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Aeromonas-Acanthamoeba interaction and early shift to a viable but nonculturable state of Aeromonas by Acanthamoeba

机译:气单胞菌-棘阿米巴的相互作用,并通过棘阿米巴早期转移到可行但不可培养的气单胞菌状态

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Aims: To investigate the hypothesis that amoeba may comprise a significant environmental reservoir for Aeromonas, Acanthamoeba-Aeromonas interaction experiments were performed. Methods and Results: Acanthamoeba were grown in monoculture and co-cultures with three different species of Aeromonas. Survival, invasion and viable but nonculturable state experiments were performed. We showed that at a low initial bacterial cell density, growth of Aeromonas spp. was inhibited by Acanthamoeba castellanii, while A. castellanii growth was unaffected. In contrast, a high initial bacterial cell density, Aeromonas hydrophila AEW44 and Aeromonas veronii biovar sobria AEW104 suppressed the growth of A. castellanii. Fluorescent and phase-contrast microscopic observations of GFP tagged Aer. hydrophila AEW44 demonstrated that the bacterial cells aggregated on A. castellanii cells after 15 min of incubation and internalized. Aeromonas hydrophila AEW44 cells were found to be actively moving. Interestingly, Aer. hydrophila AEW44 cells shifted more rapidly to a viable but nonculturable form when co-cultured with A. castellanii than in monoculture. Conclusions: We demonstrated that Aeromonas spp. are able to interact with and to infect the protozoan A. castellanii under laboratory conditions. Significance and Impact of the Study: Free-living amoeba might play a role as reservoir for Aeromonas, and thus may increase the transmission of Aeromonas by acting as a vehicle.
机译:目的:为了研究假单胞菌可能构成气单胞菌重要环境储藏体的假设,进行了棘阿米巴-气单胞菌相互作用实验。方法和结果:棘阿米巴与三种不同种类的气单胞菌在单培养和共培养中生长。进行了存活,侵袭和可行但不可培养的状态实验。我们表明,在较低的初始细菌细胞密度下,气单胞菌的生长。被棘孢棘孢菌抑制,而棘孢菌的生长不受影响。相反,较高的初始细菌细胞密度,嗜水气单胞菌AEW44和维罗纳气单胞菌生物变种氏菌AEW104抑制了Castellanii的生长。 GFP标记的Aer的荧光和相差显微镜观察。嗜水菌AEW44证明,细菌细胞在孵育15分钟后聚集在卡斯特氏菌细胞上并被内在化。发现嗜水气单胞菌AEW44细胞活跃。有趣的是,阿尔。与单一培养相比,与卡氏曲霉共培养时,亲水性AEW44细胞更迅速地转变为可存活但不可培养的形式。结论:我们证明了气单胞菌属。在实验室条件下能够与原生动物A. castellanii相互作用并感染。研究的意义和影响:自由生存的变形虫可能充当气单胞菌的贮藏库,因此可能通过充当媒介物来增加气单胞菌的传播。

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