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正齿基因受双胸和躯干调控,并决定果蝇头部发育。

The orthodenticle gene is regulated by bicoid and torso and specifies Drosophila head development.

作者信息

Finkelstein R, Perrimon N

机构信息

Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Nature. 1990 Aug 2;346(6283):485-8. doi: 10.1038/346485a0.

Abstract

In the Drosophila embryo, cell fate along the anterior-posterior axis is determined by maternally expressed genes. The activity of the bicoid (bcd) gene is required for the development of larval head and thoracic structures, and that of maternal torso (tor) for the development of the unsegmented region of the head (acron). In contrast to the case of thoracic and abdominal segmentation, the hierarchy of zygotically expressed genes controlling head development has not been clearly defined. The bcd protein, which is expressed in a gradient, activates zygotic expression of the gap gene hunchback (hb), but hb alone is not sufficient to specify head development. Driever et al. proposed that at least one other bcd-activated gene controls the development of head regions anterior to the hb domain. We report here that the homeobox gene orthodenticle (otd), which is involved in head development, could be such a gene. We also show that otd expression responds to the activity of the maternal tor gene at the anterior pole of the embryo.

摘要

在果蝇胚胎中,沿前后轴的细胞命运由母体表达的基因决定。双胸(bcd)基因的活性是幼虫头部和胸部结构发育所必需的,而母体躯干(tor)基因的活性则是头部未分段区域(端体)发育所必需的。与胸腹部体节形成的情况不同,控制头部发育的合子表达基因的层次结构尚未明确界定。以梯度形式表达的bcd蛋白激活了间隙基因驼背(hb)的合子表达,但仅hb不足以确定头部发育。德里弗等人提出,至少还有一个由bcd激活的基因控制着hb结构域前方的头部区域发育。我们在此报告,参与头部发育的同源异型盒基因正齿(otd)可能就是这样一个基因。我们还表明,otd的表达对胚胎前极母体tor基因的活性有反应。

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