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果蝇双胸复合体的序列功能。

Sequential functions of the bithorax complex of Drosophila.

作者信息

Morata G, Kerridge S

出版信息

Nature. 1981 Apr 30;290(5809):778-81. doi: 10.1038/290778a0.

Abstract

The bithorax genes are a group of homoeotic genes of Drosophila whose function is related to the control of segment development. They form a gene complex in which at least seven different loci have been identified. Mutations at each of these loci produce a specific homoeotic transformation whereby a segment is transformed either in part or completely into another. In embryos completely deficient for the bithorax genes, all the thoracic and abdominal segments resemble mesothoracic segments. This observation, together with the segmental specificity of the mutant phenotypes, led Lewis to suggest a model of genetic control in which the type of development in each segment is specified by the activation of a fraction of the total number of bithorax genes. Thus, lack of activity of the bithorax genes results in mesothoracic development, activation of the bithorax (bx+) and postbithorax (pbx+) genes produces metathorax (anterior and posterior respectively), and activation of these two genes with bithoraxoid (bxd+) produces the first abdominal segment and so on. Although this model explains the genetic and developmental data, it leaves unexplained formation of the prothoracic segment. We now describe two unexpected results: deficiencies for bithorax genes can lead to segments being transformed into prothorax, and there is a temporal sequence in the function of the bithorax system.

摘要

双胸基因是果蝇的一组同源异型基因,其功能与体节发育的控制有关。它们形成一个基因复合体,其中至少已鉴定出七个不同的位点。这些位点中的每一个发生突变都会产生特定的同源异型转化,由此一个体节部分或完全转化为另一个体节。在完全缺乏双胸基因的胚胎中,所有胸节和腹节都类似于中胸节。这一观察结果,连同突变体表型的体节特异性,促使刘易斯提出了一种遗传控制模型,其中每个体节的发育类型由双胸基因总数的一部分的激活来指定。因此,双胸基因缺乏活性会导致中胸发育,双胸(bx+)和后双胸(pbx+)基因的激活分别产生后胸(分别为前部和后部),而这两个基因与双胸oid(bxd+)一起激活则产生第一腹节等等。尽管这个模型解释了遗传和发育数据,但它没有解释前胸节的形成。我们现在描述两个意外的结果:双胸基因的缺失会导致体节转化为前胸,并且双胸系统的功能存在时间顺序。

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