首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Drosophila gap gene giant has an anterior segment identity function mediated through disconnected and teashirt.
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The Drosophila gap gene giant has an anterior segment identity function mediated through disconnected and teashirt.

机译:果蝇间隙基因巨人具有通过断开和茶衬衫介导的前节身份识别功能。

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The C2H2 zinc-finger-containing transcription factors encoded by the disconnected (disco) and teashirt (tsh) genes contribute to the regionalization of the Drosophila embryo by establishing fields in which specific Homeotic complex (Hom-C) proteins can function. In Drosophila embryos, disco and the paralogous disco-related (disco-r) are expressed throughout most of the epidermis of the head segments, but only in small patches in the trunk segments. Conversely, tsh is expressed extensively in the trunk segments, with little or no accumulation in the head segments. Little is known about the regulation of these genes; for example, what limits their expression to these domains? Here, we report the regulatory effects of gap genes on the spatial expression of disco, disco-r, and tsh during Drosophila embryogenesis. The data shed new light on how mutations in giant (gt) affect patterning within the anterior gt domain, demonstrating homeotic function in this domain. However, the homeosis does not occur through altered expression of the Hom-C genes but through changes in the regulation of disco and tsh.
机译:由断开的(disco)和茶衫(tsh)基因编码的C2H2含锌指的转录因子通过建立特定顺势复合体(Hom-C)蛋白可以发挥作用的区域而有助于果蝇胚胎的区域化。在果蝇胚胎中,迪斯科舞厅和与之相关的迪斯科舞厅(迪斯科舞厅)在整个头节的大多数表皮中表达,但仅在躯干节段的小片中表达。相反,tsh在躯干段中广泛表达,而在头段中很少或没有积累。对这些基因的调控知之甚少。例如,是什么将它们的表达限制在这些域中?在这里,我们报告果蝇胚胎发生过程中间隙基因对迪斯科,迪斯科-r和tsh的空间表达的调节作用。数据揭示了巨大(gt)中的突变如何影响前gt域内的模式,从而证明了该域的同源功能。但是,顺势疗法不是通过改变Hom-C基因的表达而发生的,而是通过迪斯科和tsh调节的改变而发生的。

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