Developmental Biology, Saarland University, Building 61, 66421 Homburg/Saar, Germany.
Developmental Biology, Saarland University, Building 61, 66421 Homburg/Saar, Germany.
Cells Dev. 2021 Mar;165:203657. doi: 10.1016/j.cdev.2021.203657. Epub 2021 Feb 3.
During the embryonic development of Drosophila melanogaster many transcriptional activators are involved in the formation of the embryonic brain. In our study we show that the transcription factor Homeobrain (Hbn), a member of the 57B homeobox gene cluster, is an additional factor involved in the formation of the embryonic Drosophila brain. Using a Hbn antibody and specific cell type markers a detailed expression analysis during embryonic brain development was conducted. We show that Hbn is expressed in several regions in the protocerebrum, including fibre tract founder cells closely associated with the supraesophageal brain commissure and also in the mushroom bodies. During the formation of the supraesophageal commissure, Hbn and FasII-positive founder cells build an interhemispheric bridge priming the commissure and thereby linking both brain hemispheres. The Hbn expression is restricted to neural but not glial cells in the embryonic brain. In a mutagenesis screen we generated two mutant hbn alleles that both show embryonic lethality. The phenotype of the hbn mutant alleles is characterized by a reduction of the protocerebrum, a loss of the supraesophageal commissure and mushroom body progenitors and also by a dislocation of the optic lobes. Extensive apoptosis correlates with the impaired formation of the embryonic protocerebrum and the supraesophageal commissure. Our results show that Hbn is another important factor for embryonic brain development in Drosophila melanogaster.
在黑腹果蝇胚胎发育过程中,许多转录激活因子参与了胚胎大脑的形成。在我们的研究中,我们表明转录因子 Homeobrain(Hbn)是 57B 同源盒基因簇的成员,是参与胚胎果蝇大脑形成的另一个因素。使用 Hbn 抗体和特定的细胞类型标记,我们对胚胎大脑发育过程中的表达进行了详细分析。我们表明 Hbn 在大脑原脑的几个区域表达,包括与上食管脑连合紧密相关的纤维束创始细胞,也在蘑菇体中表达。在上食管连合形成过程中,Hbn 和 FasII 阳性创始细胞构建了一个半球间桥,为连合提供了准备,并将两个大脑半球连接起来。Hbn 的表达仅限于胚胎大脑中的神经细胞,而不是神经胶质细胞。在诱变筛选中,我们生成了两个表现出胚胎致死性的突变 hbn 等位基因。hbn 突变等位基因的表型特征是原脑减小,上食管连合和蘑菇体祖细胞丢失,以及视叶移位。广泛的细胞凋亡与胚胎原脑和上食管连合形成障碍相关。我们的结果表明,Hbn 是黑腹果蝇胚胎大脑发育的另一个重要因素。