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Wingless signaling in a large insect, the blowfly Lucilia sericata: A beautiful example of evolutionary developmental biology

机译:在一种大型昆虫中的无翅信号,粉虱Lucilia sericata:进化发育生物学的一个美丽的例子

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摘要

Blowflies are the primary facultative agent in causing myiasis of domestic sheep in the whole world and, at the same time, it is an important tool for forensic medicine. Surprisingly, and in contrast to its importance, almost no data regarding the embryology and molecular markers are known for this insect. In this report, we present a detailed description of the blowfly Lucilia sericata embryogenesis and of imaginal disc development. The embryogenesis of Lucilia strongly resembles that of Drosophila, despite their apparent size difference. Moreover, imaginal disc development appears to be equally well conserved. Through cloning, expression, and functional studies, we show that the Lucilia Wingless (Wg) protein is highly conserved between the two species. We further show that parasegments are established in Lucilia, however, engrailed expression shows a more dynamic expression pattern than expected in comparison to Drosophila. Over-expression of Lucilia Wingless in Drosophila shows wingless-like wing phenotypes, suggesting that Lucilia Wingless blocks the signalling activity of Drosophila Wingless. Upon injection of wg dsRNA, we observe a "lawn of denticle" phenotype, closely resembling that of Drosophila. Due to the large size of the insect, the distance over which Wingless exerts signalling activity is up to three times larger than in Drosophila, yet the consequences are very similar. Our data demonstrate long-range wingless signaling mechanisms adapted for patterning large domains of naked cuticle and suggest signaling properties of Lucilia Wingless that are distinct from those of Drosophila Wingless.
机译:蝇low是导致全世界家养绵羊肌病的主要辅助因子,同时,它也是法医学的重要工具。令人惊讶的是,与其重要性相反,几乎没有关于该昆虫的有关胚胎学和分子标记的数据。在这份报告中,我们提出了对蝇蝇Lucilia sericata胚胎发生和假想椎间盘发育的详细描述。尽管有明显的大小差异,但路西莉亚氏菌的胚胎发生与果蝇非常相似。此外,虚拟光盘的开发似乎同样得到了很好的保护。通过克隆,表达和功能研究,我们显示了Lucilia Wingless(Wg)蛋白在两个物种之间高度保守。我们进一步表明,parasegments建立在Lucilia,但是,与果蝇相比,过度表达表现出比预期更动态的表达模式。果蝇中的路西莉亚·温格莱斯过表达表现出无翼状的翅膀表型,这表明路西莉亚·温格里丝阻碍果蝇无翅膀的信号传导活性。注射wg dsRNA后,我们观察到“齿状草坪”表型,与果蝇非常相似。由于昆虫的大小,Wingless发挥信号活性的距离是果蝇中的三倍,但后果却非常相似。我们的数据表明,远程无翼信号传导机制适用于模式化裸露角质层的大区域,并暗示了与果蝇无翼蝇不同的Lucilia Wingless的信号传导特性。

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