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果蝇气管系统发育过程中区域特异性同源异型基因spalt的双重功能。

Dual function of the region-specific homeotic gene spalt during Drosophila tracheal system development.

作者信息

Kühnlein R P, Schuh R

机构信息

Abteilung Molekulare Entwicklungsbiologie, Max-Planck-Institut für Biophysikalische Chemie, Göttingen, Germany.

出版信息

Development. 1996 Jul;122(7):2215-23. doi: 10.1242/dev.122.7.2215.

Abstract

We report that the region-specific homeotic gene spalt affects the Drosophila tracheal system at two different stages of embryonic development. Both lack-of-function and gain-of-function experiments show that blastodermal spalt activity restricts tracheal development to 10 bilaterally positioned pairs of tracheal placodes in the trunk region by repressing placode formation in parasegments 2, 3 and 14. The results suggest that the activity of the zinc-finger type transcription factor encoded by spalt suppresses the molecular pathway that establishes tracheal development. spalt function is also necessary for the directed migration of the dorsal trunk cells, a distinct subset of tracheal cells. This process is a prerequisite for the formation of the dorsal trunk generated by fusion of adjacent tracheal metameres into a common tubular structure. The directed cell migration, in which spalt gene function participates, seems to be independent of branch fusion and general tracheal cell migration processes.

摘要

我们报告称,区域特异性同源异型基因spalt在胚胎发育的两个不同阶段影响果蝇的气管系统。功能缺失和功能获得实验均表明,胚盘期spalt的活性通过抑制副节2、3和14中气管原基的形成,将气管发育限制在躯干区域的10对双侧定位的气管原基。结果表明,由spalt编码的锌指型转录因子的活性抑制了建立气管发育的分子途径。spalt功能对于背干细胞(一种独特的气管细胞亚群)的定向迁移也是必需的。这一过程是相邻气管节段融合形成共同管状结构从而产生背干的前提条件。spalt基因功能参与的定向细胞迁移似乎独立于分支融合和一般气管细胞迁移过程。

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