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Involvement of the conserved Hox gene Antennapedia in the development and evolution of a novel trait

机译:保守的Hox基因触角参与新性状的发展和进化

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Background Hox proteins specify segment identity during embryogenesis and have typical associated expression patterns. Changes in embryonic expression and activity of Hox genes were crucial in the evolution of animal body plans, but their role in the post-embryonic development of lineage-specific traits remains largely unexplored. Here, we focus on the insect Hox genes Ultrabithorax (Ubx) and Antennapedia (Antp), and implicate the latter in the formation and diversification of novel, butterfly-specific wing patterns. Results First, we describe a conserved pattern of Ubx expression and a novel pattern of Antp expression in wing discs of Bicyclus anynana butterflies. The discrete, reiterated domains of Antp contrast with the typical expression of Hox genes in single continuous regions in arthropod embryos. Second, we show that this pattern is associated with the establishment of the organizing centres of eyespots. Antp upregulation is the earliest event in organizer development described to date, and in contrast to all genes implicated in eyespot formation, is exclusive to those centres. Third, our comparative analysis of gene expression across nymphalids reveals unexpected differences in organizer determination. Conclusions We show that the Antp's recruitment for the formation of novel traits in butterfly wing discs involved the evolution of new expression domains, and is restricted to a particular lineage. This study contributes novel insights into the evolution of Antp expression, as well as into the genetic mechanisms underlying morphological diversification. Our results also underscore how a wider representation of morphological and phylogenetic diversity is essential in evolutionary developmental biology.
机译:背景Hox蛋白在胚胎发生过程中指定区段同一性,并具有典型的相关表达模式。 Hox基因的胚胎表达和活性的变化在动物身体计划的演变中至关重要,但是在胚胎后世系特定性状发展中的作用仍未开发。在这里,我们将重点放在昆虫Hox基因Ultrabithorax(Ubx)和Antennapedia(Antp)上,并将后者暗示于新颖的,蝴蝶特有的机翼模式的形成和多样化中。结果首先,我们描述了Bicyclus anynana蝴蝶翅片中Ubx表达的保守模式和Antp表达的新型模式。 Antp的离散重复域与节肢动物胚胎单个连续区域中Hox基因的典型表达形成对比。其次,我们证明了这种模式与眼点组织中心的建立有关。迄今为止,Antp上调是组织者发育中最早的事件,与所有涉及眼点形成的基因相反,这些中心是唯一的。第三,我们对若虫类基因表达的比较分析揭示了组织者测定中出乎意料的差异。结论我们表明,Antp在蝶翅盘中新特征形成的募集涉及新表达域的进化,并且仅限于特定谱系。这项研究提供了新的见解,对Antp表达的演变,以及对形态学多元化的遗传机制。我们的结果还强调了形态和系统发育多样性的广泛表示对于进化发育生物学至关重要。

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