Department of Food Microbiology and Hygiene, Institute of Food Science and Biotechnology, University of Hohenheim, Stuttgart, Germany.
Institute for Bioinformatics and Medical Informatics, University of Tübingen, Tübingen, Germany.
Environ Microbiol Rep. 2023 Dec;15(6):582-596. doi: 10.1111/1758-2229.13198. Epub 2023 Aug 29.
In the current study, metabolic genes and networks that influence the persistence of pathogenic Escherichia coli O104:H4 strain C227/11Φcu in agricultural soil microenvironments at low temperature were investigated. The strain was incubated in alluvial loam (AL) and total RNA was prepared from samples at time point 0, and after 1 and 4 weeks. Differential transcriptomic analysis was performed by RNA sequencing analysis and values obtained at weeks 1 and 4 were compared to those of time point 0. We found differential expression of more than 1500 genes for either time point comparison. The two lists of differentially expressed genes were then subjected to gene set enrichment of Gene Ontology terms. In total, 17 GO gene sets and 3 Pfam domains were found to be enriched after 1 week. After 4 weeks, 17 GO gene sets and 7 Pfam domains were statistically enriched. Especially stress response genes and genes of the primary metabolism were particularly affected at both time points. Genes and gene sets for uptake of carbohydrates, amino acids were strongly upregulated, indicating adjustment to a low nutrient environment. The results of this transcriptome analysis show that persistence of C227/11Φcu in soils is associated with a complex interplay of metabolic networks.
在本研究中,我们调查了影响致病性大肠杆菌 O104:H4 菌株 C227/11Φcu 在低温农业土壤微环境中持续存在的代谢基因和网络。将菌株在冲积壤土(AL)中孵育,分别在 0 时间点、1 周和 4 周时从样品中提取总 RNA。通过 RNA 测序分析进行差异转录组分析,并将 1 周和 4 周时的值与 0 时间点的值进行比较。我们发现,对于任一时间点比较,有超过 1500 个基因的表达存在差异。然后,将两组差异表达基因进行 Gene Ontology 术语的基因集富集分析。总共发现 17 个 GO 基因集和 3 个 Pfam 结构域在 1 周后被富集。4 周后,有 17 个 GO 基因集和 7 个 Pfam 结构域被统计上富集。特别是在两个时间点,应激反应基因和初级代谢基因受到了特别的影响。碳水化合物、氨基酸摄取的基因和基因集被强烈上调,表明对低营养环境的适应。本转录组分析的结果表明,C227/11Φcu 在土壤中的持续存在与代谢网络的复杂相互作用有关。