bioRxiv · 10.1101/662965
An emergent flow of the nuclear array in syncytial embryos
Abstract
Many aspects in tissue morphogenesis are attributed to the collective behavior of the participating cells. Yet, the mechanism for emergence of dynamic tissue behavior is not understood completely. Here we report the "yo-yo"-like nuclear drift movement in Drosophila syncytial embryo displays typical emergent feature of collective behavior, which is associated with pseudo-synchronous nuclear division cycle. We uncover the direct correlation between the degree of asynchrony of mitosis and the nuclear collective movement. Based on experimental manipulations and numerical simulations, we find the ensemble of spindle elongation, rather than a nucleus own spindle, is the main driving force for its drift movement. The cortical F-actin acts as viscoelastic medium to dampen the movements and plays a critical role in restoring the nuclear positions after a mitosis cycle. Our study provides insights into how the interactions between cytoskeleton as individual elements leads to collective movement of the nuclear array on a macroscopic scale.
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Lv, Z., Rosenbaum, J., Mohr, S., Zhang, X., Preiss, H., Kruss, S., Alim, K., Aspelmeier, T., Grosshans, J.. 2019-06-06. An emergent flow of the nuclear array in syncytial embryos. https://doi.org/10.1101/662965
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