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再生芽基中的模式调控。

Pattern regulation in epimorphic fields.

作者信息

French V, Bryant P J, Bryant S V

出版信息

Science. 1976 Sep 10;193(4257):969-81. doi: 10.1126/science.948762.

Abstract

We have described a formal model for pattern regulation in epimorphic fields in which positional information is specified in terms of polar coordinates in two dimensions. We propose that cells within epimorphic fields behave according to two simple rules, the shortest intercalation rule and the complete circle rule, for both of which there is direct experimental evidence. It is possible to understand a large number of different behaviors of epimorphic fields as a straight-forward consequence of these two rules, and the model therefore provides a context in which to view many of the results of experimental embryology. Although we have confined our discussion to cockroach legs, the imaginal disks of Drosophila, and regenerating and developing amphibian limbs, the fact that the model can explain regulative behavior in such evolutionarily diverse animals suggests that it may have general applicability to epimorphic fields. The predictions which the model makes should make it possible to assess its applicability to other developing systems, and to investigate the cellular mechanisms involved.

摘要

我们已经描述了一种用于形态发生场中模式调控的形式模型,其中位置信息是根据二维极坐标来指定的。我们提出,形态发生场内的细胞遵循两条简单规则,即最短插入规则和完整圆周规则,这两条规则都有直接的实验证据。作为这两条规则的直接结果,可以理解形态发生场的大量不同行为,因此该模型提供了一个视角,可据此审视实验胚胎学的许多结果。尽管我们的讨论局限于蟑螂腿、果蝇的成虫盘以及再生和发育中的两栖动物肢体,但该模型能够解释如此进化上不同的动物中的调控行为这一事实表明,它可能对形态发生场具有普遍适用性。该模型所做的预测应该能够评估其对其他发育系统适用的可能性,并研究其中涉及的细胞机制。

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