School of Life Sciences, University of Dundee, Angus, Dundee, DD15EH, UK.
Tayside Centre for Genomic Analysis, University of Dundee, Angus, Dundee, DD19SY, UK.
BMC Genomics. 2018 Oct 22;19(1):764. doi: 10.1186/s12864-018-5146-3.
A major hallmark of multicellular evolution is increasing complexity by the evolution of new specialized cell types. During Dictyostelid evolution novel specialization occurred within taxon group 4. We here aim to retrace the nature and ancestry of the novel "cup" cells by comparing their transcriptome to that of other cell types.
RNA-Seq was performed on purified mature spore, stalk and cup cells and on vegetative amoebas. Clustering and phylogenetic analyses showed that cup cells were most similar to stalk cells, suggesting that they share a common ancestor. The affinity between cup and stalk cells was also evident from promoter-reporter studies of newly identified cell-type genes, which revealed late expression in cups of many stalk genes. However, GO enrichment analysis reveal the unexpected prominence of GTPase mediated signalling in cup cells, in contrast to enrichment of autophagy and cell wall synthesis related transcripts in stalk cells. Combining the cell type RNA-Seq data with developmental expression profiles revealed complex expression dynamics in each cell type as well as genes exclusively expressed during terminal differentiation. Most notable were nine related hssA-like genes that were highly and exclusively expressed in cup cells.
This study reveals the unique transcriptomes of the mature cup, stalk and spore cells of D. discoideum and provides insight into the ancestry of cup cells and roles in signalling that were not previously realized. The data presented in this study will serve as an important resource for future studies into the regulation and evolution of cell type specialization.
多细胞生物进化的一个主要标志是通过进化新的特化细胞类型来增加复杂性。在盘基网柄菌进化过程中,新型特化发生在分类群 4 内。在这里,我们旨在通过比较其转录组与其他细胞类型的转录组,追溯新型“杯”细胞的性质和起源。
对纯化的成熟孢子、柄和杯细胞以及营养性变形虫进行了 RNA-Seq 分析。聚类和系统发育分析表明,杯细胞与柄细胞最相似,表明它们有共同的祖先。新鉴定的细胞类型基因的启动子-报告基因研究也表明了杯和柄细胞之间的亲和力,这些基因揭示了许多柄基因在杯中的晚期表达。然而,GO 富集分析显示,在杯细胞中,GTP 酶介导的信号转导出乎意料地突出,而在柄细胞中则富集与自噬和细胞壁合成相关的转录本。将细胞类型 RNA-Seq 数据与发育表达谱相结合,揭示了每个细胞类型复杂的表达动态以及仅在终末分化过程中表达的基因。最值得注意的是,九个相关的 hssA 样基因在杯细胞中高度且特异性表达。
本研究揭示了 D. discoideum 成熟杯、柄和孢子细胞的独特转录组,并深入了解了杯细胞的起源和以前未被认识到的信号转导作用。本研究中提供的数据将作为未来细胞特化的调控和进化研究的重要资源。