Boterenbrood Elze C, Narraway Jennifer M, Hara Koki
Hubrecht Laboratory, International Embryological Institute, Uppsalalaan 8, 3584 CT, Utrecht, The Netherlands.
Wilehm Roux Arch Dev Biol. 1983 Sep;192(5):216-221. doi: 10.1007/BF00848652.
The animal and the vegetative side of 15 embryos ofXenopus laevis were studied from the 5th cleavage to gastrulation by means of time-lapse cinematography. The duration of cleavage cycles, defined for the embryo as a whole as the period between the earliest blastomere divisions of one cycle to those of the next, varies quite a lot between individual embryos, both with respect to synchronous and lengthened cycles. Cycle lengthening may start at either cycle 10, 11 or 12. Cycle 13 deviates from the individual rhythm, and moreover its duration is inversely correlated with the period elapsing from the beginning of this cycle to the onset of gastrulation which occurs in cycles 14 or 15. In each cleavage cycle, the regional sequence of first blastomere divisions is visible on films as a "cleavage wave" runming over the animal cap. The direction of the waves varies in different embryos during the synchronous period but begins to change from cycle 10 onwards, resulting in a similar direction in most embryos prior to gastrulation: from the ventral/left to the dorsal/right half. This change reflects an asymmetry in the lengthening of the cycles in the animal cap: more dorsally than ventrally, and more on the right than on the left. The possible significance of the results for the timing of gastrulation and for the pattern of the future embryo is discussed.
利用延时摄影技术,对15个非洲爪蟾胚胎从第5次卵裂到原肠胚形成阶段的动物性和植物性部分进行了研究。卵裂周期的时长,对于整个胚胎而言,定义为从一个周期最早的卵裂球分裂到下一个周期最早的卵裂球分裂之间的时间段,在各个胚胎之间差异很大,无论是同步周期还是延长周期。周期延长可能从第10、11或12个周期开始。第13个周期偏离了个体节奏,而且其时长与从这个周期开始到在第14或15个周期发生原肠胚形成开始所经过的时间段呈负相关。在每个卵裂周期中,卵裂球首次分裂的区域顺序在影片上表现为一个“卵裂波”在动物极帽上移动。在同步期,不同胚胎中波的方向各不相同,但从第10个周期开始方向开始变化,在大多数胚胎原肠胚形成之前导致类似的方向:从腹侧/左侧到背侧/右侧。这种变化反映了动物极帽中周期延长的不对称性:背侧比腹侧更明显,右侧比左侧更明显。讨论了这些结果对于原肠胚形成时间和未来胚胎模式的可能意义。