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Comparative transcriptomic and proteomic analyses reveal upregulated expression of virulence and iron transport factors of Aeromonas hydrophila under iron limitation

机译:转录组和蛋白质组学的比较分析表明,铁限制条件下嗜水气单胞菌的毒力和铁转运因子表达上调

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Iron plays important roles in the growth, reproduction and pathogenicity of Aeromonas hydrophila. In this study, we detected and compared the mRNA and protein expression profiles of A. hydrophila under normal and iron restricted medium with 200 μM 2,2-Dipyridyl using RNA Sequencing (RNA-seq) and isobaric tags for relative and absolute quantification (iTRAQ) analyses. There were 1204 genes (601 up- and 603 down-regulated) and 236 proteins (90 up- and 146 down-regulated) shown to be differentially expressed, and 167 genes and proteins that showed consistent expression. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses revealed that the differentially expressed genes and proteins were mainly involved in iron ion transport, protein activity, energy metabolism and virulence processes. Further validation of the RNA-seq and iTRAQ results by quantitative real-time PCR (qPCR) revealed that 18 of the 20 selected genes were consistently expressed. The iron-ion absorption and concentration of A. hydrophila under iron-limited conditions were enhanced, and most virulence factors (protease activity, hemolytic activity, lipase activity, and swimming ability) were also increased. Artificial A. hydrophila infection caused higher mortality in cyprinid Megalobrama amblycephala under iron-limited conditions. Understanding the responses of pathogenic Aeromonas hydrophila within the hostile environment of the fish host, devoid of free iron, is important to reveal bacterial infection and pathogenesis. This study further confirmed the previous finding that iron-limitation efficiently enhanced the virulence of A. hydrophila using multi-omics analyses. We identified differentially expressed genes and proteins, related to enterobactin synthesis and virulence establishment, that play important roles in addressing iron scarcity.
机译:铁在嗜水气单胞菌的生长,繁殖和致病性中起重要作用。在这项研究中,我们使用RNA测序(RNA-seq)和同量异位标签进行了相对和绝对定量(iTRAQ)检测并比较了在200μM2,2-二吡啶基普通和铁限制培养基下嗜水链球菌的mRNA和蛋白质表达谱)分析。有1204个基因(601个上调和603个下调)和236个蛋白(90个上调和146个下调)显示差异表达,还有167个基因和蛋白表达一致。基因本体论(GO)和《京都基因与基因组百科全书》(KEGG)富集分析表明,差异表达的基因和蛋白质主要参与铁离子转运,蛋白质活性,能量代谢和毒力过程。通过定量实时PCR(qPCR)对RNA-seq和iTRAQ结果的进一步验证显示,在20个所选基因中有18个始终表达。在铁限制条件下,嗜水链球菌对铁离子的吸收和浓度增加,大多数毒力因子(蛋白酶活性,溶血活性,脂肪酶活性和游泳能力)也增加。在铁受限的条件下,人工嗜水气单胞菌感染会导致塞浦路斯巨无胸mb的高死亡率。在缺乏游离铁的鱼类宿主的敌对环境中,了解致病性嗜水气单胞菌的反应对于揭示细菌感染和发病机理很重要。这项研究进一步证实了先前的发现,即通过多组学分析,铁限制有效提高了嗜水链球菌的毒力。我们确定了差异表达的基因和蛋白质,与肠杆菌素的合成和毒力的建立有关,它们在解决铁缺乏中起重要作用。

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