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A demonstration of pattern formation without positional information in Dictyostelium

机译:无网柄菌属中没有位置信息的模式形成的演示

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Although positional information, conveyed by morphogen gradients, is a widely accepted way of forming patterns during development, an alternative method is conceivable, based on the intermingled differentiation of cells with different fates, followed by their sorting into discrete pattern elements. It has been proposed that Dictyostelium prestalk and prespore cells behave in this way at the mound stage of development. However, it has been difficult to conclusively demonstrate that they initially differentiate intermingled, because rapid cell movement within the mound makes it impossible to be sure where prestalk and prespore cells originate. We have taken a novel approach to address this problem by blocking cell movement at different stages in development, using the actin-depolymerizing drug, latrunculin-A. Prestalk and prespore cells differentiate with essentially normal efficiency and timing in such paralyzed structures. When movement is blocked sufficiently early, the major cell types all subsequently differentiate at scattered positions throughout the aggregate, and even in the streams leading into it. Our work strongly supports the idea that the prestalk/prespore pattern in Dictyostelium forms without positional information and demonstrate that latrunculin-A may provide a useful tool for the investigation of patterning in other organisms. [References: 42]
机译:尽管通过形态发生子梯度传递的位置信息是在开发过程中形成图案的广泛接受的方式,但是可以想到一种替代方法,该方法基于具有不同命运的细胞的混合分化,然后将它们分类为离散的图案元素。已经提出,盘基网柄菌前茎和芽孢前细胞在发育的丘阶段以这种方式表现。但是,很难确定性地证明它们最初会相互混合,因为丘中细胞的快速运动使得无法确定前茎和孢子细胞起源于何处。我们采取了一种新颖的方法来解决此问题,方法是使用肌动蛋白解聚药物latrunculin-A阻止细胞在发育的不同阶段运动。在这种瘫痪的结构中,前茎细胞和芽孢细胞基本上以正常的效率和时间分化。当运动被足够早地阻止时,所有主要细胞类型随后都会在整个聚集体的分散位置,甚至进入该聚集体的流中分化。我们的工作强有力地支持了梭菌的前茎/孢子模式在没有位置信息的情况下形成的观点,并证明了latrunculin-A可能为研究其他生物中的模式提供了有用的工具。 [参考:42]

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