Department of Diagnostic Processes and Evaluation, Faculty of Health Sciences, Universidad Católica de Temuco, PO. BOX 15-D, Temuco, Chile.
Department of Microbiology, Institute of Biomedical Sciences, Universidade de São Paulo, São Paulo, CEP 05508-000, Brazil.
Arch Microbiol. 2019 Oct;201(8):1075-1083. doi: 10.1007/s00203-019-01678-0. Epub 2019 May 23.
Arcobacter butzleri is an emerging foodborne zoonotic pathogen that has been isolated from environmental water sources. This pathogen establishes in vitro endosymbiotic relationships with Acanthamoeba castellanii, a free-living amoeba found in environmental matrices such as soil and water. The principal aim of this study was to analyse the transcriptional pattern of flagellar (flaA-flaB-flgH-motA) and other putative virulence genes (ciaB-cadF-mviN-pldA) of A. butzleri during its interaction with A. castellanii by quantitative real-time PCR. The transcriptional analysis showed up-regulation of all genes analysed before A. butzleri became established as an endocytobiont of A. castellanii. In contrast, while A. butzleri remains an endocytobiont, a significant and sustained decrease in the transcription of all analysed genes was observed. Our findings suggest that A. butzleri requires a biphasic transcriptional pattern of flagellar and other putative virulence genes to establish an endosymbiotic relationship with A. castellanii.
空弯曲杆菌是一种新兴的食源性病原体,已从环境水源中分离出来。这种病原体与棘阿米巴属中的自由生活阿米巴建立了体外共生关系,棘阿米巴属存在于土壤和水等环境基质中。本研究的主要目的是通过定量实时 PCR 分析空弯曲杆菌与棘阿米巴属相互作用过程中鞭毛(flaA-flaB-flgH-motA)和其他潜在毒力基因(ciaB-cadF-mviN-pldA)的转录模式。转录分析表明,在空弯曲杆菌成为棘阿米巴属的内共生体之前,所有分析基因的表达均上调。相比之下,当空弯曲杆菌仍然是内共生体时,所有分析基因的转录都显著且持续下降。我们的研究结果表明,空弯曲杆菌需要一个鞭毛和其他潜在毒力基因的两相转录模式来与棘阿米巴属建立共生关系。