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Emergence of symmetry breaking in fucoid zygotes

机译:岩藻合子中对称性断裂的出现

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Fucoid zygotes are model cells for the study of symmetry breaking in plants. After fertilization, their initial spherical symmetry reduces to an axial symmetry, even in the absence of any external cue. This indicates that zygotes have an intrinsic ability to break symmetry in a way that is solely dependent on their internal biochemical and/or biophysical state. In our opinion, symmetry breaking is a self-organized process. It arises around the fucoid zygotes from the ion dynamics through channels (voltage-dependent calcium channels and a potassium leak) and outside the membrane (electrodiffusion owing to slower calcium diffusion compared with potassium). The robustness of this self-organized process and its lability ensure its relevance in plants where symmetry breaking is correlated with transcellular ion currents.
机译:岩藻糖合子是用于研究植物对称性破坏的模型细胞。受精后,即使没有任何外部提示,它们的初始球形对称性也会降低为轴向对称性。这表明合子具有仅以其内部生化和/或生物物理状态为依托的方式来破坏对称性的内在能力。我们认为,对称破坏是一个自组织的过程。它通过通道(依赖电压的钙通道和钾泄漏)和膜外(通过与钙相比,钙扩散较慢而引起的电扩散)的离子动力学在岩藻类合子周围产生。这种自组织过程的鲁棒性及其不稳定性确保了其在对称性破坏与跨细胞离子流相关的植物中的相关性。

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