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Pressure–Induced Cell Wall Instability and Growth Oscillations in Pollen Tubes

机译:花粉管中压力诱导的细胞壁不稳定性和生长振荡

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摘要

In the seed plants, the pollen tube is a cellular extension that serves as a conduit through which male gametes are transported to complete fertilization of the egg cell. It consists of a single elongated cell which exhibits characteristic oscillations in growth rate until it finally bursts, completing its function. The mechanism behind the periodic character of the growth has not been fully understood. In this paper we show that the mechanism of pressure – induced symmetry frustration occurring in the wall at the transition-perimeter between the cylindrical and approximately hemispherical parts of the growing pollen tube, together with the addition of cell wall material, is sufficient to release and sustain mechanical self-oscillations and cell extension. At the transition zone, where symmetry frustration occurs and one cannot distinguish either of the involved symmetries, a kind of ‘superposition state’ appears where either single or both symmetry(ies) can be realized by the system. We anticipate that testifiable predictions made by the model () may deliver, after calibration, a new tool to estimate turgor pressure from oscillation frequency of the periodically growing cell. Since the mechanical principles apply to all turgor regulated walled cells including those of plant, fungal and bacterial origin, the relevance of this work is not limited to the case of the pollen tube.
机译:在种子植物中,花粉管是细胞的延伸部分,可作为输送雄配子以完成卵细胞受精的管道。它由一个细长的细胞组成,该细胞在生长速率中表现出特征性的振荡,直到最终破裂,完成其功能。增长的周期性特征背后的机制尚未完全被理解。在本文中,我们证明了在不断增长的花粉管的圆柱形和近似半球形部分之间的过渡周长处,壁上发生的压力诱导对称性挫折机理以及加入的细胞壁材料足以释放和释放维持机械自激和细胞延伸。在过渡区,发生对称挫折并且无法区分所涉及的对称中的任何一种,出现了一种“叠加状态”,系统可以实现单个或两个对称。我们预计,由模型()做出的可预测性的预测可能会在校准后提供一种新工具,用以根据周期性生长的细胞的振荡频率来估算膨胀压力。由于机械原理适用于所有受膨胀调节的壁细胞,包括植物,真菌和细菌来源的壁细胞,因此这项工作的相关性不仅限于花粉管。

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    Mariusz Pietruszka;

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  • 年(卷),期 -1(8),11
  • 年度 -1
  • 页码 e75803
  • 总页数 9
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