首页> 外文期刊>Applied Microbiology >High Genetic Diversity in Flavobacterium psychrophilum Isolates from Healthy Rainbow Trout (Oncorhynchus mykiss) Farmed in the Same Watershed, Revealed by Two Typing Methods
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High Genetic Diversity in Flavobacterium psychrophilum Isolates from Healthy Rainbow Trout (Oncorhynchus mykiss) Farmed in the Same Watershed, Revealed by Two Typing Methods

机译:来自健康彩虹鳟(Oncorynchus mykiss)在同一流域养殖的高遗传多样性,由两种打字方法揭示

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Flavobacterium psychrophilum affects salmonid health worldwide and causes economic losses. The genetic diversity of the pathogen must be considered to develop control methods. However, previous studies have reported both high and low levels of genetic diversity. The present longitudinal study aimed at assessing the genetic diversity of F. psychrophilum at a small temporal and geographic scale. Four farms located on the same watershed in France were studied. Rainbow trout ( Oncorhynchus mykiss ) batches were monitored, and apparently healthy individuals were sampled over 1 year. A total of 288 isolates were recovered from fish organs (gills and spleen) and eggs. Pulsed field gel electrophoresis revealed high genetic diversity. Multilocus sequence typing performed on a selection of 31 isolates provided congruent results, as follows: 18 sequence types (STs) were found, of which 13 were novel. The mean gene diversity ( H? =?0.8413) was much higher than that previously reported for this host species, although the sampling was restricted to a single watershed and 1 year. Seven isolates out of 31 were assigned to clonal complex ST10 (CC-ST10), which is the predominant clonal complex in the main salmonid production areas. A split decomposition tree reflected a panmictic population. This finding is important for aquaculture veterinarians in their diagnostic procedure, as the choice of adequate antibiotic treatment is conditioned by the correct identification of the causative agent. Furthermore, this study expands our knowledge on genetic diversity required for the development of an effective vaccine against F. psychrophilum .IMPORTANCE The bacterium Flavobacterium psychrophilum is a serious pathogen in many fish species, especially salmonids, that is responsible for considerable economic losses worldwide. In order to treat infections and to develop vaccines, the genetic diversity of this bacterium needs to be known. We assessed the genetic diversity of F. psychrophilum isolates from apparently healthy rainbow trout raised in several fish farms in the same watershed in France. Two different genotyping methods revealed high diversity. The majority of isolates were unrelated to clonal complex sequence type 10 (CC-ST10), the clonal complex that is predominant worldwide and associated with disease in rainbow trout. In addition, we found 13 novel sequence types. These results suggest that a diverse subpopulation of F. psychrophilum may be harbored by rainbow trout.
机译:Flavobacterium Psychrophilum在全世界影响鲑鱼健康,并导致经济损失。必须考虑病原体的遗传多样性来制定控制方法。然而,以前的研究报告了遗传多样性高和低水平。目前纵向研究旨在评估小颞和地理规模的F.Scasstrophilum的遗传多样性。研究了位于法国同一流域的四场农场。监测彩虹鳟鱼(Oncorhynchus mykiss)批次,并在1年内取样显然健康的个体。从鱼机器官(鳃和脾脏)和鸡蛋中恢复了总共288个分离物。脉冲场凝胶电泳显示出高遗传多样性。在选择31个分离液中执行的多体块序列类型提供了一致的结果,如下:发现了18种序列类型(STS),其中13种是新颖的。平均基因多样性(H?= 0.8413)远高于先前针对这一宿主物种的多样性,尽管抽样仅限于单一流域和1年。分配给克隆复合ST10(CC-ST10)的7个分离株,其是主要的鲑鱼片生产区域中的主要克隆复合物。分裂分解树反映了持瘫痪的人口。这一发现对于水产养殖兽医在诊断程序中非常重要,因为通过正确鉴定致病剂的正确鉴定,可以选择适当的抗生素治疗。此外,本研究扩大了我们对对F.心理学疫苗进行有效疫苗所需的遗传多样性的知识。分量细菌心肌卵菌在许多鱼类,特别是沙明的病原体中,这是全球相当大的经济损失负责。为了治疗感染和发展疫苗,需要知道这种细菌的遗传多样性。我们评估了来自法国同一流域的几条鱼类农场的明显健康彩虹鳟鱼的F.Scasscrophilum孤立的遗传多样性。两种不同的基因分型方法揭示了高多样性。大多数分离物与克隆复合序列类型10(CC-ST10)无关,克隆复合物在全球范围内并且与虹鳟鱼中的疾病相关。此外,我们发现13种新型序列类型。这些结果表明,彩虹鳟鱼可能会覆盖F.Scasstrophilum的不同亚群。

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