在人体温度下生长时 的全球转录组分析。
Global transcriptome analysis of in response to growth at human body temperature.
机构信息
Bacterial Genomics and Evolution Laboratory, CSIR-Institute of Microbial Technology, Chandigarh, India.
Present address: Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool, Liverpool, UK.
出版信息
Microb Genom. 2021 Jul;7(7). doi: 10.1099/mgen.0.000600.
is a typical example of an environmental originated opportunistic human pathogen, which can thrive at different habitats including the human body and can cause a wide range of infections. It must cope with heat stress during transition from the environment to the human body as the physiological temperature of the human body (37 °C) is higher than environmental niches (22–30 °C). Interestingly, a phylogenetic neighbour of within genus is unable to grow at 37 °C. Thus, it is crucial to understand how is adapted to human body temperature, which could suggest its evolution as an opportunistic human pathogen. In this study, we have performed comparative transcriptome analysis of grown at 28 and 37 °C as temperature representative for environmental niches and the human body, respectively. RNA-Seq analysis revealed several interesting findings showing alterations in gene-expression levels at 28 and 37 °C, which can play an important role during infection. We have observed downregulation of genes involved in cellular motility, energy production and metabolism, replication and repair whereas upregulation of VirB/D4 type IV secretion system, aerotaxis, cation diffusion facilitator family transporter and LacI family transcriptional regulators at 37 °C. Microscopy and plate assays corroborated altered expression of genes involved in motility. The results obtained enhance our understanding of the strategies employed by during adaptation towards the human body.
是一种典型的环境来源的机会性病原体,它可以在包括人体在内的不同栖息地中繁衍生息,并引起广泛的感染。当它从环境过渡到人体时,必须应对热应激,因为人体的生理温度(37°C)高于环境小生境(22-30°C)。有趣的是,属内 的一个系统发育上的近缘种不能在 37°C 下生长。因此,了解 如何适应人体温度至关重要,这可以提示它作为机会性病原体的进化。在这项研究中,我们分别在 28°C 和 37°C 下对生长的进行了比较转录组分析,这两个温度分别代表环境小生境和人体的温度。RNA-Seq 分析揭示了几个有趣的发现,表明在 28°C 和 37°C 时基因表达水平发生了变化,这些变化在感染过程中可能发挥重要作用。我们观察到参与细胞运动、能量产生和代谢、复制和修复的基因下调,而 VirB/D4 型 IV 型分泌系统、趋氧性、阳离子扩散促进因子家族转运蛋白和 LacI 家族转录调节因子的基因上调。显微镜和平板试验证实了与运动相关的基因表达的改变。所得结果增强了我们对 在适应人体时所采用策略的理解。
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