Universität Göttingen, Johann-Friedrich-Blumenbach-Institut für Zoologie und Anthropologie, Abteilung für Entwicklungsbiologie, GZMB Ernst-Caspari-Haus, Göttingen, Germany.
PLoS Genet. 2018 Jan 23;14(1):e1007180. doi: 10.1371/journal.pgen.1007180. eCollection 2018 Jan.
Drosophila melanogaster head development represents a valuable process to study the developmental control of various organs, such as the antennae, the dorsal ocelli and the compound eyes from a common precursor, the eye-antennal imaginal disc. While the gene regulatory network underlying compound eye development has been extensively studied, the key transcription factors regulating the formation of other head structures from the same imaginal disc are largely unknown. We obtained the developmental transcriptome of the eye-antennal discs covering late patterning processes at the late 2nd larval instar stage to the onset and progression of differentiation at the end of larval development. We revealed the expression profiles of all genes expressed during eye-antennal disc development and we determined temporally co-expressed genes by hierarchical clustering. Since co-expressed genes may be regulated by common transcriptional regulators, we combined our transcriptome dataset with publicly available ChIP-seq data to identify central transcription factors that co-regulate genes during head development. Besides the identification of already known and well-described transcription factors, we show that the transcription factor Hunchback (Hb) regulates a significant number of genes that are expressed during late differentiation stages. We confirm that hb is expressed in two polyploid subperineurial glia cells (carpet cells) and a thorough functional analysis shows that loss of Hb function results in a loss of carpet cells in the eye-antennal disc. Additionally, we provide for the first time functional data indicating that carpet cells are an integral part of the blood-brain barrier. Eventually, we combined our expression data with a de novo Hb motif search to reveal stage specific putative target genes of which we find a significant number indeed expressed in carpet cells.
果蝇头部发育是一个研究各种器官(如触角、背眼和复眼)发育调控的宝贵过程,这些器官都源自一个共同的前体——眼触角 imaginal 盘。虽然已经广泛研究了调控复眼发育的基因调控网络,但调控同一 imaginal 盘形成其他头部结构的关键转录因子在很大程度上仍未知。我们获得了涵盖晚期第 2 幼虫龄期到幼虫发育结束时分化开始和进行的晚期 patterning 过程的眼触角盘的发育转录组。我们揭示了眼触角盘发育过程中所有基因的表达谱,并通过层次聚类确定了随时间共同表达的基因。由于共同表达的基因可能受到共同转录调节因子的调节,因此我们将我们的转录组数据集与公开的 ChIP-seq 数据相结合,以鉴定在头部发育过程中共同调节基因的核心转录因子。除了鉴定已经已知和描述良好的转录因子外,我们还表明,转录因子 Hunchback (Hb) 调节了在晚期分化阶段表达的大量基因。我们证实 hb 在两个多倍体亚周神经胶质细胞(地毯细胞)中表达,并进行了全面的功能分析,结果表明 Hb 功能丧失会导致眼触角盘中的地毯细胞丢失。此外,我们首次提供了功能数据,表明地毯细胞是血脑屏障的一个组成部分。最终,我们将我们的表达数据与 Hb motif 的从头搜索相结合,揭示了阶段特异性的假定靶基因,其中我们发现大量靶基因确实在地毯细胞中表达。