Department of Evolutionary Developmental Biology, Göttingen Center for Molecular Biosciences, University of Göttingen, 37077 Göttingen, Germany.
Department of Biology, Friedrich-Alexander-University, 91054 Erlangen, Germany.
Proc Natl Acad Sci U S A. 2018 Feb 20;115(8):1819-1824. doi: 10.1073/pnas.1716512115. Epub 2018 Feb 5.
The distinction of anterior versus posterior is a crucial first step in animal embryogenesis. In the fly , this axis is established by morphogenetic gradients contributed by the mother that regulate zygotic target genes. This principle has been considered to hold true for insects in general but is fundamentally different from vertebrates, where zygotic genes and Wnt signaling are required. We investigated symmetry breaking in the beetle , which among insects represents the more ancestral short-germ embryogenesis. We found that maternal is required for anterior localization of maternal , which represses Wnt signaling and promotes expression of anterior zygotic genes. Both RNAi targeting or double RNAi knocking down the zygotic genes and led to the formation of a second growth zone at the anterior, which resulted in double-abdomen phenotypes. Conversely, interfering with two posterior factors, and Wnt, caused double-anterior phenotypes. These findings reveal that maternal and zygotic mechanisms, including Wnt signaling, are required for establishing embryo polarity and induce the segmentation clock in a short-germ insect.
前后区分是动物胚胎发生的关键第一步。在果蝇中,这个轴由母体贡献的形态发生梯度来建立,这些梯度调节合子靶基因。这个原则被认为适用于一般昆虫,但与脊椎动物根本不同,脊椎动物需要合子基因和 Wnt 信号。我们研究了甲虫中的对称性破坏,甲虫在昆虫中代表着更古老的短原肠胚发生。我们发现母体 对于母体 的前定位是必需的,母体 抑制 Wnt 信号并促进前合子基因的表达。针对 或双 RNAi 敲低合子基因 和 的 RNAi 都导致在前部形成第二个生长区,从而导致双腹性状。相反,干扰两个后部因子 和 Wnt 会导致双前部表型。这些发现表明,母体和胚胎机制,包括 Wnt 信号,对于建立胚胎极性和在短原肠胚昆虫中诱导分段时钟是必需的。