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环境温度对人畜共患病原体宿主适应性的影响

The Effect of the Environmental Temperature on the Adaptation to Host in the Zoonotic Pathogen .

作者信息

Hernández-Cabanyero Carla, Sanjuán Eva, Fouz Belén, Pajuelo David, Vallejos-Vidal Eva, Reyes-López Felipe E, Amaro Carmen

机构信息

Departamento de Microbiología y Ecología and Estructura de Recerca Interdisciplinar en Biotecnologia i Biomedicina, Universitat de València, Valencia, Spain.

Department of Cell Biology, Physiology and Immunology, Universitat Autònoma de Barcelona, Barcelona, Spain.

出版信息

Front Microbiol. 2020 Mar 27;11:489. doi: 10.3389/fmicb.2020.00489. eCollection 2020.

Abstract

is a zoonotic pathogen that lives in temperate, tropical and subtropical aquatic ecosystems whose geographical distribution is expanding due to global warming. The species is genetically variable and only the strains that belong to the zoonotic clonal-complex can cause vibriosis in both humans and fish (being its main host the eel). Interestingly, the severity of the vibriosis in the eel and the human depends largely on the water temperature (highly virulent at 28°C, avirulent at 20°C or below) and on the iron content in the blood, respectively. The objective of this work was to unravel the role of temperature in the adaptation to the host through a transcriptomic and phenotypic approach. To this end, we obtained the transcriptome of a zoonotic strain grown in a minimum medium (CM9) at 20, 25, 28, and 37°C, and confirmed the transcriptomic results by RT-qPCR and phenotypic tests. In addition, we compared the temperature stimulon with those previously obtained for iron and serum (from eel and human, respectively). Our results suggest that warm temperatures activate adaptive traits that would prepare the bacteria for host colonization (metabolism, motility, chemotaxis, and the protease activity) and fish septicemia (iron-uptake from transferrin and production of -antigen of high molecular weight) in a generalized manner, while environmental iron controls the expression of a host-adapted virulent phenotype (toxins and the production of a protective envelope). Finally, our results confirm that beyond the effect of temperature on the distribution in the environment, it also has an effect on the infectious capability of this pathogen that must be taken into account to predict the real risk of infection caused by global warming.

摘要

是一种人畜共患病原体,存在于温带、热带和亚热带水生生态系统中,由于全球变暖,其地理分布正在扩大。该物种在基因上具有变异性,只有属于人畜共患病克隆复合体的菌株才能在人类和鱼类(鳗鱼是其主要宿主)中引起弧菌病。有趣的是,鳗鱼和人类弧菌病的严重程度分别很大程度上取决于水温(28°C时高毒力,20°C或以下时无毒力)和血液中的铁含量。这项工作的目的是通过转录组学和表型方法揭示温度在适应宿主中的作用。为此,我们获得了在20、25、28和37°C的基本培养基(CM9)中生长的人畜共患病菌株的转录组,并通过RT-qPCR和表型测试证实了转录组学结果。此外,我们将温度刺激子与先前分别从铁和血清(来自鳗鱼和人类)获得的刺激子进行了比较。我们的结果表明,温暖的温度以普遍的方式激活适应性特征,这些特征会使细菌为宿主定殖(代谢、运动性、趋化性和蛋白酶活性)和鱼类败血症(从转铁蛋白摄取铁和产生高分子量的抗原)做好准备,而环境铁控制宿主适应的毒力表型(毒素和保护性包膜的产生)的表达。最后,我们的结果证实,除了温度对其在环境中分布的影响外,它还对这种病原体的感染能力有影响,在预测全球变暖引起的实际感染风险时必须考虑到这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2f2/7137831/26b1c8c9fd39/fmicb-11-00489-g001.jpg

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