Dubey Saurabh, Maiti Biswajit, Kim Sung-Hyun, Sivadasan Sangeetha Madambithara, Kannimuthu Dhamotharan, Pandey Pramod Kumar, Girisha Shivani Kallappa, Mutoloki Stephen, Chen Shih-Chu, Evensen Øystein, Karunasagar Indrani, Munang'andu Hetron Mweemba
Department of Basic Sciences and Aquatic Medicine, Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Oslo, Norway.
UNESCO MIRCEN for Medical and Marine Biotechnology, Nitte University Centre for Science Education and Research, NITTE (Deemed to be University), Mangalore, India.
J Fish Dis. 2019 Jun;42(6):835-850. doi: 10.1111/jfd.12984. Epub 2019 Mar 8.
The genus Edwardsiella is one of the major causes of fish diseases globally. Herein, we examined 37 isolates from ten different fish species from India, South Korea and Taiwan to gain insight into their phenotypic and genotypic properties, of which 30 were characterized as E. tarda with phenotypic homology estimated at 85.71% based on API-20E biochemical tests. Genotyping using 16S rRNA put all isolates together with E. anguillarum, E. hoshinae, E. tarda, E. piscicida and E. ictaluri reference strains in a monophyletic group. In contrast, the gyrB phylogenetic tree clearly separated E. ictaluri, E. tarda and E. hoshinae reference strains from our isolates and put our isolates into two groups with group I being homologous with the E. anguillarum reference strain while group II was homologous with the E. piscicida reference strain. Hence, our findings point to E. piscicida and E. anguillarum as species infecting different fish species in Asia. Homology of the ompW protein suggested that strains with broad protective coverage could be identified as vaccine candidates. This study underscores the importance of combining genotyping with phenotyping for valid species classification. In addition, it accentuates the importance of phylogenetic comparison of bacterial antigens for identification of potential vaccine candidates.
爱德华氏菌属是全球鱼类疾病的主要病因之一。在此,我们检测了来自印度、韩国和台湾的10种不同鱼类的37株分离株,以深入了解它们的表型和基因型特性,其中30株根据API-20E生化试验被鉴定为迟钝爱德华氏菌,表型同源性估计为85.71%。使用16S rRNA进行基因分型,将所有分离株与鳗弧菌、保科爱德华氏菌、迟钝爱德华氏菌、杀鱼爱德华氏菌和斑点叉尾鮰爱德华氏菌参考菌株归为一个单系群。相比之下,gyrB系统发育树清楚地将斑点叉尾鮰爱德华氏菌、迟钝爱德华氏菌和保科爱德华氏菌参考菌株与我们的分离株分开,并将我们的分离株分为两组,第一组与鳗弧菌参考菌株同源,而第二组与杀鱼爱德华氏菌参考菌株同源。因此,我们的研究结果表明,杀鱼爱德华氏菌和鳗弧菌是感染亚洲不同鱼类的物种。ompW蛋白的同源性表明,具有广泛保护范围的菌株可被鉴定为疫苗候选株。这项研究强调了将基因分型与表型分型相结合以进行有效物种分类的重要性。此外,它还强调了对细菌抗原进行系统发育比较以鉴定潜在疫苗候选株的重要性。