Quaranta Greta, Aubin-Tam Marie-Eve, Tam Daniel
Laboratory for Aero and Hydrodynamics, Delft University of Technology, 2628CD Delft, Netherlands.
Department of Bionanoscience, Delft University of Technology, 2628CJ Delft, Netherlands.
Phys Rev Lett. 2015 Dec 4;115(23):238101. doi: 10.1103/PhysRevLett.115.238101. Epub 2015 Nov 30.
The influence of hydrodynamic forces on eukaryotic flagella synchronization is investigated by triggering phase locking between a controlled external flow and the flagella of C. reinhardtii. Hydrodynamic forces required for synchronization are over an order of magnitude larger than hydrodynamic forces experienced in physiological conditions. Our results suggest that synchronization is due instead to coupling through cell internal fibers connecting the flagella. This conclusion is confirmed by observations of the vfl3 mutant, with impaired mechanical connection between the flagella.
通过触发受控外部流与莱茵衣藻鞭毛之间的锁相,研究了流体动力对真核生物鞭毛同步的影响。同步所需的流体动力比生理条件下所经历的流体动力大一个数量级以上。我们的结果表明,同步反而归因于通过连接鞭毛的细胞内纤维的耦合。这一结论通过对vfl3突变体的观察得到证实,该突变体的鞭毛之间的机械连接受损。