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无翅基因在果蝇翅缘区域优化自身的表达域。

wingless refines its own expression domain on the Drosophila wing margin.

作者信息

Rulifson E J, Micchelli C A, Axelrod J D, Perrimon N, Blair S S

机构信息

Program for Neuroscience, University of Wisconsin, Madison 53706, USA.

出版信息

Nature. 1996 Nov 7;384(6604):72-4. doi: 10.1038/384072a0.

Abstract

The imaginal discs of Drosophila, which give rise to the adult appendages, are patterned during a period of intense cell proliferation. The specification of differing regions occurs in some cases by subdividing the disc epithelium into lineage compartments. However, in most cases precise boundaries are formed between different cell types without early compartmentalization. One such boundary occurs between the wingless (wg)-expressing cells of the wing margin and the adjacent proneural cells, which give rise to margin sensory bristles. Here we show that this boundary arises in part by a mechanism of 'self-refinement', by which wingless protein (Wg) represses wg expression in adjacent cells. Cells unable to receive the Wg signal do not resolve the boundary between wg-expressing and proneural cells.

摘要

果蝇的成虫盘会发育成成虫的附肢,它们在细胞大量增殖的时期形成模式。在某些情况下,不同区域的特化是通过将盘状上皮细分为谱系区室来实现的。然而,在大多数情况下,不同细胞类型之间会形成精确的边界,而没有早期的区室化。一个这样的边界出现在翅缘表达无翅(wg)的细胞和相邻的原神经细胞之间,原神经细胞会发育成边缘感觉刚毛。在这里我们表明,这个边界部分是通过一种“自我细化”机制形成的,即无翅蛋白(Wg)抑制相邻细胞中wg的表达。无法接收Wg信号的细胞无法分辨表达wg的细胞和原神经细胞之间的边界。

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