Does the Potential for Chaos Constrain the Embryonic Cell-Cycle Oscillator?

作者:McIsaac R Scott*; Huang Kerwyn Casey; Sengupta Anirvan; Wingreen Ned S
来源:PLoS Computational Biology, 2011, 7(7): e1002109.
DOI:10.1371/journal.pcbi.1002109

摘要

Although many of the core components of the embryonic cell-cycle network have been elucidated, the question of how embryos achieve robust, synchronous cellular divisions post-fertilization remains unexplored. What are the different schemes that could be implemented by the embryo to achieve synchronization? By extending a cell-cycle model previously developed for embryos of the frog Xenopus laevis to include the spatial dimensions of the embryo, we establish a novel role for the rapid, fertilization-initiated calcium wave that triggers cell-cycle oscillations. Specifically, in our simulations a fast calcium wave results in synchronized cell cycles, while a slow wave results in full-blown spatio-temporal chaos. We show that such chaos would ultimately lead to an unpredictable patchwork of cell divisions across the embryo. Given this potential for chaos, our results indicate a novel design principle whereby the fast calcium-wave trigger following embryo fertilization synchronizes cell divisions.

  • 出版日期2011-7