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Maternal Co-ordinate Gene Regulation and Axis Polarity in the Scuttle Fly Megaselia abdita

机译:the蝇蝇的母亲坐标基因调控和轴极性。

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摘要

Axis specification and segment determination in dipteran insects are an excellent model system for comparative analyses of gene network evolution. Antero-posterior polarity of the embryo is established through systems of maternal morphogen gradients. In Drosophila melanogaster, the anterior system acts through opposing gradients of Bicoid (Bcd) and Caudal (Cad), while the posterior system involves Nanos (Nos) and Hunchback (Hb) protein. These systems act redundantly. Both Bcd and Hb need to be eliminated to cause a complete loss of polarity resulting in mirror-duplicated abdomens, so-called bicaudal phenotypes. In contrast, knock-down of bcd alone is sufficient to induce double abdomens in non-drosophilid cyclorrhaphan dipterans such as the hoverfly Episyrphus balteatus or the scuttle fly Megaselia abdita. We investigate conserved and divergent aspects of axis specification in the cyclorrhaphan lineage through a detailed study of the establishment and regulatory effect of maternal gradients in M. abdita. Our results show that the function of the anterior maternal system is highly conserved in this species, despite the loss of maternal cad expression. In contrast, hb does not activate gap genes in this species. The absence of this activatory role provides a precise genetic explanation for the loss of polarity upon bcd knock-down in M. abdita, and suggests a general scenario in which the posterior maternal system is increasingly replaced by the anterior one during the evolution of the cyclorrhaphan dipteran lineage.
机译:二倍体昆虫的轴规格和节段确定是用于基因网络进化比较分析的出色模型系统。胚胎的前后极性通过母体形态发生原梯度系统建立。在果蝇中,前系统通过相反的Bicoid(Bcd)和Caudal(Cad)梯度起作用,而后系统则涉及Nanos(Nos)和Hunchback(Hb)蛋白。这些系统多余地起作用。 Bcd和Hb都需要消除,以导致极性完全丧失,从而导致镜像重复的腹部,即所谓的双尾表型。相比之下,单独敲除bcd足以诱导非果蝇类环丙稀二萜中的双腹部,如Hoverfly Episyrphus balteatus或小cut蝇Megaselia abdita。我们通过对M. abdita中母体梯度的建立和调节作用的详细研究,研究了环丙稀胺谱系中轴规格的保守和不同方面。我们的结果表明,尽管丧失了母亲cad的表达,但该物种的前母亲系统的功能却高度保守。相反,hb不会激活该物种中的缺口基因。缺少这种激活作用,可提供精确的遗传学解释,以解释abdita基因在bcd敲除时极性的丧失,并提示一种普遍的情况,即在环痔的演变过程中,后孕系统逐渐被前孕系统取代角鲨血统。

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