嗜水气单胞菌双组分系统EnvZ/OmpR功能探究
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国家自然科学基金项目(31772889)


Functional analysis of two component systems (TCS)EnvZ/OmpR in Aeromonas hydrophila
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    摘要:

    为探究嗜水气单胞菌双组分系统的调控功能,通过同源重组法敲除嗜水气单胞菌双组分基因envZ/ompR,检测各菌株在不同盐浓度胁迫条件下的生长情况,采用结晶紫染色法比较各菌株的生物被膜形成能力,通过全血共培养试验评估各菌株抵御鱼血杀伤的能力;比较不同菌株感染斑马鱼的半数致死量(LD50),通过草鱼组织载菌量评判各菌株的侵袭能力,采用荧光定量PCR检测各脏器的促炎因子的转录水平。结果显示,在不同盐度条件下嗜水气单胞菌双基因缺失株ΔenvZ/ompR的生长没有显著差异,而其下游基因ompF和ompC的转录水平显著受到影响;ΔenvZ/ompR株的生物被膜形成能力以及抗鱼全血杀伤能力相较野生型都显著下降。ΔenvZ/ompR的斑马鱼刮伤感染LD50较野生型增长了4.8倍,致病力减弱,在草鱼腹腔感染中其全身扩散能力也较野生株显著减弱,并且ΔenvZ/ompR感染组草鱼脾脏、肝脏和肾脏中促炎因子TNF-α和IL-6的转录水平相对于野生株感染组均显著降低。上述结果表明嗜水气单胞菌双组分系统EnvZ/OmpR参与响应渗透胁迫,参与调控生物被膜形成,且在致病过程尤其是在宿主体内系统扩散过程中发挥重要作用。

    Abstract:

    To explore the regulatory function of the twocomponent system (TCS) in Aeromonas hydrophila,envZ and ompR genes were knocked out via homologous recombination. In vitro,the growth of each strain under different salt concentration stress was tested,the biofilm formation capacity of each strain was compared via the crystal violet staining test,and the resistance to fish blood killing was examined via whole blood killing assay. In vivo,LD50 of each strain was calculated by infecting zebrafish,the systemic invasive ability of each strain in grass carp was compared,and the transcription levels of proinflammatory cytokines were measured by quantitative PCR. The results showed that the ΔenvZ/ompRgrowth did not show significant differences at different salt concentrations in vitro. However,with the deletion of envZ/ompR,the transcription levels of the downstream genes ompF and ompC were significantly affected. ΔenvZ/ompR also showed a significant decrease in biofilm formation and resistance to fish whole blood killing compared with the wild type. In the zebrafish scratch infection model,the LD50 of ΔenvZ/ompRincreased 4.8fold compared to the wild type,indicating reduced virulence. In the ΔenvZ/ompRinfected grass carp,the systemic spreading ability of ΔenvZ/ompRwas significantly weaken,and the transcript levels of pro-inflammatory factors TNF-αand IL-6 were significantly reduced in the spleen,head-kidney,and kidney. Taken together,the above results indicated that the TCS EnvZ/OmpR involved in response to osmotic stress,in the regulation of biofilm formation and in pathogenic processes,especially in the systemic diffusion process in the host.

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马世林,李继红,马倩倩,吴志豪,陈愿,张永安,周洋.嗜水气单胞菌双组分系统EnvZ/OmpR功能探究[J].华中农业大学学报,2021,40(6):161-167

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  • 收稿日期:2021-03-16
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  • 在线发布日期: 2021-11-30
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