Ryan Daniel, Bornet Elise, Prezza Gianluca, Alampalli Shuba Varshini, de Carvalho Taís Franco, Felchle Hannah, Ebbecke Titus, Hayward Regan, Deutschbauer Adam M, Barquist Lars, Westermann Alexander J
bioRxiv. 2023 Feb 16:2023.02.16.528795. doi: 10.1101/2023.02.16.528795.
Gene expression plasticity allows bacteria to adapt to diverse environments, tie their metabolism to available nutrients, and cope with stress. This is particularly relevant in a niche as dynamic and hostile as the human intestinal tract, yet transcriptional networks remain largely unknown in gut spp. Here, we map transcriptional units and profile their expression levels in over a suite of 15 defined experimental conditions that are relevant , such as variation of temperature, pH, and oxygen tension, exposure to antibiotic stress, and growth on simple carbohydrates or on host mucin-derived glycans. Thereby, we infer stress- and carbon source-specific transcriptional regulons, including conditional expression of capsular polysaccharides and polysaccharide utilization loci, and expand the annotation of small regulatory RNAs (sRNAs) in this organism. Integrating this comprehensive expression atlas with transposon mutant fitness data, we identify conditionally important sRNAs. One example is MasB, whose inactivation led to increased bacterial tolerance of tetracyclines. Using MS2 affinity purification coupled with RNA sequencing, we predict targets of this sRNA and discuss their potential role in the context of the MasB-associated phenotype. Together, this transcriptomic compendium in combination with functional sRNA genomics-publicly available through a new iteration of the 'Theta-Base' web browser (www.helmholtz-hiri.de/en/datasets/bacteroides-v2)-constitutes a valuable resource for the microbiome and sRNA research communities alike.
基因表达可塑性使细菌能够适应各种环境,将其新陈代谢与可用营养物质联系起来,并应对压力。这在像人类肠道这样动态且恶劣的生态位中尤为重要,然而肠道细菌中的转录网络在很大程度上仍然未知。在这里,我们绘制了转录单元,并在一系列15种确定的相关实验条件下分析它们的表达水平,这些条件包括温度、pH值和氧张力的变化、暴露于抗生素压力以及在简单碳水化合物或宿主粘蛋白衍生聚糖上生长。由此,我们推断出应激和碳源特异性转录调控因子,包括荚膜多糖和多糖利用位点的条件性表达,并扩展了该生物体中小调控RNA(sRNA)的注释。将这个全面的表达图谱与转座子突变体适应性数据相结合,我们鉴定出具有条件重要性的sRNA。一个例子是MasB,其失活导致细菌对四环素的耐受性增加。使用MS2亲和纯化结合RNA测序,我们预测了这种sRNA的靶标,并讨论了它们在与MasB相关表型背景下的潜在作用。总之,这个转录组汇编与功能性sRNA基因组学——通过新版的“Theta-Base”网络浏览器(www.helmholtz-hiri.de/en/datasets/bacteroides-v2)公开可用——构成了微生物组和sRNA研究社区的宝贵资源。