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对多次临床暴发期间收集的ssp.分离株进行的基因组分析支持其与单个流行病学单位相关。

Genomic Analysis of ssp. Isolates Collected During Multiple Clinical Outbreaks Supports Association with a Single Epidemiological Unit.

作者信息

Wojnarowski Konrad, Cholewińska Paulina, Steinbauer Peter, Lautwein Tobias, Hussein Wanvisa, Streb Lisa-Marie, Palić Dušan

机构信息

Chair for Fish Diseases and Fisheries Biology, Faculty of Veterinary Medicine, Ludwig-Maximilians-Universität München, 80539 München, Germany.

Tiergesundheitsdienst Bayern e.V., 85586 Poing, Germany.

出版信息

Pathogens. 2024 Oct 17;13(10):908. doi: 10.3390/pathogens13100908.

Abstract

Outbreaks of furunculosis cause significant losses in salmonid aquaculture worldwide. With a recent rise in antimicrobial resistance, regulatory measures to minimize the use of antibiotics in animal husbandry, including aquaculture, have increased scrutiny and availability of veterinary medical products to control this disease in production facilities. In such a regulatory environment, the utility of autogenous vaccines to assist with disease prevention and control as a veterinary-guided prophylactic measure is of high interest to the producers and veterinary services alike. However, evolving concepts of epidemiological units and epidemiological links need to be considered during approval and acceptance procedures for the application of autogenous vaccines in multiple aquaculture facilities. Here, we present the results of solid-state nanopore sequencing (Oxford Nanopore Technologies, ONT) performed on 54 isolates of ssp. sampled during clinical outbreaks of furunculosis in different aquaculture facilities from Bavaria, Germany, from 2017 to 2020. All of the performed analyses (phylogeny, single nucleotide polymorphism and 3D protein modeling for major immunogenic proteins) support a high probability that all studied isolates belong to the same epidemiological unit. Simultaneously, we describe a cost/effective method of whole genome analysis with the usage of ONT as a viable strategy to study outbreaks of other pathogens in the field of aquatic veterinary medicine for the purpose of developing the best autogenous vaccine candidates applicable to multiple aquaculture establishments.

摘要

疖疮病的爆发在全球鲑鱼养殖业中造成了重大损失。随着近期抗菌药物耐药性的上升,包括水产养殖在内的畜牧业中尽量减少抗生素使用的监管措施,增加了对兽药产品的审查,并提高了其在生产设施中控制这种疾病的可得性。在这样的监管环境下,作为一种兽医指导的预防措施,自体疫苗在疾病预防和控制方面的效用受到了生产者和兽医服务部门的高度关注。然而,在自体疫苗应用于多个水产养殖设施的审批和验收程序中,需要考虑不断演变的流行病学单位和流行病学联系的概念。在此,我们展示了对2017年至2020年期间从德国巴伐利亚不同水产养殖设施的疖疮病临床爆发中采集的54株 亚种分离株进行的固态纳米孔测序(牛津纳米孔技术公司,ONT)结果。所有进行的分析(系统发育、单核苷酸多态性以及主要免疫原性蛋白三维蛋白质建模)均支持所有研究的分离株极有可能属于同一流行病学单位。同时,我们描述了一种使用ONT进行全基因组分析的经济高效方法,作为一种可行策略,用于研究水生兽医学领域其他病原体的爆发情况,以便开发适用于多个水产养殖企业的最佳自体疫苗候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/973b/11510180/7ea5f0930a30/pathogens-13-00908-g001.jpg

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