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Dynamics of Wolbachia pipientis Gene Expression Across the Drosophila melanogaster Life Cycle

机译:整个果蝇生命周期中Wolbachia pipientis基因表达的动力学

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摘要

Symbiotic interactions between microbes and their multicellular hosts have manifold biological consequences. To better understand how bacteria maintain symbiotic associations with animal hosts, we analyzed genome-wide gene expression for the endosymbiotic α-proteobacteria Wolbachia pipientis across the entire life cycle of Drosophila melanogaster. We found that the majority of Wolbachia genes are expressed stably across the D. melanogaster life cycle, but that 7.8% of Wolbachia genes exhibit robust stage- or sex-specific expression differences when studied in the whole-organism context. Differentially-expressed Wolbachia genes are typically up-regulated after Drosophila embryogenesis and include many bacterial membrane, secretion system, and ankyrin repeat-containing proteins. Sex-biased genes are often organized as small operons of uncharacterized genes and are mainly up-regulated in adult Drosophila males in an age-dependent manner. We also systematically investigated expression levels of previously-reported candidate genes thought to be involved in host-microbe interaction, including those in the WO-A and WO-B prophages and in the Octomom region, which has been implicated in regulating bacterial titer and pathogenicity. Our work provides comprehensive insight into the developmental dynamics of gene expression for a widespread endosymbiont in its natural host context, and shows that public gene expression data harbor rich resources to probe the functional basis of the Wolbachia-Drosophila symbiosis and annotate the transcriptional outputs of the Wolbachia genome.
机译:微生物与其多细胞宿主之间的共生相互作用具有多种生物学后果。为了更好地了解细菌如何与动物宿主保持共生关系,我们分析了果蝇整个生命周期中内共生α-变形杆菌Wolbachia pipientis的全基因组基因表达。我们发现大多数Wolbachia基因在整个D. melanogaster生命周期中稳定表达,但是当在整个生物环境中研究时,有7.8%的Wolbachia基因表现出强大的阶段或性别特异性表达差异。在果蝇胚胎发生后,差异表达的Wolbachia基因通常被上调,包括许多细菌膜,分泌系统和锚蛋白重复序列​​蛋白。带有性别偏见的基因通常组织成未表征基因的小操纵子,并且在成年果蝇雄性中主要以年龄依赖性方式上调。我们还系统地研究了以前报道的候选基因的表达水平,这些候选基因被认为与宿主-微生物相互作用有关,包括WO-A和WO-B噬菌体以及Octomom区域中的表达水平,这与调节细菌的滴度和致病性有关。 。我们的工作为广泛的共生共生体在其天然宿主环境中的基因表达的发展动力学提供了全面的见解,并表明公共基因表达数据包含丰富的资源以探究沃尔巴克氏菌-果蝇共生的功能基础并注释其的转录输出。 Wolbachia基因组。

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