Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, United Kingdom.
PLoS Biol. 2024 Apr 29;22(4):e3002611. doi: 10.1371/journal.pbio.3002611. eCollection 2024 Apr.
As tissues grow and change shape during animal development, they physically pull and push on each other, and these mechanical interactions can be important for morphogenesis. During Drosophila gastrulation, mesoderm invagination temporally overlaps with the convergence and extension of the ectodermal germband; the latter is caused primarily by Myosin II-driven polarised cell intercalation. Here, we investigate the impact of mesoderm invagination on ectoderm extension, examining possible mechanical and mechanotransductive effects on Myosin II recruitment and polarised cell intercalation. We find that the germband ectoderm is deformed by the mesoderm pulling in the orthogonal direction to germband extension (GBE), showing mechanical coupling between these tissues. However, we do not find a significant change in Myosin II planar polarisation in response to mesoderm invagination, nor in the rate of junction shrinkage leading to neighbour exchange events. We conclude that the main cellular mechanism of axis extension, polarised cell intercalation, is robust to the mesoderm invagination pull. We find, however, that mesoderm invagination slows down the rate of anterior-posterior cell elongation that contributes to axis extension, counteracting the tension from the endoderm invagination, which pulls along the direction of GBE.
在动物发育过程中,组织会生长并改变形状,它们会相互拉扯和推动,这些机械相互作用对于形态发生可能很重要。在果蝇原肠胚形成过程中,中胚层的内陷与外胚层生殖带的会聚和延伸同时发生;后者主要是由肌球蛋白 II 驱动的极化细胞插入引起的。在这里,我们研究了中胚层内陷对外胚层延伸的影响,检查了对肌球蛋白 II 募集和极化细胞插入的可能的机械和机械转导影响。我们发现,胚带外胚层被从中胚层向与胚带延伸(GBE)正交的方向拉动而变形,显示出这些组织之间的机械耦合。然而,我们没有发现肌球蛋白 II 平面极化对中胚层内陷的显著变化,也没有发现导致相邻交换事件的连接收缩率的变化。我们得出结论,轴延伸的主要细胞机制,即极化细胞插入,对中胚层内陷的拉力具有很强的鲁棒性。然而,我们发现中胚层内陷会降低对轴延伸有贡献的前后细胞伸长的速度,从而抵消来自沿 GBE 方向拉动的内胚层内陷的张力。