Prühs Romy, Beermann Anke, Schröder Reinhard
Department of Genetics, Biological Sciences, University of Rostock, Albert-Einstein-Str. 3, D 18059 Rostock, Germany.
Animal Genetics, University of Tübingen, Auf der Morgenstelle 15, D 72076 Tübingen, Germany.
J Dev Biol. 2017 Oct 15;5(4):10. doi: 10.3390/jdb5040010.
In both vertebrates and invertebrates, the Wnt-signaling pathway is essential for numerous processes in embryogenesis and during adult life. Wnt activity is fine-tuned at various levels by the interplay of a number of Wnt-agonists (Wnt ligands, Frizzled-receptors, Lrp5/6 coreceptors) and Wnt-antagonists (among them Axin, Secreted frizzled and Lrp4) to define anterior-posterior polarity of the early embryo and specify cell fate in organogenesis. So far, the functional analysis of Wnt-pathway components in insects has concentrated on the roles of Wnt-agonists and on the Wnt-antagonist Axin. We depict here additional features of the Wnt-antagonist Axin in the flour beetle . We show that is dynamically expressed throughout embryogenesis and confirm its essential role in head development. In addition, we describe an as yet undetected, more extreme RNAi-phenotype, the ectopic formation of posterior abdominal segments in reverse polarity and a second hindgut at the anterior. For the first time, we describe here that an ortholog is involved in axis formation in an insect. The Lrp4 ortholog is ubiquitously expressed throughout embryogenesis. Its downregulation via maternal RNAi results in the reduction of head structures but not in axis polarity reversal. Furthermore, segmentation is impaired and larvae develop with a severe gap-phenotype. We conclude that, as in vertebrates, functions as a Wnt-inhibitor in during various stages of embryogenesis. We discuss the role of both components as negative modulators of Wnt signaling in respect to axis formation and segmentation in .
在脊椎动物和无脊椎动物中,Wnt信号通路对于胚胎发育和成年期的众多过程都至关重要。Wnt活性通过多种Wnt激动剂(Wnt配体、卷曲受体、Lrp5/6共受体)和Wnt拮抗剂(包括Axin、分泌型卷曲蛋白和Lrp4)之间的相互作用在多个水平上进行精细调节,以确定早期胚胎的前后极性并在器官发生过程中指定细胞命运。到目前为止,昆虫中Wnt通路成分的功能分析主要集中在Wnt激动剂和Wnt拮抗剂Axin的作用上。我们在此描述了面粉甲虫中Wnt拮抗剂Axin的其他特征。我们表明,Axin在整个胚胎发育过程中动态表达,并证实其在头部发育中的重要作用。此外,我们描述了一种尚未检测到的、更为极端的RNAi表型,即后腹部节段以相反极性异位形成以及在前部出现第二个后肠。我们首次在此描述,一种Axin直系同源物参与了昆虫的轴形成。Axin直系同源物Lrp4在整个胚胎发育过程中普遍表达。通过母体RNAi下调其表达会导致头部结构减少,但不会导致轴极性反转。此外,节段化受损,幼虫发育出严重的间隙表型。我们得出结论,与脊椎动物一样,Axin在面粉甲虫胚胎发育的各个阶段都作为Wnt抑制剂发挥作用。我们讨论了这两种成分作为Wnt信号负调节剂在面粉甲虫轴形成和节段化方面的作用。