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Peeking into Pit Fields: A Multiple Twinning Model of Secondary Plasmodesmata Formation in Tobacco

机译:窥视坑田:烟草中次生等位线虫形成的多重孪生模型

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摘要

In higher plants, plasmodesmata (PD) are major conduits for cell–cell communication. Primary PD are laid down at cytokinesis, while secondary PD arise during wall extension. During leaf development, the basal cell walls of trichomes extend radially without division, providing a convenient system for studying the origin of secondary PD. We devised a simple freeze-fracture protocol for examining large numbers of PD in surface view. In the postcytokinetic wall, simple PD were distributed randomly. As the wall extended, PD became twinned at the cell periphery. Additional secondary pores were inserted at right angles to these, giving rise to pit fields composed of several paired PD. During wall extension, the number of PD increased fivefold due to the insertion of secondary PD. Our data are consistent with a model in which a subset of the original primary PD pores function as templates for the insertion of new secondary PD, spatially fixing the position of future pit fields. Many of the new PD shared the same wall collar as the original PD pore, suggesting that new PD pores may arise by fissions of existing PD progenitors. Different models of secondary PD formation are discussed. Our data are supported by a computational model, Plasmodesmap, which accurately simulates the formation of radial pit fields during cell wall extension based on the occurrence of multiple PD twinning events in the cell wall. The model predicts PD distributions with striking resemblance to those seen on fractured wall faces.
机译:在高等植物中,浆线虫(PD)是细胞间通讯的主要管道。原发性PD在胞质分裂时放下,而继发性PD在壁延伸期间出现。在叶片发育过程中,毛状体的基底细胞壁呈放射状延伸而不会分裂,为研究次生PD的起源提供了便利的系统。我们设计了一种简单的冷冻断裂方案,用于在表面视图中检查大量PD。在细胞动力学后壁,简单的PD随机分布。随着壁的延伸,PD在细胞周围成双胞胎。与这些孔成直角插入额外的次要孔,从而形成由几个成对的PD组成的坑场。在壁扩展过程中,PD的数量由于插入了辅助PD而增加了五倍。我们的数据与一个模型一致,在该模型中,原始的主要PD孔的一个子集用作插入新的次要PD的模板,在空间上固定了未来矿场的位置。许多新的PD与原来的PD孔共享相同的壁环,这表明新的PD孔可能是由现有PD祖细胞的裂变引起的。讨论了次级PD形成的不同模型。我们的数据得到计算模型Plasmodesmap的支持,该模型基于细胞壁中多个PD孪生事件的发生,准确模拟了细胞壁延伸过程中径向凹坑场的形成。该模型预测的PD分布与在破裂的壁面上看到的分布非常相似。

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