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Complete Genome Sequence of the Fish Pathogen Flavobacterium branchiophilum

机译:鱼病原黄杆菌分支杆菌的完整基因组序列。

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Members of the genus Flavobacterium occur in a variety of ecological niches and represent an interesting diversity of lifestyles. Flavobacterium branchiophilum is the main causative agent of bacterial gill disease, a severe condition affecting various cultured freshwater fish species worldwide, in particular salmonids in Canada and Japan. We report here the complete genome sequence of strain FL-15 isolated from a diseased sheatfish (Silurus glanis) in Hungary. The analysis of the F. branchiophilum genome revealed putative mechanisms of pathogenicity strikingly different from those of the other, closely related fish pathogen Flavobacterium psychrophilum, including the first cholera-like toxin in a non-Proteobacteria and a wealth of adhesins. The comparison with available genomes of other Flavobacterium species revealed a small genome size, large differences in chromosome organization, and fewer rRNA and tRNA genes, in line with its more fastidious growth. In addition, horizontal gene transfer shaped the evolution of F. branchiophilum, as evidenced by its virulence factors, genomic islands, and CRISPR (clustered regularly interspaced short palindromic repeats) systems. Further functional analysis should help in the understanding of host-pathogen interactions and in the development of rational diagnostic tools and control strategies in fish farms.
机译:黄杆菌属的成员存在于各种生态位中,代表着有趣的生活方式。分支杆菌黄杆菌是细菌性disease病的主要病原体,细菌性ill病是一种严重的疾病,影响着全世界各种养殖的淡水鱼类,特别是加拿大和日本的鲑鱼。我们在这里报告了从患病的she鱼(Silurus glanis)在匈牙利分离的菌株FL-15的完整基因组序列。对F. branchiophilum基因组的分析显示,其致病性的推定机制与其他紧密相关的鱼类病原体Flavobacterium psychrophilum的致病性显着不同,包括非变形杆菌中的第一种霍乱样毒素和大量粘附素。与其他黄杆菌属物种的可用基因组进行比较后,发现其基因组大小较小,染色体组织上的差异较大,而rRNA和tRNA基因较少,这与其生长更加严格有关。此外,水平的基因转移影响了分支杆菌的进化,这由其毒力因子,基因岛和CRISPR(聚类的规则间隔的短回文重复序列)系统证明。进一步的功能分析应有助于了解宿主与病原体的相互作用,并有助于发展合理的诊断工具和控制策略。

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