胚层(PM)之间分离。这些发现表明,回转器处理通过增加内胚层和PM之间的距离破坏了它们之间的细胞间相互作用,结果,Bp形成可能向植物极移动。