首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cell division pattern influences gene expression in the shoot apical meristem.
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Cell division pattern influences gene expression in the shoot apical meristem.

机译:细胞分裂模式影响茎尖分生组织中的基因表达。

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The shoot apical meristem of angiosperms shows a highly conserved cellular architecture in which a change of cell division orientation correlates with early events of leaf initiation. However, the causal role of this altered cellular parameter in leaf formation is debatable. We have used the dynamin-like protein phragmoplastin as a tool to modify the pattern of cell division within the apical meristem. Taking a microinduction approach, we show that local alteration in cell division orientation is not sufficient to induce morphogenesis in the meristem. Surprisingly, an altered cell division pattern did lead to an altered pattern of expression of genes implicated in aspects of leaf formation. Our data identify inducible expression of phragmoplastin as a tool to manipulate cell division pattern. Furthermore, they indicate that a mechanism exists by which cells in the meristem can respond at the level of gene expression to altered parameters of cell division. These data are discussed in the context of a model linking leaf morphogenesis and differentiation.
机译:被子植物的茎尖分生组织显示出高度保守的细胞结构,其中细胞分裂方向的改变与叶片萌发的早期事件相关。然而,这种改变的细胞参数在叶片形成中的因果作用尚有争议。我们已经使用了类似动力蛋白的蛋白膜增塑素作为一种工具来修改顶端分生组织内的细胞分裂模式。采用微诱导方法,我们表明细胞分裂方向的局部改变不足以诱导分生组织中的形态发生。出人意料的是,改变的细胞分裂模式确实导致了与叶形成方面有关的基因表达模式的改变。我们的数据确定了诱导性表达的促成膜素是操纵细胞分裂模式的一种工具。此外,它们表明存在一种机制,分生组织中的细胞可以在基因表达水平上对改变的细胞分裂参数作出反应。在链接叶形态发生和分化的模型的背景下讨论了这些数据。

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