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A dual role for homothorax in inhibiting wing blade development and specifying proximal wing identities in Drosophila.

机译:同胸在果蝇中抑制机翼叶片发育和确定近侧机翼身份的双重作用。

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The Drosophila wing imaginal disc gives rise to three body parts along the proximo-distal (P-D) axis: the wing blade, the wing hinge and the mesonotum. Development of the wing blade initiates along part of the dorsal/ventral (D/V) compartment boundary and requires input from both the Notch and wingless (wg) signal transduction pathways. In the wing blade, wg activates the gene vestigial (vg), which is required for the wing blade to grow. wg is also required for hinge development, but wg does not activate vg in the hinge, raising the question of what target genes are activated by wg to generate hinge structures. Here we show that wg activates the gene homothorax (hth) in the hinge and that hth is necessary for hinge development. Further, we demonstrate that hth also limits where along the D/V compartment boundary wing blade development can initiate, thus helping to define the size and position of the wing blade within the disc epithelium. We also show that the gene teashirt (tsh), which is coexpressed with hth throughout most of wing disc development, collaborates with hth to repress vg and block wing blade development. Our results suggest that tsh and hth block wing blade development by repressing some of the activities of the Notch pathway at the D/V compartment boundary.
机译:果蝇的机翼假想盘沿近-远端(P-D)轴产生三个身体部位:机翼叶片,机翼铰链和中膜。机翼叶片的展开沿背/腹(D / V)隔室边界的一部分开始,并且需要来自Notch和无​​翼(wg)信号转导通路的输入。在机翼叶片中,wg激活基因残留(vg),这是机翼叶片生长所必需的。 wg对于铰链的发展也是必需的,但是wg不会激活铰链中的vg,这引发了一个问题,即wg激活了哪些靶基因以产生铰链结构。在这里,我们显示wg激活铰链中的基因胸(hth),而hth对于铰链的发育是必需的。此外,我们证明了hth还限制了翼片沿D / V隔室的起始位置,从而有助于定义翼片在椎间盘上皮内的大小和位置。我们还显示,基因茶衫(tsh)与hth在整个机翼圆盘开发过程中共表达,可与hth协同抑制vg并阻止机翼叶片的发育。我们的结果表明,tsh和hth通过抑制D / V舱室边界处的Notch通路的某些活动来阻止机翼叶片的发展。

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