论文标题

细胞内耦合调节Biflagellar同步

Intracellular coupling modulates biflagellar synchrony

论文作者

Guo, Hanliang, Man, Yi, Wan, Kirsty Y., Kanso, Eva

论文摘要

击败鞭毛表现出各种同步模式。这种同步长期以来一直归因于鞭毛之间的流体动力耦合。但是,最近使用鞭毛藻类的工作表明,通过连接鞭毛基体的收缩纤维内部的机制必须发挥作用,以积极调节鞭毛同步。基础耦合如何介导鞭毛配位尚不清楚。在这里,我们使用一系列复杂度降低水平的数学模型来研究基础耦合在模型Biflagellate \ textit {chlamydomonas renhardtii}中的作用。我们报告说,即使没有流体动力耦合和鞭毛依从性,基础耦合也足以实现空间,反相和可动同步。可以通过调节单个鞭毛的活性水平或基础耦合的强度来达到这些模式。在允许差异鞭毛活性时,我们会观察到一种滑动模式,就像在实验室的实验中一样。我们引入了鞭毛活性的无量纲比率与可以预测同步模式的基础耦合。该比率使我们能够查询尚未直接测量实验的生物学参数。我们的工作显示了一个细胞积极控制其鞭毛同步的混凝土途径。

Beating flagella exhibit a variety of synchronization modes. This synchrony has long been attributed to hydrodynamic coupling between the flagella. However, recent work with flagellated algae indicates that a mechanism internal to the cell, through the contractile fibres connecting the flagella basal bodies, must be at play to actively modulate flagellar synchrony. Exactly how basal coupling mediates flagellar coordination remains unclear. Here, we examine the role of basal coupling in the synchronization of the model biflagellate \textit{Chlamydomonas reinhardtii} using a series of mathematical models of decreasing level of complexity. We report that basal coupling is sufficient to achieve inphase, antiphase, and bistable synchrony, even in the absence of hydrodynamic coupling and flagellar compliance. These modes can be reached by modulating the activity level of the individual flagella or the strength of the basal coupling. We observe a slip mode when allowing for differential flagellar activity, just as in experiments with live cells. We introduce a dimensionless ratio of flagellar activity to basal coupling that is predictive of the mode of synchrony. This ratio allows us to query biological parameters which are not yet directly measurable experimentally. Our work shows a concrete route for cells to actively control the synchronization of their flagella.

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