Dumollard Rémi, Minc Nicolas, Salez Gregory, Aicha Sameh Ben, Bekkouche Faisal, Hebras Céline, Besnardeau Lydia, McDougall Alex
Laboratoire de Biologie du Développement de Villefranche-sur-mer (LBDV) UMR7009, Sorbonne Universités, Université Pierre-et-Marie-Curie, CNRS, Villefranche sur mer, France.
Institut Jacques Monod, UMR7592 CNRS, Paris, France.
Elife. 2017 Jan 25;6:e19290. doi: 10.7554/eLife.19290.
The ascidian embryo is an ideal system to investigate how cell position is determined during embryogenesis. Using 3D timelapse imaging and computational methods we analyzed the planar cell divisions in ascidian early embryos and found that spindles in every cell tend to align at metaphase in the long length of the apical surface except in cells undergoing unequal cleavage. Furthermore, the invariant and conserved cleavage pattern of ascidian embryos was found to consist in alternate planar cell divisions between ectoderm and endomesoderm. In order to test the importance of alternate cell divisions we manipulated zygotic transcription induced by β-catenin or downregulated wee1 activity, both of which abolish this cell cycle asynchrony. Crucially, abolishing cell cycle asynchrony consistently disrupted the spindle orienting mechanism underpinning the invariant cleavage pattern. Our results demonstrate how an evolutionary conserved cell cycle asynchrony maintains the invariant cleavage pattern driving morphogenesis of the ascidian blastula.
海鞘胚胎是研究胚胎发育过程中细胞位置如何确定的理想系统。我们使用三维延时成像和计算方法分析了海鞘早期胚胎中的平面细胞分裂,发现除了进行不等裂的细胞外,每个细胞中的纺锤体在中期往往会沿着顶表面的长轴排列。此外,还发现海鞘胚胎不变且保守的分裂模式在于外胚层和内胚中胚层之间交替的平面细胞分裂。为了测试交替细胞分裂的重要性,我们操纵了由β-连环蛋白诱导的合子转录或下调了wee1活性,这两种操作都会消除这种细胞周期异步性。至关重要的是,消除细胞周期异步性会持续破坏支撑不变分裂模式的纺锤体定向机制。我们的结果证明了进化上保守的细胞周期异步性如何维持驱动海鞘囊胚形态发生的不变分裂模式。