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The vestigial gene product provides a molecular context for the interpretation of signals during the development of the wing in Drosophila.

机译:残留基因产物为果蝇翅膀发育过程中的信号解释提供了分子背景。

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The vestigial (vg) gene of Drosophila plays a central role in the development and patterning of the wing: loss of vestigial results in failures in wing development and ectopic expression of vestigial leads to the development of ectopic wings. The wing-specific regulation of vestigial is mediated through two enhancers: (1) the Boundary Enhancer (vgBE) is early acting and becomes restricted to the wing margin, and (2) the Quadrant Enhancer (vgQE), acts later and is responsible for the expression of vestigial in the developing wing blade. These enhancers receive regulatory inputs from three signalling pathways: wingless, decapentaplegic and Notch/Suppressor of Hairless. Our experiments show that the vestigial gene product is also an input in the regulation of vestigial expression. In particular, Vestigial provides an important input for the regulation of the activity of the vgQE acting in concert with Wingless and Decapentaplegic. Our results suggest how interactions between vgBE and the vgQE mediated by Vestigial can explain the interactions between the wing margin and the wing blade during the growth of the wing. We further show that Vestigial and Notch collaborate with Wingless to subdivide and pattern the wing blade. These results lead us to propose a general role for Wingless during development in which it stabilizes cell fate decisions that have been implemented by other molecules.
机译:果蝇的残留(vg)基因在机翼的发育和模式中起着核心作用:残留的残留导致机翼发育失败,残留的异位表达导致异位机翼的发育。机翼对残留物的特定调节通过两个增强子来介导:(1)边界增强子(vgBE)起作用较早,并被限制在机翼边缘;(2)象限增强子(vgQE)起作用较晚,并负责残留在发育中的机翼叶片中的表达。这些增强剂从三个信号途径接收调节输入:无翅,去甲眼功能增强和Notch /无毛抑制因子。我们的实验表明,残留基因产物也是残留表达调控的输入。特别是,Vestigial为调节与Wingless和Decapentaplegic配合使用的vgQE的活动提供了重要的信息。我们的研究结果表明vgBE和Vestigial介导的vgQE之间的相互作用如何解释机翼生长过程中机翼边缘与机翼叶片之间的相互作用。我们进一步证明,Vestigial和Notch与Wingless合作,对机翼叶片进行细分和图案化。这些结果使我们提出了“无翅”在发育过程中的一般作用,其中它稳定了由其他分子实施的细胞命运决定。

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