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Contribution of nuclease to the pathogenesis of Aeromonas hydrophila

机译:核酸酶在嗜水气单胞菌发病中的作用

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摘要

Aeromonas hydrophila is a gram-negative bacterium that is widely distributed in aquatic environments and can cause septicemia in both fish and humans. However, the underlying mechanisms leading to severe infection are not well understood. In this study, an A. hydrophila nuclease (ahn) deletion mutant was constructed to investigate its contribution to pathogenesis. This mutant did not differ from the wild-type strain in terms of its growth or hemolytic phenotype. However, the ahn-deficient mutant was more susceptible to being killed by fish macrophages and mouse blood in vitro. Furthermore, evidence obtained using both fish and murine infection models strongly indicated that the inactivation of Ahn impaired the ability of A. hydrophila to evade innate immune clearance in vivo. More importantly, the virulence of the mutant was attenuated in both fish and mice, with reductions in dissemination capacities and mortality rates. These findings implicate Ahn in A. hydrophila virulence, with important functions in evading innate immune defenses.
机译:嗜水气单胞菌是革兰氏阴性细菌,广泛分布于水生环境中,可导致鱼类和人类败血症。但是,导致严重感染的潜在机制尚不十分清楚。在这项研究中,构建了一个亲水链霉菌核酸酶(ahn)缺失突变体,以研究其对发病机理的贡献。该突变体在其生长或溶血表型方面与野生型菌株没有区别。但是,缺乏ahn的突变体在体外更易被鱼巨噬细胞和小鼠血液杀死。此外,使用鱼类和鼠类感染模型获得的证据强烈表明,Ahn的失活削弱了嗜水链球菌在体内逃避先天免疫清除的能力。更重要的是,突变体的毒力在鱼和小鼠中均减弱,传播能力和死亡率降低。这些发现暗示了Ahn在嗜水链球菌的毒力中具有重要的功能,可逃避先天免疫防御。

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