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Sperm navigation along helical paths in 3D chemoattractant landscapes

机译:精子在3D趋化景观中沿螺旋路径导航

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Sperm require a sense of direction to locate the egg for fertilization. They follow gradients of chemical and physical cues provided by the egg or the oviduct. However, the principles underlying three-dimensional (3D) navigation in chemical landscapes are unknown. Here using holographic microscopy and optochemical techniques, we track sea urchin sperm navigating in 3D chemoattractant gradients. Sperm sense gradients on two timescales, which produces two different steering responses. A periodic component, resulting from the helical swimming, gradually aligns the helix towards the gradient. When incremental path corrections fail and sperm get off course, a sharp turning manoeuvre puts sperm back on track. Turning results from an 'off' Ca2+ response signifying a chemoattractant stimulation decrease and, thereby, a drop in cyclic GMP concentration and membrane voltage. These findings highlight the computational sophistication by which sperm sample gradients for deterministic klinotaxis. We provide a conceptual and technical framework for studying microswimmers in 3D chemical landscapes.
机译:精子需要定向才能找到受精的卵。它们遵循卵或输卵管提供的化学和物理提示的梯度。但是,在化学领域中进行三维(3D)导航的基本原理是未知的。在这里,我们使用全息显微镜和光化学技术,以3D趋化因子梯度追踪海胆精子的导航。精子在两个时间尺度上的感觉梯度,产生两个不同的转向响应。由螺旋游动产生的周期性分量使螺旋逐渐朝向梯度对齐。当增量路径校正失败且精子偏离航向时,急转弯动作会使精子重回正轨。来自“关闭”的Ca2 +响应的转向结果表明趋化因子刺激降低,从而导致循环GMP浓度和膜电压下降。这些发现凸显了精子样本梯度用于确定性滑行的计算复杂性。我们提供了一个概念和技术框架,用于研究3D化学景观中的微游泳者。

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